Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)

Detalhes bibliográficos
Autor(a) principal: Mariano, Geysa de Matos Dutra
Data de Publicação: 2017
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações da UFRRJ
Texto Completo: https://tede.ufrrj.br/jspui/handle/jspui/4318
Resumo: Borreria verticillata (L.) G. Mey is a herbaceous plant of the family Rubiaceae, considered a weed and known as vassourinha-de-bot?o. Because it is used in the population as analgesic and antipyretic, the objective of this work was to evaluate the antinociceptive and anti-inflammatory potential of B. verticillata (EFBV) aqueous extract of the leaves, flavonoid (Flav), butanol (BuOH) and ethyl acetate (AcOEt) fractions and compounds rutin (Ru, 58% yield) and chlorogenic acid (AC, 3% yield), administered orally in mice. Previous studies have shown the activity of the EFBV extract, the flavonoid rutin and the phenolic compound chlorogenic acid in several biological activities, encouraging our research with these compounds, aiming to confirm the uses of B. verticillata. The evaluation of antinociceptive activity by the writhing test (acetic acid), showed that the administration of EFBV (100, 300 and 1000mg/kg) produced inhibitions in the number of writhes of 23.6%, 30.3% and 47.3%, respectively, when compared to the vehicle, as well as the positive control (CP) indomethacin reduced of the writhes. In the tail-immersion test, the administration of EFBV did not show changes in the latency time of the animals in front of the thermal stimulus and to confirm these antinociceptive results, we evaluated the motor activity of the EFBV, in which its administration did not modify the dwell time of the animals in the rota-rod. The evaluation of anti-inflammatory activity through the carrageenan-induced pleurisy test showed that EFBV (1g/kg) inhibited leukocyte migration in 33.7%, compared to the vehicle and the fractions Flav (20mg/kg), BuOH (200mg/kg), AcOEt (25mg/kg) presented reductions in the migration of 38.9%, 71.1%, 78,8% and 85.5% respectively. Evaluating the antiedematogenic activity with the ear edema test (croton oil), the administration of EFBV (1g/kg) reduced edema by 47.6%. In zymosan-induced articular arthritis, EFBV(1g/kg), Ru (30mg/kg) and AC (2mg/kg) reduced edema of the femoral-tibial joint in 57.8%, 49.2% and 51.7%, respectively, when compared to vehicles. In the same test, EFBV (1g/kg), Ru (30mg/kg) and AC (2mg/kg) compounds inhibited the leukocyte migration to the joint cavity in 64.9%, 79.5% and 77.8%, when compared to their respective vehicles and CP dexamethasone also produced reductions in the two parameters evaluated in this model. In the measurement of the femoral-tibial diameter, followed by cytokine TNF-? dosing in the joint macerate, EFBV, Ru and AC reduced joint thickness by 58.1% (EFBV, Ru) and 40.7% (AC), when compared to saline-zymosan control, with CP dexamethasone reduced the thickness by 76.5%. The concentration of TNF-? after administration of EFBV, Ru or AC, where we observed reductions of 30.4%, 37.0%, 21.7%, respectively, in the cytokine concentration, compared to saline-zymosan control and similar to CP, reducing this concentration by 50.0%. These results show that the antinociception of the EFBV, in the writhing test, participate in anti-inflammatory mechanisms, and this extract showed antiedematogenic activity (ear edema) and, together with the compounds Ru and AC, at the femoral-tibial joint in arthritis by zimosan. In addition, EFBV and fractions (Flav, BuOH and AcOEt) inhibited leukocyte migration in pleurisy by carrageenan, and the extract, Ru and AC also showed similar effectiveness in zymosan-induced arthritis, also reducing the concentration of TNF- ?. These results suggest that the anti-inflammatory, antinociceptive and anti-arthritis effects involved the inhibition of TNF-?, justifying the biological effects of EFBV, rutin and chlorogenic acid, and may explain some of the uses of B. verticillata (L.) G. Mey
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spelling Vanderlinde, Frederico Argollo49295896734http://lattes.cnpq.br/3183716703092107Vanderlinde, Frederico ArgolloMarinho, Bruno Guimar?esMatheus, Maria Eline10389316733http://lattes.cnpq.br/2615320530323647Mariano, Geysa de Matos Dutra2021-01-06T17:57:29Z2017-02-22MARIANO, Geysa de Matos Dutra. Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o). 2017. 73 f. Disserta??o (Mestrado em Ci?ncias Fisiol?gicas) - Instituto de Ci?ncias Biol?gicas e da Sa?de, Universidade Federal Rural do Rio de Janeiro, Serop?dica - RJ, 2017.https://tede.ufrrj.br/jspui/handle/jspui/4318Borreria verticillata (L.) G. Mey is a herbaceous plant of the family Rubiaceae, considered a weed and known as vassourinha-de-bot?o. Because it is used in the population as analgesic and antipyretic, the objective of this work was to evaluate the antinociceptive and anti-inflammatory potential of B. verticillata (EFBV) aqueous extract of the leaves, flavonoid (Flav), butanol (BuOH) and ethyl acetate (AcOEt) fractions and compounds rutin (Ru, 58% yield) and chlorogenic acid (AC, 3% yield), administered orally in mice. Previous studies have shown the activity of the EFBV extract, the flavonoid rutin and the phenolic compound chlorogenic acid in several biological activities, encouraging our research with these compounds, aiming to confirm the uses of B. verticillata. The evaluation of antinociceptive activity by the writhing test (acetic acid), showed that the administration of EFBV (100, 300 and 1000mg/kg) produced inhibitions in the number of writhes of 23.6%, 30.3% and 47.3%, respectively, when compared to the vehicle, as well as the positive control (CP) indomethacin reduced of the writhes. In the tail-immersion test, the administration of EFBV did not show changes in the latency time of the animals in front of the thermal stimulus and to confirm these antinociceptive results, we evaluated the motor activity of the EFBV, in which its administration did not modify the dwell time of the animals in the rota-rod. The evaluation of anti-inflammatory activity through the carrageenan-induced pleurisy test showed that EFBV (1g/kg) inhibited leukocyte migration in 33.7%, compared to the vehicle and the fractions Flav (20mg/kg), BuOH (200mg/kg), AcOEt (25mg/kg) presented reductions in the migration of 38.9%, 71.1%, 78,8% and 85.5% respectively. Evaluating the antiedematogenic activity with the ear edema test (croton oil), the administration of EFBV (1g/kg) reduced edema by 47.6%. In zymosan-induced articular arthritis, EFBV(1g/kg), Ru (30mg/kg) and AC (2mg/kg) reduced edema of the femoral-tibial joint in 57.8%, 49.2% and 51.7%, respectively, when compared to vehicles. In the same test, EFBV (1g/kg), Ru (30mg/kg) and AC (2mg/kg) compounds inhibited the leukocyte migration to the joint cavity in 64.9%, 79.5% and 77.8%, when compared to their respective vehicles and CP dexamethasone also produced reductions in the two parameters evaluated in this model. In the measurement of the femoral-tibial diameter, followed by cytokine TNF-? dosing in the joint macerate, EFBV, Ru and AC reduced joint thickness by 58.1% (EFBV, Ru) and 40.7% (AC), when compared to saline-zymosan control, with CP dexamethasone reduced the thickness by 76.5%. The concentration of TNF-? after administration of EFBV, Ru or AC, where we observed reductions of 30.4%, 37.0%, 21.7%, respectively, in the cytokine concentration, compared to saline-zymosan control and similar to CP, reducing this concentration by 50.0%. These results show that the antinociception of the EFBV, in the writhing test, participate in anti-inflammatory mechanisms, and this extract showed antiedematogenic activity (ear edema) and, together with the compounds Ru and AC, at the femoral-tibial joint in arthritis by zimosan. In addition, EFBV and fractions (Flav, BuOH and AcOEt) inhibited leukocyte migration in pleurisy by carrageenan, and the extract, Ru and AC also showed similar effectiveness in zymosan-induced arthritis, also reducing the concentration of TNF- ?. These results suggest that the anti-inflammatory, antinociceptive and anti-arthritis effects involved the inhibition of TNF-?, justifying the biological effects of EFBV, rutin and chlorogenic acid, and may explain some of the uses of B. verticillata (L.) G. MeyA Borreria verticillata (L.) G. Mey ? uma planta herb?cea da fam?lia Rubiaceae, considerada uma erva daninha e conhecida como vassourinha-de-bot?o. Por ser usada pela popula??o como analg?sica e antipir?tica, o objetivo deste trabalho foi avaliar o potencial antinociceptivo e anti-inflamat?rio do extrato aquoso das folhas de B. verticillata (EFBV), das fra??es flavono?dica (Flav), butan?lica (BuOH) e acetato de etila (AcOEt) e dos compostos rutina (Ru, rendimento de 58%) e ?cido clorog?nico (AC, rendimento de 3%), administrados via oral em camundongos. Estudos anteriores, mostraram a atividade do extrato de EFBV, do flavon?ide rutina e do composto fen?lico ?cido clorog?nico em diversas atividades biol?gicas, incentivando nossa pesquisa com estes compostos, objetivando a confirma??o dos usos da B. verticillata. A avalia??o da atividade antinociceptiva pelo modelo das contor??es abdominais (?cido ac?tico), mostrou que a administra??o de EFBV (100, 300 e 1000mg/kg) produziu inibi??es no n?mero de contor??es de 23,6%, 30,3% e 47,3% respectivamente, quando comparados ao ve?culo, assim como o controle positivo (CP) indometacina reduziu as contor??es. No modelo de imers?o cauda, a administra??o de EFBV n?o mostrou altera??es no tempo de lat?ncia dos animais diante do est?mulo t?rmico e para confirmar estes resultados antinociceptivos, avaliamos a atividade motora do EFBV, no qual sua administra??o n?o modificou o tempo de perman?ncia dos animais no rota-rod. A avalia??o da atividade anti-inflamat?ria, utilizando o modelo de pleurisia por carragenina, mostrou que a administra??o de EFBV (1g/kg) inibiu a migra??o leucocit?ria em 33,7%, comparativamente ao ve?culo e as fra??es Flav (20mg/kg), BuOH (200mg/kg) e AcOEt (25mg/kg) tamb?m apresentaram redu??es na migra??o leucocit?ria de 38,9%, 71,1%, 78,8% respectivamente. Avaliando a atividade antiedematog?nica com o modelo de edema de orelha (?leo de cr?ton), a administra??o de EFBV (1g/kg) reduziu o edema de orelha em 47,6%. Na artrite articular por zimosan, o EFBV (1g/kg), a Ru (30mg/kg) e o AC (2mg/kg) reduziram o edema da articula??o f?mur-tibial em 57,8%, 49,2% e 51,7% respectivamente, quando comparados aos ve?culos. Neste mesmo modelo, o EFBV (1g/kg), os compostos Ru (30mg/kg) e AC (2mg/kg) inibiram a migra??o leucocit?ria para cavidade articular em 64,9%, 79,5% e 77,8%, quando comparados aos seus respectivos ve?culos, assim como a CP dexametasona tamb?m produziu redu??es nos dois par?metros avaliados neste modelo. Na mensura??o do di?metro f?mur-tibial, seguida da dosagem da citocina TNF-? no macerado articular, EFBV, Ru e AC reduziram a espessura articular em 58,1% (EFBV, Ru) e 40,7% (AC), quando comparados ao controle salina-zimosam. Avaliamos a concentra??o de TNF-? ap?s administra??o de EFBV, Ru ou AC, onde observamos redu??es de 30,4%, 37,0%, 21,7%, respectivamente, na concentra??o da citocina, comparados com controle salina-zimosan e semelhante ao CP, reduzindo em 50,0% esta concentra??o. Estes resultados evidenciam que a antinocicep??o do EFBV, no modelo das contor??es abdominais mostrando envolvimento de mecanismos anti-inflamat?rios, tendo este extrato apresentado atividade antiedematog?nica no modelo de edema de orelha e, juntamente com os compostos Ru e AC, no modelo de artrite por zimosan. Adicionalmente, o EFBV e as fra??es (Flav, BuOH e AcOEt) inibiram a migra??o leucocit?ria na pleurisia por carragenina, tendo tamb?m o extrato, Ru e AC apresentado efetividade semelhante na artrite articular por zimosan, reduzindo tamb?m a concentra??o de TNF-?. Esses resultados sugerem que os efeitos anti-inflamat?rio, antinociceptivo e anti-artrite obtidos envolve a inibi??o do TNF-?, justificando os efeitos biol?gicos do EFBV, da rutina e do ?cido clorog?nico, podendo explicar alguns dos usos da B. verticillata (L.) G. Mey.Submitted by Celso Magalhaes (celsomagalhaes@ufrrj.br) on 2021-01-06T17:57:28Z No. of bitstreams: 1 2017 - Geysa de Matos Dutra Mariano.pdf: 2380734 bytes, checksum: 2a32fa608cc5446c25f43f1f515803c2 (MD5)Made available in DSpace on 2021-01-06T17:57:29Z (GMT). No. of bitstreams: 1 2017 - Geysa de Matos Dutra Mariano.pdf: 2380734 bytes, checksum: 2a32fa608cc5446c25f43f1f515803c2 (MD5) Previous issue date: 2017-02-22application/pdfhttps://tede.ufrrj.br/retrieve/63709/2017%20-%20Geysa%20de%20Matos%20Dutra%20Mariano.pdf.jpgporUniversidade Federal Rural do Rio de JaneiroPrograma de P?s-Gradua??o em Ci?ncias Fisiol?gicasUFRRJBrasilInstituto de Ci?ncias Biol?gicas e da Sa?deABDULLAHI-GERO, H. S., AHMED, A., HUSSAINI, I. M. Preliminary evaluation of ethanol leaf extract of Borreria verticillata Linn (Rubiaceae) for analgesic and anti-inflammatory effects. Journal of Medicinal Plants Research., Nigeria, v.8, n.20, p. 736-747, mai, 2014. AFONSO P.V.; JANKA-JUNTTILA M.; LEE Y.J.; MCCANN C.P.; OLIVER C.M.; AAMER K.A.; LOSERT W.; CICERONE M.T.; PARENT C.A. LTB 4 is a signal-relay molecule during neutrophil chemotaxis. Developmental cell, v. 22, n. 5, p. 1079-1091, 2012. AGRA, M de F., FREITAS, P. F., BARBOSA-FILHO, J. M. Synopsis of the plants known as medicinal and poisonous in Northeast of Brazil. Brazilian Journal Pharmacognosy, v. 17, n. 1, jan-mar, 2007. AGUIAR, L. S., ANDRADE, F. F. R., SILVA, L. A. C., SILVA, M. C. P., RODRIGUES, K. A. F., AMARAL, F. M. M., COUTINHO-MORAES, D. F. Estudo farmacobot?nico das folhas de Borreria verticillata (l.) g. Mey. (Rubiaceae). Revista Brasileira de Ci?ncias da Sa?de, S?o Lu?z, v. 12, n. 2, p.84-90, 2010. ASHLEY, N. T.; WEIL, Z. M.; NELSON, R. J. Inflammation: Mechanisms, Costs, and Natural Variation. Annual Review of Ecology, Evolution, and Systematics, v. 43, p. 385?406, 2012. BALD? A. M., PIETERS L. A., TRAORE M. S., CAMARA A., BALD? M. A, OULARE K., BARRY M. S., DIALLO M. S. T., BALD? E. S., DIANE S., VLIETINCK A. J. Chemotherapeutical evaluation of Borreria verticillata extracts. Journal of Plant Sciences, Nova York, v.3, n.1-2 p.28-31, dez, 2015. BRAHMACHARI, G. Bioactive Natural Products: Opportunities and Challenges in Medicinal Chemistry. 1st ed. Singapura: World Scientific Publishing Co. Pte. Ltd., 2011, p.1- 199. BRASIL. Pol?tica Nacional de Plantas Medicinais e Fitoter?picos. Departamento de Assist?ncia Farmac?utica e Insumos Estrat?gicos. Bras?lia: Minist?rio da Sa?de, Secretaria de Ci?ncia, Tecnologia e Insumos Estrat?gicos, 2006, 136p. BRASIL. Resolu??o da Diretoria Colegiada (RDC) N? 10, de 9 de mar?o de 2010. Disp?e sobre a notifica??o de drogas vegetais junto ? Ag?ncia Nacional de Vigil?ncia Sanit?ria. Bras?lia: Minist?rio da sa?de, Ag?ncia Nacional de Vigil?ncia Sanit?ria, 2010. BRASIL. Resolu??o da Diretoria Colegiada (RDC) N? 26, de 13 de maio de 2010. Disp?e sobre o registro de medicamentos fitoter?picos e o registro e a notifica??o de produtos tradicionais fitoter?picos. Bras?lia: Minist?rio da sa?de, Ag?ncia Nacional de Vigil?ncia Sanit?ria, 2014. BRUNTON, L. L.; CHABNER, B. A.; KNOLLMANN, B. C. Goodman & Gilman: As Bases Farmacol?gicas da Terap?utica. 12 ed. Porto Alegre: AMGH Editora, 2012. BRZUSTEWICZ, E.; BRYL, E. The role of cytokines in the pathogenesis of rheumatoid arthritis ? Practical and potential application of cytokines as biomarkers and targets of personalized therapy. Cytokine, v. 76, p. 527?536, 2015. 66 CALIXTO J. B, BERRITTO A., FERREIRA, J., SANTOS A. R., VAIDIN F., YUNES R. A. Naturally Occurring Anti-nociceptive Plants. Phytotherapy Research. v. 14, p. 401-418, 2000. CALIXTO J. B. Twenty-five of research on medicinal plants in Latin America. Journal of Ethnopharmacology, n, v. 100, p. 131-134, 2005. CAZAROLLI, L.H., ZANATTA, L., ALBERTON, E.H., FIGUEIREDO, M.S.R.B., FOLADORI, P., DAMAZIO, R.G., PIZZOLATTI, M.G., SILVA, F.R.M.B. Flavonoids: Prospective Drug Candidates. Mini-Reviews in Medicinal Chemistry, v.8, n.13, p. 1429- 1440, 2008. CHAUHAN, P. S.; SATTI, N. K.; SHARMA, P.; SHARMA, V. K.; SURI, K. A.; BANI, S. Differential Effects of Chlorogenic Acid on Various Immunological Parameters Relevant to Rheumatoid Arthritis. Phytotherapy Research, v. 26, n. 8, p. 1156-1165, aug., 2012. CHEN, W-P.; TANG, J-L.; BAO, J-P., HU, P-F.; SHI, Z-L.; WU, L-D. Anti-arthritic effects of chlorogenic acid in interleukin-1?-induced rabbit chondrocytes and a rabbit osteoarthritis model. International Immunopharmacology, v. 11, n. 1, p. 23?28, jan., 2011. CHEN, W-Y.; HUANG, Y-C.; YANG, M-L., LEE, C-Y.; CHEN, C-J.; YEH, C-H.; PAN, P-H.; HORNG, C-T.; KUO, W-H.; KUAN, Y-H. Protective effect of rutin on LPS-induced acute lung injury via down-regulation of MIP-2 expression and MMP-9 activation through inhibition of Akt phosphorylation. International Immunopharmacology, v. 22, n. 2, p. 409?413, oct., 2014. CHERIGO, L.; LEZCANO, J.; SPADAFORA, C.; MART?NEZ-LUIS, S. Evaluation of phytotoxic, cytotoxic and antiparasitic in vitro activities of Borreria verticillata, a weed of Panamanian coffee crops. Bioscience Research, v. 9, n. 2, p. 82-86, 2012. CHUA, L. S. A review on plant-based rutin extraction methods and its pharmacological activities. Journal of Ethnopharmacology, v. 150, n. 3, p. 805?817, dec., 2013. CONSERVA, L. M., FERREIRA, J. C. Borreria and Spermacoce species (Rubiaceae): A review of their ethnomedicinal properties, chemical constituents, and biological activities. Pharmacognosy Reviews, v. 6, n. 11, p.46-55, 2012. CONTE F. P.; MENEZES-DE-LIMA O. J. R.; VERRI W.A. J. R.; CUNHA F. Q.; PENIDO C.; HENRIQUES M. G. Lipoxin A (4) attenuates zymosan-induced arthritis by modulating endothelin-1 and its effects. British Journal of Pharmacology, v.161, n.4, p.11-24, 2010. CORNEJO-GARC?A, J. A.; PERKINS, J.; JURADO-ESCOBAR, R.; GARC?A-MART?N, E.; AG?NDEZ, J. A.; VIGUERA, E.; P?REZ-S?NCHEZ, N.; BLANCA-L?PEZ, N. Pharmacogenomics of Prostaglandin and Leukotriene Receptors. Frontiers Pharmacology, v. 7, n. 316, p. 1-9, 2016. CRAIG, A.P., FIELDS, C., LIANG, N., KITTS, D., ERICKSON, A. Performance review of a fast HPLC-UV method for the quantification of chlorogenic acids in green coffee bean extracts. Talanta, v. 154, p. 481?485, 2016. 67 D? AMOUR, F.; SMITH, D. A method for determining loss of pain sensation. Journal of Pharmacology and Experimental Therapeutics., v.72, p.74-79, 1941. D?MELLO, R.; DICKENSON, A. H. Spinal cord mechanisms of pain. British Journal of Anaesthesia, v. 101, n. 1, p. 8?16, 2008. DINAKAR, P.; STILLMAN, A. M. Pathogenesis of Pain. In: Seminars in Pediatric Neurology. WB Saunders, v. 23, n. 3, p. 201-208, 2016. DOMICIANO, T. P.; DALALIO, M. M.; SILVA, E. L.; RITTER, A. M.; ESTEV?O-SILVA, C. F.; RAMOS, F. S.; CAPARROZ-ASSEF, S. M.; CUMAN, R. K.; BERSANI-AMADO, C. A. Inhibitory effect of anethole in nonimmune acute inflammation. Naunyn-Schmiedeberg?s Archives of Pharmacology, n.386, p.331-338, 2013. DUHAM, N. W.; MYIA, T. S. A note on a simple apparatus for detecting neurological deficit in rats and mice. Journal of the American Pharmacists Association. v.46, p.208-209, 1957. EFFERTH, T., ZACCHINO, S., GEORGIEV, M. I., LIU L., WAGNER, H., PANOSSIAN A. Editorial: Nobel Prize for artemisinin brings phytotherapy into the spotlight. Phytomedicine. v.22, p. A1-A3, dez, 2015. FALC?O, H de S.; LIMA, I. O.; SANTOS, V. L.; DANTAS, H. de F.; DINIZ, M de F. F. M.; BARBOSA-FILHO, J. M.; BATISTA, L. M. Review of the plants with the anti-inflammatory activity studied in Brazil. Revista Brasileira de Farmacognosia, Jo?o Pessoa, v.15, n.4, p. 381-391, out-dez, 2005. FERREIRA-JUNIOR, C. J., LEMOS, R. P. L., CONSERVA, L. M. Chemical constituents from Spermacoce verticillata (Rubiaceae). Biochemical Systematics and Ecology, v. 44, p. 208? 211, 2012. FRIAS, B.; MERIGHI, A. Capsaicin, nociception and pain. Molecules, v. 21, n. 6, p. 797, 2016. FRODE T.S.; SOUZA G.E.; CALIXTO J.B. 2001. The modulatory role played by TNF-alpha and IL-1 beta in the inflammatory responses induced by carrageenan in the mouse model of pleurisy. Cytokine, v. 13, n. 3, p. 162-168, 2001. FURTADO, A. A; TORRES-R?GO, M.; LIMA, M. C. J. S., BITENCOURT, M. A. O.; ESTRELA, A. B.; SILVA, N. S.; SIQUEIRA, E. M. DA S.; TOMAZ, J. C.; LOPES, N. P.; SILVA-J?NIOR, A. A.; ZUCOLOTTO, S. M.; FERNANDES-PEDROSA, M. F. Aqueous extract from Ipomoea asarifolia (Convolvulaceae) leaves and its phenolic compounds have antiinflammatory activity in murine models of edema, peritonitis and air-pouch inflammation. Journal of Ethnopharmacology, v. 192, p. 225?235, nov., 2016. GANESHPURKAR, A.; SALUJA, A. K. Review: The Pharmacological Potential of Rutin. Saudi Pharmaceutical Journal, 2016. GHASEMIAN, M.; OWLIA, S.; OWLIA, M. B. Review of Anti-Inflammatory Herbal Medicines. Hindawi Publishing Corporation, v. 2016, 2016. 68 GUARDIA, T.; ROTELLI, A. E.; JUAREZ, A. O.; PELZER, L. E. Protective effect of rutin on LPS-induced acute lung injury via down-regulation of MIP-2 expression and MMP-9 activation through inhibition of Akt phosphorylation. Farmaco, v. 56, n. 9, p. 683?687, 2001. GUERRERO, A. T. G.; CUNHA, T. M.; VERRI-JUNIOR, W.A.; GAZZINELLI, R. T.; TEIXEIRA, M. M.; CUNHA, F. Q.; FERREIRA, S. H. Toll-like receptor 2/MyD88 signaling mediates zymosan-induced joint hypernociception in mice: Participation of TNF-alpha, IL-1 beta and CXCL1/KC. European Journal of Pharmacology, v. 674, n. 1, p. 51-57, 2012. HAN, J.; ULEVITCH, R. J. Limiting inflammatory responses during activation of innate immunity. Nature Immunology, v. 6, n. 12, 2005. HAN, Y. Rutin has therapeutic effect on septic arthritis caused by Candida albicans. International Immunopharmacology, v. 9, n. 2, p. 207-211, feb., 2009. HARIZI, H.; CORCUFF, J. B.; GUALDE, N. Arachidonic-acid-derived eicosanoids: roles in biology and immunopathology. Trends in Molecular Medicine, v. 14, n.10, p. 461-469, 2008. HENSON, P. M. Dampening inflammation. Nature Immunology, v. 6, n. 12, p. 1179-1181, 2005. HOLL, E. K.; ALLEN, I. C.; MARTINEZ, J. Holding the Inflammatory System in Check: TLRs and NLRs. Hindawi Publishing. Corporation, v. 2016, 2016. INOUE, A.; MATSUMOTO, I.; TANAKA, Y.; UMEDA, N.; TAKAI, C.; KAWAGUCHI, H.; TAKAHASHI, S. TIARP attenuates autoantibody-mediated arthritis via the suppression of neutrophil migration by reducing CXCL2/CXCR2 and IL-6 expression. Scientific Reports, v. 6, 2016. JANSSEN, P. A.; NIEMEGEERS, C. J.; DONY, J. G. The inhibitory effect of fentanyl and other morphine-like analgesics on the warm water induced tail withdrawl reflex in rats. Arzneimittel-forschung, v. 13, p. 502-507, 1963. JI, H-F., LI, X-J., ZHANG, H-Y. Natural products and drug discovery. EMBO reports, Germany, v. 10, n. 3, p. 194-200, 2009. JOHNSON, Craig. Research Tools for the Measurement of Pain and Nociception. Animals, v. 6, n. 11, p. 71, 2016. KAEWPUT W.; DISORN P.; SATIRAPOJ B. Selective cyclooxygenase-2 inhibitor use and progression of renal function in patients with chronic kidney disease: a single-center retrospective cohort study. International Journal of Nephrology and Renovascular Disease, v. 9, p. 273-278, 2016. KALA, S. C. A short review on Rubiaceae species. International Journal of Pharma and Bio Sciences, v. 5, n. 2, abr-jun, p. 179-181, 2015. KANDEL, E.; SCHWARTZ, J.; JESSELL, T.; SIEGELBAUM, S.; HUDSPETH, A.J..Princ?pios de neuroci?ncias. 5 ed, Porto Alegre: AMGH Editora, 2014. 69 KEYSTONE E. C., SCHORLEMMER H. U., POPE C., ALLISON C. Zymosan-Induced Arthritis. Arthritis Rheumatology, v. 20, n.7, p. 1396-1401, 1977. KLAUMANN, P. R.; WOUK, A. F. P. F.; SILLAS, T. Patofisiologia da dor (Pathophysiology of pain). Archives of Veterinary Science, v. 13, n.1, p.1-12, 2008. KOSTER, R.; ANDERSON, M.; DE BEER, E. J. Acetic acid for analgesic screening. Federation Proceedings, v.18, p.412, 1959. KROGEL C. & ANTONY V.B. 1997. Immunobiology of pleural inflammation: potential implications for pathogenesis, diagnosis and therapy. European Respiratory Journal, v. 10, n. 10, p. 2411-2418, 1997. KUMAR, V.; ABBAS, A. K.; FAUSTO, N.; ASTER, J. C. Robbins & Cotran: Patologia Bases patol?gicas das doen?as. 8? ed., 2010, Elsevier. KUNER, R. Central mechanisms of pathological pain. Nature Medicine, v. 16, n. 11, p. 1258- 1266, 2010. LAHLOU, M. The Success of Natural Products in Drug Discovery. Pharmacology & Pharmacy, v. 4, p. 17-31, 2013. LAPA, A. J.; SOUCCAR, C.; LIMA-LANDMAN, M. T. R.; CASTRO, M. S. DE A.; LIMA, T. C. M. Plantas Medicinais: M?todos de avalia??o da atividade farmacol?gica. 5? ed., 2007, S?o Paulo: SBPC. LAVETI, D.; KUMAR, M.; HEMALATHA, R.; SISTLA, R.; NAIDE, V. G. M.; TALLA, V.; VERMA, V.; KAUR, N.; NAGPAL, R. Anti-Inflammatory Treatments for Chronic Diseases: A Review. Inflammation Allergy Drug Targets, v. 12, n. 5, p. 349-361, 2013. LAWRENCE, T.; WILLOUGHBY, D. A.; GILROY, D. W. Anti-inflammatory lipid mediators and insights into the resolution of inflammation. Nature. Reviews Immunology, v. 2, n. 10, p. 787-795, 2002. LE BARS, D.; GOZARIU, M.; CADDEN, S.W. Animal models of nociception. Pharmacology Reviews, v.53, p.597-652, 2001. LEE H.N.; CHO H.J.; LIM DO Y.; KANG Y.H.; LEE K.W.; PARK J.H. 2013. Mechanisms by which licochalcone e exhibits potent anti-inflammatory properties: studies with phorbol estertreated mouse skin and lipopolysaccharide-stimulated murine macrophages. International Journal of Molecular Sciences, v. 14, n. 6, p. 10926-10943, 2013. LI, J. L.; LIM, C. H.; TAY, F. W.; GOH C. C., DEVI S.; MALLERET, B.; ? TANIZAKI, H. Neutrophils self-regulate immune complex-mediated cutaneous inflammation through CXCL2. Journal of Investigate Dermatology, v. 136, n. 2, p. 416-424, 2016. LIANG, N., KITTS, D.D. Role of Chlorogenic Acids in Controlling Oxidative and Inflammatory Stress Conditions. Nutrients, v. 8, n. 16, p. 1-20, 2016. 70 LIMA, I. C. Avalia??o do Perfil Fitoqu?mico e atividade anti-inflamat?ria da esp?cie Spermacoce verticillata L. (Rubiaceae). Rio de Janeiro: Universidade Federal Rural do Rio de Janeiro; 2016 p. 29-31. LIMA, I. C., NORA, R., CARVALHO, M. G., CHAVES, D. S. A. Distribution and chemotaxonomic significance of phenolic compounds in Spermacoce verticillata (L.) G. Mey. Journal of Pharmacy & Pharmacognosy Research, v. 2, n. 1, p. 14-18, 2014. LIMA, J. J. F. As Plantas na Hist?ria da Dor. Revista da Sociedade Portuguesa de Anestesiologia, v. 22, n. 4, p. 126- 133, 2013. LOU, L.; ZHOU, J.; LIU, Y.; WEI, Y.; ZHAO, J.; DENG, J.; DONG, B., ZHU, L.; WU, A.; YANG, Y.; CHAI, L. Chlorogenic acid induces apoptosis to inhibit inflammatory proliferation of IL-6-induced fibroblast-like synoviocytes through modulating the activation of JAK/STAT and NF-?B signaling pathways. Experimental and Therapeutic Medicine., v. 11, n. 5, p. 2054-2060, mai., 2016. MARCHAND, S. The Physiology of Pain Mechanisms: From the Periphery to the Brain. Rheumatic Disease Clinics of North Americav. 34, n. 2, p. 285?309, 2008. MITSI, V.; ZACHARIOU, V. Modulation of pain, nociception, and analgesia by the brain reward center. Neuroscience, v. 338, p. 81-92, 2016. MOREIRA, V. F., OLIVEIRA, R. R., MATHIAS, L., BRAZ-FILHO, R., VIEIRA, I. J. C. New Chemical Constituents from Borreria verticillata (Rubiaceae). Helvetica Chimica Acta, v. 93, p. 1751-1757, 2010. MURTALA, Y., BABANDI, A., SUNUSI, M. M., SHEHU, D., BABAGANA, K., ALHASSAN, A. J. Effect of Aqueous Leaf Extract of Borreria verticillata Species of SudanoSahelian Savanna on CCl4 Induced Hepatotoxicity. Journal of Natural Sciences Research, v. 5, n.24, p. 73-78, 2015. NA, J-Y.; SONG, K.; KIM, S.; KWON, J. Rutin protects rat articular chondrocytes against oxidative stress induced by hydrogen peroxide through SIRT1 activation. Biochemical and Biophysical Research Communications, v. 473, n. 4, p. 1301-1308, mai., 2016. NEWMAN D. J., CRAGG G. M. Natural Products As Sources of New Drugs over the 30 Years from 1981 to 2010. Journal of Natural Products, Washington D.C., v. 75, p. 311?335, 2012. OGUNWANDE, I. A., WALKER, T. M., BANSAL, A., SETZER, W. N., ESSIEN, E. E. Essential oil constituents and biological activities of Peristrophe bicalyculata and Borreria verticillata. Natural Product Communications., v. 5, n. 11, p. 1815-1818, 2010. PARVEEN, Z.; DENG, Y.; SAEED, M.K.; DAI, R.; AHAMAD, W.; YU, Y.H. Antiinflammatory and analgesic activities of Thesium chinese Turcz extracts and its major flavonoids, kaampferol and kaempferol-3-O-glucoside. Yakugaku Zasshi, v.127, p.1275-1279, 2007. 71 PEIXOTO-NETO, P. A. de S.; SILVA, M. V.; CAMPOS, N. V. C.; PORF?RIO, Z.; CAETANO, L. C. Antibacterial activity of Borreria verticillata roots. Fitoterapia, v. 73, n. 6, p. 529?531, 2002. PERINI, J. A.; ANGELI-GAMBA, T.; ALESSANDRA-PERINI, J.; FERREIRA, L. C.; NASCIUTTI, L. E.; MACHADO, D. E. Topical application of Acheflan on rat skin injury accelerates wound healing: a histopathological, immunohistochemical and biochemical study. BMC complementary and alternative medicine, v. 15, n. 1, p. 203, 2015. PETERSON, K.; ANDERSON, J.; FERGUSON, L.; MACKEY, K. Evidence Brief: The Comparative Effectiveness of Selected Complementary and Integrative Health (CIH) Interventions for Preventing or Reducing Opioid Use in Adults with Chronic Neck, Low Back, and Large Joint Pain. Abr. 2016. PETROVSKA, B. B. Historical review of medicinal plants' usage. Pharmacognosy Reviews, v. 6, n. 11, p. 1-5, 2012. PORTER, D. G. Ethical scores for animal experiments. Nature. v.356, n.6365, p.101-102. 1992. RANG, H.P.; DALE, M.M.; RITTER, J.M.; FLOWER, R.J.; HENDERSON, G. Rang & Dale: Farmacologia. 7 ed., Rio de Janeiro: Elsevier, 2012. RASOULI, H., FARZAEI, M.H.., MANSOURI, K., MOHAMMADZADEH, S., KHODARAHMI, R. Plant Cell Cancer: May Natural Phenolic Compounds Prevent Onset and Development of Plant Cell Malignancy? A Literature Review. Molecules, v. 21, n.9, p. 1104- 1130, 2016. RATES, S. M. K. Plants as source of drugs. Toxicon, Amsterdam, v.39, p.603-613, 2001. ROCHA, F. A.C. et al. Efeito de inibidores da sintase de ?xido n?trico na dor inflamat?ria articular e influxo celular da artrite induzida por zymosan em ratos. Revista Brasileira de Reumatologia., v. 43, n. 4, p. 206-17, 2003. RUFINO, M. do S. M., ALVES, R. E., BRITO, E. S., P?REZ-JIM?NEZ, J., SAURACALIXTO F., MANCINI-FILHO, J. Bioactive compounds and antioxidant capacities of 18 non-traditional tropical fruits from Brazil. Food Chemistry, V. 121, P. 996?1002, 2010. SAHOO, N., MANCHIKANTI, P., DEY, S. Review: Herbal drugs: Standards and regulation. Fitoterapia, v. 81, p. 462?471, 2010. SANTOS, M. D.; ALMEIDA, M. C.; LOPES, N. P.; DE SOUZA, G. E. P. Evaluation of the anti-inflammatory, analgesic and antipyretic activities of the natural polyphenol chlorogenic acid. Biological and Pharmaceutical Bulletin., v. 29, n. 11, p. 2236-2240, 2006. SANZ M.J & KUBES P. 2012. Neutrophil-active chemokines in in vivo imaging of neutrophil trafficking. European Journal of Immunology., v. 42, n. 2, p. 278-283, 2012. 72 SALVAMANI, S., GUNASEKARAN, B., SHAHARUDDIN, N.A., AHMAD, S.A., SHUKOR, M.Y. Antiartherosclerotic Effects of Plant Flavonoids. BioMed Research International, p. 1- 11, 2014. SMOLEN, J. S.; ALETAHA, D.; MCLNNES, I. B. Rheumatoid arthritis. Lancet, v. 388, p. 2023?2038, 2016. SOKAL, R. R.; ROHLF, F. J. Biometry: The principles and Practice of Statistics. New York: W. H. Freemann, p. 859, 1981. THOM, E. The Effect of Chlorogenic Acid Enriched Coffee on Glucose Absorption in Healthy Volunteers and Its Effect on Body Mass When Used Long-term in Overweight and Obese People. Journal of International Medical Research, v. 35, n.6, p. 900 ? 908, 2007. THOMPSON, C.; DAVIES, R.; CHOY, E. Review article Anti cytokine therapy in chronic inflammatory arthritis. Cytokine, v. 86, p. 92?99, 2016. TORRES-R?GO, M., FURTADO, A. A.; BITENCOURT, M. A. O.; LIMA, M. C. J. DE S.; RAFAEL CAETANO ANDRADE, R. C. L. C.; AZEVEDO, E. P.; SOARES, T. DA C.; TOMAZ, J. C.; LOPES, N. P.; SILVA-J?NIOR, A. A.; ZUCOLOTTO, S. M.; FERNANDESPEDROSA, M. DE F. Anti-inflammatory activity of aqueous extract and bioactive compounds identified from the fruits of Hancornia speciosa Gomes (Apocynaceae), BMC complementary and alternative medicine, v. 16, n. 1, p. 275, aug., 2016. TUBARO, A.; DRI, P.; MELANO, M.; MULAS, G.; BIANCHI, P.; DEL NEGRO, P.; DELLA LOGGIA, R. 1986. In the Croton Oil Ear Test the Effects of non-Steroidal Anti-inflammatory Drug (NSAIDs) are Dependent on the Dose of the Irritant. Agents Actions 19: 371-373. TURNER, M. D.; NEDJAI, B.; HURST, T.; PENNINGTON, D. J. Review - Cytokines and chemokines: At the crossroads of cell signalling and inflammatory disease. Biochimica et Biophysica Acta, v. 1843, n. 11, p. 2563?2582, 2014. UPADHYAY, R., RAO, J.M. An outlook on chlorogenic acids ? Occurrence, chemistry, technology, and biological activities. Critical Reviews in Food Science and Nutrition, v. 53, n. 9, p. 968-984, 2013. USHIE, O. A., ADAMU, H. M., OGAR, D. A., GUNDA, H. J. Phytochemistry of Borreria verticillata Stem Bark. International Journal of Traditional and Natural medicines., v. 2, n. 2, p. 97-103, 2013. VEENA, N. Sundara et al. Skeletal muscle relaxant property of diazepam by using rotarod on albino mice. International Journal of Applied and Basic Medical Research., v. 4, p. 714- 721, 2015. VERMA, P. R.; JOHARAPURKAR, A. A.; CHATPALLIWAR, V. A.; ASNANI, A. J. Antinociceptive activity of alcoholic extract of Hemidesmus indicus R. Br. in mice. Journal of Ethnopharmacology., v. 102, n. 2, p. 298-301, 2005. 73 VERRI JR., W.A.; CUNHA, T. M.; PARADA, C. A.; POOLE, S.; CUNHA, F. Q.; FERREIRA, S. H. Hypernociceptive role of cytokines and chemokines: Targets for analgesic drug development? Pharmacology & Therapeutics, v. 112, n.1, p. 116?138, 2006. VINEGAR, R.; TRUAX, JF.; SELPH, J. L. Some quantitative temporal characteristics of carrageenin induced pleurisy in the rat. Proceedings of the Society for Experimental Biology and Medicine, v. 3, p.711-714, 1973. WHO. Traditional Medicine Strategy 2002?2005. World Health Organization: Geneva, Switzerland, 2002. WHO. Traditional Medicine Strategy 2014?2023. World Health Organization: Geneva, Switzerland, 2013. YUAN, H., MA, Q., YE, L., PIAO, G. The Traditional Medicine and Modern Medicine from Natural Products. Molecules, Switzerland, v. 21, p. 559-577, 2016. YUNES, R. A., PEDROSA, R. C., CECHINEL-FILHO, V. F?rmacos e Fitoter?picos: a necessidade do desenvolvimento da ind?stria de fitoter?picos e fitof?rmacos no Brasil. Qu?mica Nova, v. 24, n. 1, p. 147-152, 2001. ZHAO, Y., WANG, J., BALLEVRE, O., LUO, H., ZHANG, W. Antihypertensive effects and mechanisms of chlorogenic acids. Hypertension Research, v. 35, n.4, p. 370-374, 2011. ZIMMERMANN, M. Ethical considerations in relation to pain in animal experimentation. Acta Physiologica Scandinavica Supplement. v. 554, p. 221-233. 1986. ZIMMERMANN, M. Ethical guidelines for investigations of experimental pain in conscious animals. Pain. v. 16, n. 2, p. 109-110. 1983.AntinociceptivoAnti-inflamat?rioBorreria verticillata (L.) G. MeyAntinociceptiveAnti-inflammatoryBorreria verticillataFisiologiaAvalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)Evaluation of antinociceptive and anti-inflammatory effects of extract, fractions and compounds of Borreria verticillata (L.) G. 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dc.title.por.fl_str_mv Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
dc.title.alternative.por.fl_str_mv Evaluation of antinociceptive and anti-inflammatory effects of extract, fractions and compounds of Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
title Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
spellingShingle Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
Mariano, Geysa de Matos Dutra
Antinociceptivo
Anti-inflamat?rio
Borreria verticillata (L.) G. Mey
Antinociceptive
Anti-inflammatory
Borreria verticillata
Fisiologia
title_short Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
title_full Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
title_fullStr Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
title_full_unstemmed Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
title_sort Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o)
author Mariano, Geysa de Matos Dutra
author_facet Mariano, Geysa de Matos Dutra
author_role author
dc.contributor.advisor1.fl_str_mv Vanderlinde, Frederico Argollo
dc.contributor.advisor1ID.fl_str_mv 49295896734
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/3183716703092107
dc.contributor.referee1.fl_str_mv Vanderlinde, Frederico Argollo
dc.contributor.referee2.fl_str_mv Marinho, Bruno Guimar?es
dc.contributor.referee3.fl_str_mv Matheus, Maria Eline
dc.contributor.authorID.fl_str_mv 10389316733
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/2615320530323647
dc.contributor.author.fl_str_mv Mariano, Geysa de Matos Dutra
contributor_str_mv Vanderlinde, Frederico Argollo
Vanderlinde, Frederico Argollo
Marinho, Bruno Guimar?es
Matheus, Maria Eline
dc.subject.por.fl_str_mv Antinociceptivo
Anti-inflamat?rio
Borreria verticillata (L.) G. Mey
topic Antinociceptivo
Anti-inflamat?rio
Borreria verticillata (L.) G. Mey
Antinociceptive
Anti-inflammatory
Borreria verticillata
Fisiologia
dc.subject.eng.fl_str_mv Antinociceptive
Anti-inflammatory
Borreria verticillata
dc.subject.cnpq.fl_str_mv Fisiologia
description Borreria verticillata (L.) G. Mey is a herbaceous plant of the family Rubiaceae, considered a weed and known as vassourinha-de-bot?o. Because it is used in the population as analgesic and antipyretic, the objective of this work was to evaluate the antinociceptive and anti-inflammatory potential of B. verticillata (EFBV) aqueous extract of the leaves, flavonoid (Flav), butanol (BuOH) and ethyl acetate (AcOEt) fractions and compounds rutin (Ru, 58% yield) and chlorogenic acid (AC, 3% yield), administered orally in mice. Previous studies have shown the activity of the EFBV extract, the flavonoid rutin and the phenolic compound chlorogenic acid in several biological activities, encouraging our research with these compounds, aiming to confirm the uses of B. verticillata. The evaluation of antinociceptive activity by the writhing test (acetic acid), showed that the administration of EFBV (100, 300 and 1000mg/kg) produced inhibitions in the number of writhes of 23.6%, 30.3% and 47.3%, respectively, when compared to the vehicle, as well as the positive control (CP) indomethacin reduced of the writhes. In the tail-immersion test, the administration of EFBV did not show changes in the latency time of the animals in front of the thermal stimulus and to confirm these antinociceptive results, we evaluated the motor activity of the EFBV, in which its administration did not modify the dwell time of the animals in the rota-rod. The evaluation of anti-inflammatory activity through the carrageenan-induced pleurisy test showed that EFBV (1g/kg) inhibited leukocyte migration in 33.7%, compared to the vehicle and the fractions Flav (20mg/kg), BuOH (200mg/kg), AcOEt (25mg/kg) presented reductions in the migration of 38.9%, 71.1%, 78,8% and 85.5% respectively. Evaluating the antiedematogenic activity with the ear edema test (croton oil), the administration of EFBV (1g/kg) reduced edema by 47.6%. In zymosan-induced articular arthritis, EFBV(1g/kg), Ru (30mg/kg) and AC (2mg/kg) reduced edema of the femoral-tibial joint in 57.8%, 49.2% and 51.7%, respectively, when compared to vehicles. In the same test, EFBV (1g/kg), Ru (30mg/kg) and AC (2mg/kg) compounds inhibited the leukocyte migration to the joint cavity in 64.9%, 79.5% and 77.8%, when compared to their respective vehicles and CP dexamethasone also produced reductions in the two parameters evaluated in this model. In the measurement of the femoral-tibial diameter, followed by cytokine TNF-? dosing in the joint macerate, EFBV, Ru and AC reduced joint thickness by 58.1% (EFBV, Ru) and 40.7% (AC), when compared to saline-zymosan control, with CP dexamethasone reduced the thickness by 76.5%. The concentration of TNF-? after administration of EFBV, Ru or AC, where we observed reductions of 30.4%, 37.0%, 21.7%, respectively, in the cytokine concentration, compared to saline-zymosan control and similar to CP, reducing this concentration by 50.0%. These results show that the antinociception of the EFBV, in the writhing test, participate in anti-inflammatory mechanisms, and this extract showed antiedematogenic activity (ear edema) and, together with the compounds Ru and AC, at the femoral-tibial joint in arthritis by zimosan. In addition, EFBV and fractions (Flav, BuOH and AcOEt) inhibited leukocyte migration in pleurisy by carrageenan, and the extract, Ru and AC also showed similar effectiveness in zymosan-induced arthritis, also reducing the concentration of TNF- ?. These results suggest that the anti-inflammatory, antinociceptive and anti-arthritis effects involved the inhibition of TNF-?, justifying the biological effects of EFBV, rutin and chlorogenic acid, and may explain some of the uses of B. verticillata (L.) G. Mey
publishDate 2017
dc.date.issued.fl_str_mv 2017-02-22
dc.date.accessioned.fl_str_mv 2021-01-06T17:57:29Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
dc.type.driver.fl_str_mv info:eu-repo/semantics/masterThesis
format masterThesis
status_str publishedVersion
dc.identifier.citation.fl_str_mv MARIANO, Geysa de Matos Dutra. Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o). 2017. 73 f. Disserta??o (Mestrado em Ci?ncias Fisiol?gicas) - Instituto de Ci?ncias Biol?gicas e da Sa?de, Universidade Federal Rural do Rio de Janeiro, Serop?dica - RJ, 2017.
dc.identifier.uri.fl_str_mv https://tede.ufrrj.br/jspui/handle/jspui/4318
identifier_str_mv MARIANO, Geysa de Matos Dutra. Avalia??o dos efeitos antinociceptivo e anti-inflamat?rio de extrato, fra??es e compostos de Borreria verticillata (L.) G. Mey (Vassourinha de bot?o). 2017. 73 f. Disserta??o (Mestrado em Ci?ncias Fisiol?gicas) - Instituto de Ci?ncias Biol?gicas e da Sa?de, Universidade Federal Rural do Rio de Janeiro, Serop?dica - RJ, 2017.
url https://tede.ufrrj.br/jspui/handle/jspui/4318
dc.language.iso.fl_str_mv por
language por
dc.relation.references.por.fl_str_mv ABDULLAHI-GERO, H. S., AHMED, A., HUSSAINI, I. M. Preliminary evaluation of ethanol leaf extract of Borreria verticillata Linn (Rubiaceae) for analgesic and anti-inflammatory effects. Journal of Medicinal Plants Research., Nigeria, v.8, n.20, p. 736-747, mai, 2014. AFONSO P.V.; JANKA-JUNTTILA M.; LEE Y.J.; MCCANN C.P.; OLIVER C.M.; AAMER K.A.; LOSERT W.; CICERONE M.T.; PARENT C.A. LTB 4 is a signal-relay molecule during neutrophil chemotaxis. Developmental cell, v. 22, n. 5, p. 1079-1091, 2012. AGRA, M de F., FREITAS, P. F., BARBOSA-FILHO, J. M. Synopsis of the plants known as medicinal and poisonous in Northeast of Brazil. Brazilian Journal Pharmacognosy, v. 17, n. 1, jan-mar, 2007. AGUIAR, L. S., ANDRADE, F. F. R., SILVA, L. A. C., SILVA, M. C. P., RODRIGUES, K. A. F., AMARAL, F. M. M., COUTINHO-MORAES, D. F. Estudo farmacobot?nico das folhas de Borreria verticillata (l.) g. Mey. (Rubiaceae). Revista Brasileira de Ci?ncias da Sa?de, S?o Lu?z, v. 12, n. 2, p.84-90, 2010. ASHLEY, N. T.; WEIL, Z. M.; NELSON, R. J. Inflammation: Mechanisms, Costs, and Natural Variation. Annual Review of Ecology, Evolution, and Systematics, v. 43, p. 385?406, 2012. BALD? A. M., PIETERS L. A., TRAORE M. S., CAMARA A., BALD? M. A, OULARE K., BARRY M. S., DIALLO M. S. T., BALD? E. S., DIANE S., VLIETINCK A. J. Chemotherapeutical evaluation of Borreria verticillata extracts. Journal of Plant Sciences, Nova York, v.3, n.1-2 p.28-31, dez, 2015. BRAHMACHARI, G. Bioactive Natural Products: Opportunities and Challenges in Medicinal Chemistry. 1st ed. Singapura: World Scientific Publishing Co. Pte. Ltd., 2011, p.1- 199. BRASIL. Pol?tica Nacional de Plantas Medicinais e Fitoter?picos. Departamento de Assist?ncia Farmac?utica e Insumos Estrat?gicos. Bras?lia: Minist?rio da Sa?de, Secretaria de Ci?ncia, Tecnologia e Insumos Estrat?gicos, 2006, 136p. BRASIL. Resolu??o da Diretoria Colegiada (RDC) N? 10, de 9 de mar?o de 2010. Disp?e sobre a notifica??o de drogas vegetais junto ? Ag?ncia Nacional de Vigil?ncia Sanit?ria. Bras?lia: Minist?rio da sa?de, Ag?ncia Nacional de Vigil?ncia Sanit?ria, 2010. BRASIL. Resolu??o da Diretoria Colegiada (RDC) N? 26, de 13 de maio de 2010. Disp?e sobre o registro de medicamentos fitoter?picos e o registro e a notifica??o de produtos tradicionais fitoter?picos. Bras?lia: Minist?rio da sa?de, Ag?ncia Nacional de Vigil?ncia Sanit?ria, 2014. BRUNTON, L. L.; CHABNER, B. A.; KNOLLMANN, B. C. Goodman & Gilman: As Bases Farmacol?gicas da Terap?utica. 12 ed. Porto Alegre: AMGH Editora, 2012. BRZUSTEWICZ, E.; BRYL, E. The role of cytokines in the pathogenesis of rheumatoid arthritis ? Practical and potential application of cytokines as biomarkers and targets of personalized therapy. Cytokine, v. 76, p. 527?536, 2015. 66 CALIXTO J. B, BERRITTO A., FERREIRA, J., SANTOS A. R., VAIDIN F., YUNES R. A. Naturally Occurring Anti-nociceptive Plants. Phytotherapy Research. v. 14, p. 401-418, 2000. CALIXTO J. B. Twenty-five of research on medicinal plants in Latin America. Journal of Ethnopharmacology, n, v. 100, p. 131-134, 2005. CAZAROLLI, L.H., ZANATTA, L., ALBERTON, E.H., FIGUEIREDO, M.S.R.B., FOLADORI, P., DAMAZIO, R.G., PIZZOLATTI, M.G., SILVA, F.R.M.B. Flavonoids: Prospective Drug Candidates. Mini-Reviews in Medicinal Chemistry, v.8, n.13, p. 1429- 1440, 2008. CHAUHAN, P. S.; SATTI, N. K.; SHARMA, P.; SHARMA, V. K.; SURI, K. A.; BANI, S. Differential Effects of Chlorogenic Acid on Various Immunological Parameters Relevant to Rheumatoid Arthritis. Phytotherapy Research, v. 26, n. 8, p. 1156-1165, aug., 2012. CHEN, W-P.; TANG, J-L.; BAO, J-P., HU, P-F.; SHI, Z-L.; WU, L-D. Anti-arthritic effects of chlorogenic acid in interleukin-1?-induced rabbit chondrocytes and a rabbit osteoarthritis model. International Immunopharmacology, v. 11, n. 1, p. 23?28, jan., 2011. CHEN, W-Y.; HUANG, Y-C.; YANG, M-L., LEE, C-Y.; CHEN, C-J.; YEH, C-H.; PAN, P-H.; HORNG, C-T.; KUO, W-H.; KUAN, Y-H. Protective effect of rutin on LPS-induced acute lung injury via down-regulation of MIP-2 expression and MMP-9 activation through inhibition of Akt phosphorylation. International Immunopharmacology, v. 22, n. 2, p. 409?413, oct., 2014. CHERIGO, L.; LEZCANO, J.; SPADAFORA, C.; MART?NEZ-LUIS, S. Evaluation of phytotoxic, cytotoxic and antiparasitic in vitro activities of Borreria verticillata, a weed of Panamanian coffee crops. Bioscience Research, v. 9, n. 2, p. 82-86, 2012. CHUA, L. S. A review on plant-based rutin extraction methods and its pharmacological activities. Journal of Ethnopharmacology, v. 150, n. 3, p. 805?817, dec., 2013. CONSERVA, L. M., FERREIRA, J. C. Borreria and Spermacoce species (Rubiaceae): A review of their ethnomedicinal properties, chemical constituents, and biological activities. Pharmacognosy Reviews, v. 6, n. 11, p.46-55, 2012. CONTE F. P.; MENEZES-DE-LIMA O. J. R.; VERRI W.A. J. R.; CUNHA F. Q.; PENIDO C.; HENRIQUES M. G. Lipoxin A (4) attenuates zymosan-induced arthritis by modulating endothelin-1 and its effects. British Journal of Pharmacology, v.161, n.4, p.11-24, 2010. CORNEJO-GARC?A, J. A.; PERKINS, J.; JURADO-ESCOBAR, R.; GARC?A-MART?N, E.; AG?NDEZ, J. A.; VIGUERA, E.; P?REZ-S?NCHEZ, N.; BLANCA-L?PEZ, N. Pharmacogenomics of Prostaglandin and Leukotriene Receptors. Frontiers Pharmacology, v. 7, n. 316, p. 1-9, 2016. CRAIG, A.P., FIELDS, C., LIANG, N., KITTS, D., ERICKSON, A. Performance review of a fast HPLC-UV method for the quantification of chlorogenic acids in green coffee bean extracts. Talanta, v. 154, p. 481?485, 2016. 67 D? AMOUR, F.; SMITH, D. A method for determining loss of pain sensation. Journal of Pharmacology and Experimental Therapeutics., v.72, p.74-79, 1941. D?MELLO, R.; DICKENSON, A. H. Spinal cord mechanisms of pain. British Journal of Anaesthesia, v. 101, n. 1, p. 8?16, 2008. DINAKAR, P.; STILLMAN, A. M. Pathogenesis of Pain. In: Seminars in Pediatric Neurology. WB Saunders, v. 23, n. 3, p. 201-208, 2016. DOMICIANO, T. P.; DALALIO, M. M.; SILVA, E. L.; RITTER, A. M.; ESTEV?O-SILVA, C. F.; RAMOS, F. S.; CAPARROZ-ASSEF, S. M.; CUMAN, R. K.; BERSANI-AMADO, C. A. Inhibitory effect of anethole in nonimmune acute inflammation. Naunyn-Schmiedeberg?s Archives of Pharmacology, n.386, p.331-338, 2013. DUHAM, N. W.; MYIA, T. S. A note on a simple apparatus for detecting neurological deficit in rats and mice. Journal of the American Pharmacists Association. v.46, p.208-209, 1957. EFFERTH, T., ZACCHINO, S., GEORGIEV, M. I., LIU L., WAGNER, H., PANOSSIAN A. Editorial: Nobel Prize for artemisinin brings phytotherapy into the spotlight. Phytomedicine. v.22, p. A1-A3, dez, 2015. FALC?O, H de S.; LIMA, I. O.; SANTOS, V. L.; DANTAS, H. de F.; DINIZ, M de F. F. M.; BARBOSA-FILHO, J. M.; BATISTA, L. M. Review of the plants with the anti-inflammatory activity studied in Brazil. Revista Brasileira de Farmacognosia, Jo?o Pessoa, v.15, n.4, p. 381-391, out-dez, 2005. FERREIRA-JUNIOR, C. J., LEMOS, R. P. L., CONSERVA, L. M. Chemical constituents from Spermacoce verticillata (Rubiaceae). Biochemical Systematics and Ecology, v. 44, p. 208? 211, 2012. FRIAS, B.; MERIGHI, A. Capsaicin, nociception and pain. Molecules, v. 21, n. 6, p. 797, 2016. FRODE T.S.; SOUZA G.E.; CALIXTO J.B. 2001. The modulatory role played by TNF-alpha and IL-1 beta in the inflammatory responses induced by carrageenan in the mouse model of pleurisy. Cytokine, v. 13, n. 3, p. 162-168, 2001. FURTADO, A. A; TORRES-R?GO, M.; LIMA, M. C. J. S., BITENCOURT, M. A. O.; ESTRELA, A. B.; SILVA, N. S.; SIQUEIRA, E. M. DA S.; TOMAZ, J. C.; LOPES, N. P.; SILVA-J?NIOR, A. A.; ZUCOLOTTO, S. M.; FERNANDES-PEDROSA, M. F. Aqueous extract from Ipomoea asarifolia (Convolvulaceae) leaves and its phenolic compounds have antiinflammatory activity in murine models of edema, peritonitis and air-pouch inflammation. Journal of Ethnopharmacology, v. 192, p. 225?235, nov., 2016. GANESHPURKAR, A.; SALUJA, A. K. Review: The Pharmacological Potential of Rutin. Saudi Pharmaceutical Journal, 2016. GHASEMIAN, M.; OWLIA, S.; OWLIA, M. B. Review of Anti-Inflammatory Herbal Medicines. Hindawi Publishing Corporation, v. 2016, 2016. 68 GUARDIA, T.; ROTELLI, A. E.; JUAREZ, A. O.; PELZER, L. E. Protective effect of rutin on LPS-induced acute lung injury via down-regulation of MIP-2 expression and MMP-9 activation through inhibition of Akt phosphorylation. Farmaco, v. 56, n. 9, p. 683?687, 2001. GUERRERO, A. T. G.; CUNHA, T. M.; VERRI-JUNIOR, W.A.; GAZZINELLI, R. T.; TEIXEIRA, M. M.; CUNHA, F. Q.; FERREIRA, S. H. Toll-like receptor 2/MyD88 signaling mediates zymosan-induced joint hypernociception in mice: Participation of TNF-alpha, IL-1 beta and CXCL1/KC. European Journal of Pharmacology, v. 674, n. 1, p. 51-57, 2012. HAN, J.; ULEVITCH, R. J. Limiting inflammatory responses during activation of innate immunity. Nature Immunology, v. 6, n. 12, 2005. HAN, Y. Rutin has therapeutic effect on septic arthritis caused by Candida albicans. International Immunopharmacology, v. 9, n. 2, p. 207-211, feb., 2009. HARIZI, H.; CORCUFF, J. B.; GUALDE, N. Arachidonic-acid-derived eicosanoids: roles in biology and immunopathology. Trends in Molecular Medicine, v. 14, n.10, p. 461-469, 2008. HENSON, P. M. Dampening inflammation. Nature Immunology, v. 6, n. 12, p. 1179-1181, 2005. HOLL, E. K.; ALLEN, I. C.; MARTINEZ, J. Holding the Inflammatory System in Check: TLRs and NLRs. Hindawi Publishing. Corporation, v. 2016, 2016. INOUE, A.; MATSUMOTO, I.; TANAKA, Y.; UMEDA, N.; TAKAI, C.; KAWAGUCHI, H.; TAKAHASHI, S. TIARP attenuates autoantibody-mediated arthritis via the suppression of neutrophil migration by reducing CXCL2/CXCR2 and IL-6 expression. Scientific Reports, v. 6, 2016. JANSSEN, P. A.; NIEMEGEERS, C. J.; DONY, J. G. The inhibitory effect of fentanyl and other morphine-like analgesics on the warm water induced tail withdrawl reflex in rats. Arzneimittel-forschung, v. 13, p. 502-507, 1963. JI, H-F., LI, X-J., ZHANG, H-Y. Natural products and drug discovery. EMBO reports, Germany, v. 10, n. 3, p. 194-200, 2009. JOHNSON, Craig. Research Tools for the Measurement of Pain and Nociception. Animals, v. 6, n. 11, p. 71, 2016. KAEWPUT W.; DISORN P.; SATIRAPOJ B. Selective cyclooxygenase-2 inhibitor use and progression of renal function in patients with chronic kidney disease: a single-center retrospective cohort study. International Journal of Nephrology and Renovascular Disease, v. 9, p. 273-278, 2016. KALA, S. C. A short review on Rubiaceae species. International Journal of Pharma and Bio Sciences, v. 5, n. 2, abr-jun, p. 179-181, 2015. KANDEL, E.; SCHWARTZ, J.; JESSELL, T.; SIEGELBAUM, S.; HUDSPETH, A.J..Princ?pios de neuroci?ncias. 5 ed, Porto Alegre: AMGH Editora, 2014. 69 KEYSTONE E. C., SCHORLEMMER H. U., POPE C., ALLISON C. Zymosan-Induced Arthritis. Arthritis Rheumatology, v. 20, n.7, p. 1396-1401, 1977. KLAUMANN, P. R.; WOUK, A. F. P. F.; SILLAS, T. Patofisiologia da dor (Pathophysiology of pain). Archives of Veterinary Science, v. 13, n.1, p.1-12, 2008. KOSTER, R.; ANDERSON, M.; DE BEER, E. J. Acetic acid for analgesic screening. Federation Proceedings, v.18, p.412, 1959. KROGEL C. & ANTONY V.B. 1997. Immunobiology of pleural inflammation: potential implications for pathogenesis, diagnosis and therapy. European Respiratory Journal, v. 10, n. 10, p. 2411-2418, 1997. KUMAR, V.; ABBAS, A. K.; FAUSTO, N.; ASTER, J. C. Robbins & Cotran: Patologia Bases patol?gicas das doen?as. 8? ed., 2010, Elsevier. KUNER, R. Central mechanisms of pathological pain. Nature Medicine, v. 16, n. 11, p. 1258- 1266, 2010. LAHLOU, M. The Success of Natural Products in Drug Discovery. Pharmacology & Pharmacy, v. 4, p. 17-31, 2013. LAPA, A. J.; SOUCCAR, C.; LIMA-LANDMAN, M. T. R.; CASTRO, M. S. DE A.; LIMA, T. C. M. Plantas Medicinais: M?todos de avalia??o da atividade farmacol?gica. 5? ed., 2007, S?o Paulo: SBPC. LAVETI, D.; KUMAR, M.; HEMALATHA, R.; SISTLA, R.; NAIDE, V. G. M.; TALLA, V.; VERMA, V.; KAUR, N.; NAGPAL, R. Anti-Inflammatory Treatments for Chronic Diseases: A Review. Inflammation Allergy Drug Targets, v. 12, n. 5, p. 349-361, 2013. LAWRENCE, T.; WILLOUGHBY, D. A.; GILROY, D. W. Anti-inflammatory lipid mediators and insights into the resolution of inflammation. Nature. Reviews Immunology, v. 2, n. 10, p. 787-795, 2002. LE BARS, D.; GOZARIU, M.; CADDEN, S.W. Animal models of nociception. Pharmacology Reviews, v.53, p.597-652, 2001. LEE H.N.; CHO H.J.; LIM DO Y.; KANG Y.H.; LEE K.W.; PARK J.H. 2013. Mechanisms by which licochalcone e exhibits potent anti-inflammatory properties: studies with phorbol estertreated mouse skin and lipopolysaccharide-stimulated murine macrophages. International Journal of Molecular Sciences, v. 14, n. 6, p. 10926-10943, 2013. LI, J. L.; LIM, C. H.; TAY, F. W.; GOH C. C., DEVI S.; MALLERET, B.; ? TANIZAKI, H. Neutrophils self-regulate immune complex-mediated cutaneous inflammation through CXCL2. Journal of Investigate Dermatology, v. 136, n. 2, p. 416-424, 2016. LIANG, N., KITTS, D.D. Role of Chlorogenic Acids in Controlling Oxidative and Inflammatory Stress Conditions. Nutrients, v. 8, n. 16, p. 1-20, 2016. 70 LIMA, I. C. Avalia??o do Perfil Fitoqu?mico e atividade anti-inflamat?ria da esp?cie Spermacoce verticillata L. (Rubiaceae). Rio de Janeiro: Universidade Federal Rural do Rio de Janeiro; 2016 p. 29-31. LIMA, I. C., NORA, R., CARVALHO, M. G., CHAVES, D. S. A. Distribution and chemotaxonomic significance of phenolic compounds in Spermacoce verticillata (L.) G. Mey. Journal of Pharmacy & Pharmacognosy Research, v. 2, n. 1, p. 14-18, 2014. LIMA, J. J. F. As Plantas na Hist?ria da Dor. Revista da Sociedade Portuguesa de Anestesiologia, v. 22, n. 4, p. 126- 133, 2013. LOU, L.; ZHOU, J.; LIU, Y.; WEI, Y.; ZHAO, J.; DENG, J.; DONG, B., ZHU, L.; WU, A.; YANG, Y.; CHAI, L. Chlorogenic acid induces apoptosis to inhibit inflammatory proliferation of IL-6-induced fibroblast-like synoviocytes through modulating the activation of JAK/STAT and NF-?B signaling pathways. Experimental and Therapeutic Medicine., v. 11, n. 5, p. 2054-2060, mai., 2016. MARCHAND, S. The Physiology of Pain Mechanisms: From the Periphery to the Brain. Rheumatic Disease Clinics of North Americav. 34, n. 2, p. 285?309, 2008. MITSI, V.; ZACHARIOU, V. Modulation of pain, nociception, and analgesia by the brain reward center. Neuroscience, v. 338, p. 81-92, 2016. MOREIRA, V. F., OLIVEIRA, R. R., MATHIAS, L., BRAZ-FILHO, R., VIEIRA, I. J. C. New Chemical Constituents from Borreria verticillata (Rubiaceae). Helvetica Chimica Acta, v. 93, p. 1751-1757, 2010. MURTALA, Y., BABANDI, A., SUNUSI, M. M., SHEHU, D., BABAGANA, K., ALHASSAN, A. J. Effect of Aqueous Leaf Extract of Borreria verticillata Species of SudanoSahelian Savanna on CCl4 Induced Hepatotoxicity. Journal of Natural Sciences Research, v. 5, n.24, p. 73-78, 2015. NA, J-Y.; SONG, K.; KIM, S.; KWON, J. Rutin protects rat articular chondrocytes against oxidative stress induced by hydrogen peroxide through SIRT1 activation. Biochemical and Biophysical Research Communications, v. 473, n. 4, p. 1301-1308, mai., 2016. NEWMAN D. J., CRAGG G. M. Natural Products As Sources of New Drugs over the 30 Years from 1981 to 2010. Journal of Natural Products, Washington D.C., v. 75, p. 311?335, 2012. OGUNWANDE, I. A., WALKER, T. M., BANSAL, A., SETZER, W. N., ESSIEN, E. E. Essential oil constituents and biological activities of Peristrophe bicalyculata and Borreria verticillata. Natural Product Communications., v. 5, n. 11, p. 1815-1818, 2010. PARVEEN, Z.; DENG, Y.; SAEED, M.K.; DAI, R.; AHAMAD, W.; YU, Y.H. Antiinflammatory and analgesic activities of Thesium chinese Turcz extracts and its major flavonoids, kaampferol and kaempferol-3-O-glucoside. Yakugaku Zasshi, v.127, p.1275-1279, 2007. 71 PEIXOTO-NETO, P. A. de S.; SILVA, M. V.; CAMPOS, N. V. C.; PORF?RIO, Z.; CAETANO, L. C. Antibacterial activity of Borreria verticillata roots. Fitoterapia, v. 73, n. 6, p. 529?531, 2002. PERINI, J. A.; ANGELI-GAMBA, T.; ALESSANDRA-PERINI, J.; FERREIRA, L. C.; NASCIUTTI, L. E.; MACHADO, D. E. Topical application of Acheflan on rat skin injury accelerates wound healing: a histopathological, immunohistochemical and biochemical study. BMC complementary and alternative medicine, v. 15, n. 1, p. 203, 2015. PETERSON, K.; ANDERSON, J.; FERGUSON, L.; MACKEY, K. Evidence Brief: The Comparative Effectiveness of Selected Complementary and Integrative Health (CIH) Interventions for Preventing or Reducing Opioid Use in Adults with Chronic Neck, Low Back, and Large Joint Pain. Abr. 2016. PETROVSKA, B. B. Historical review of medicinal plants' usage. Pharmacognosy Reviews, v. 6, n. 11, p. 1-5, 2012. PORTER, D. G. Ethical scores for animal experiments. Nature. v.356, n.6365, p.101-102. 1992. RANG, H.P.; DALE, M.M.; RITTER, J.M.; FLOWER, R.J.; HENDERSON, G. Rang & Dale: Farmacologia. 7 ed., Rio de Janeiro: Elsevier, 2012. RASOULI, H., FARZAEI, M.H.., MANSOURI, K., MOHAMMADZADEH, S., KHODARAHMI, R. Plant Cell Cancer: May Natural Phenolic Compounds Prevent Onset and Development of Plant Cell Malignancy? A Literature Review. Molecules, v. 21, n.9, p. 1104- 1130, 2016. RATES, S. M. K. Plants as source of drugs. Toxicon, Amsterdam, v.39, p.603-613, 2001. ROCHA, F. A.C. et al. Efeito de inibidores da sintase de ?xido n?trico na dor inflamat?ria articular e influxo celular da artrite induzida por zymosan em ratos. Revista Brasileira de Reumatologia., v. 43, n. 4, p. 206-17, 2003. RUFINO, M. do S. M., ALVES, R. E., BRITO, E. S., P?REZ-JIM?NEZ, J., SAURACALIXTO F., MANCINI-FILHO, J. Bioactive compounds and antioxidant capacities of 18 non-traditional tropical fruits from Brazil. Food Chemistry, V. 121, P. 996?1002, 2010. SAHOO, N., MANCHIKANTI, P., DEY, S. Review: Herbal drugs: Standards and regulation. Fitoterapia, v. 81, p. 462?471, 2010. SANTOS, M. D.; ALMEIDA, M. C.; LOPES, N. P.; DE SOUZA, G. E. P. Evaluation of the anti-inflammatory, analgesic and antipyretic activities of the natural polyphenol chlorogenic acid. Biological and Pharmaceutical Bulletin., v. 29, n. 11, p. 2236-2240, 2006. SANZ M.J & KUBES P. 2012. Neutrophil-active chemokines in in vivo imaging of neutrophil trafficking. European Journal of Immunology., v. 42, n. 2, p. 278-283, 2012. 72 SALVAMANI, S., GUNASEKARAN, B., SHAHARUDDIN, N.A., AHMAD, S.A., SHUKOR, M.Y. Antiartherosclerotic Effects of Plant Flavonoids. BioMed Research International, p. 1- 11, 2014. SMOLEN, J. S.; ALETAHA, D.; MCLNNES, I. B. Rheumatoid arthritis. Lancet, v. 388, p. 2023?2038, 2016. SOKAL, R. R.; ROHLF, F. J. Biometry: The principles and Practice of Statistics. New York: W. H. Freemann, p. 859, 1981. THOM, E. The Effect of Chlorogenic Acid Enriched Coffee on Glucose Absorption in Healthy Volunteers and Its Effect on Body Mass When Used Long-term in Overweight and Obese People. Journal of International Medical Research, v. 35, n.6, p. 900 ? 908, 2007. THOMPSON, C.; DAVIES, R.; CHOY, E. Review article Anti cytokine therapy in chronic inflammatory arthritis. Cytokine, v. 86, p. 92?99, 2016. TORRES-R?GO, M., FURTADO, A. A.; BITENCOURT, M. A. O.; LIMA, M. C. J. DE S.; RAFAEL CAETANO ANDRADE, R. C. L. C.; AZEVEDO, E. P.; SOARES, T. DA C.; TOMAZ, J. C.; LOPES, N. P.; SILVA-J?NIOR, A. A.; ZUCOLOTTO, S. M.; FERNANDESPEDROSA, M. DE F. Anti-inflammatory activity of aqueous extract and bioactive compounds identified from the fruits of Hancornia speciosa Gomes (Apocynaceae), BMC complementary and alternative medicine, v. 16, n. 1, p. 275, aug., 2016. TUBARO, A.; DRI, P.; MELANO, M.; MULAS, G.; BIANCHI, P.; DEL NEGRO, P.; DELLA LOGGIA, R. 1986. In the Croton Oil Ear Test the Effects of non-Steroidal Anti-inflammatory Drug (NSAIDs) are Dependent on the Dose of the Irritant. Agents Actions 19: 371-373. TURNER, M. D.; NEDJAI, B.; HURST, T.; PENNINGTON, D. J. Review - Cytokines and chemokines: At the crossroads of cell signalling and inflammatory disease. Biochimica et Biophysica Acta, v. 1843, n. 11, p. 2563?2582, 2014. UPADHYAY, R., RAO, J.M. An outlook on chlorogenic acids ? Occurrence, chemistry, technology, and biological activities. Critical Reviews in Food Science and Nutrition, v. 53, n. 9, p. 968-984, 2013. USHIE, O. A., ADAMU, H. M., OGAR, D. A., GUNDA, H. J. Phytochemistry of Borreria verticillata Stem Bark. International Journal of Traditional and Natural medicines., v. 2, n. 2, p. 97-103, 2013. VEENA, N. Sundara et al. Skeletal muscle relaxant property of diazepam by using rotarod on albino mice. International Journal of Applied and Basic Medical Research., v. 4, p. 714- 721, 2015. VERMA, P. R.; JOHARAPURKAR, A. A.; CHATPALLIWAR, V. A.; ASNANI, A. J. Antinociceptive activity of alcoholic extract of Hemidesmus indicus R. Br. in mice. Journal of Ethnopharmacology., v. 102, n. 2, p. 298-301, 2005. 73 VERRI JR., W.A.; CUNHA, T. M.; PARADA, C. A.; POOLE, S.; CUNHA, F. Q.; FERREIRA, S. H. Hypernociceptive role of cytokines and chemokines: Targets for analgesic drug development? Pharmacology & Therapeutics, v. 112, n.1, p. 116?138, 2006. VINEGAR, R.; TRUAX, JF.; SELPH, J. L. Some quantitative temporal characteristics of carrageenin induced pleurisy in the rat. Proceedings of the Society for Experimental Biology and Medicine, v. 3, p.711-714, 1973. WHO. Traditional Medicine Strategy 2002?2005. World Health Organization: Geneva, Switzerland, 2002. WHO. Traditional Medicine Strategy 2014?2023. World Health Organization: Geneva, Switzerland, 2013. YUAN, H., MA, Q., YE, L., PIAO, G. The Traditional Medicine and Modern Medicine from Natural Products. Molecules, Switzerland, v. 21, p. 559-577, 2016. YUNES, R. A., PEDROSA, R. C., CECHINEL-FILHO, V. F?rmacos e Fitoter?picos: a necessidade do desenvolvimento da ind?stria de fitoter?picos e fitof?rmacos no Brasil. Qu?mica Nova, v. 24, n. 1, p. 147-152, 2001. ZHAO, Y., WANG, J., BALLEVRE, O., LUO, H., ZHANG, W. Antihypertensive effects and mechanisms of chlorogenic acids. Hypertension Research, v. 35, n.4, p. 370-374, 2011. ZIMMERMANN, M. Ethical considerations in relation to pain in animal experimentation. Acta Physiologica Scandinavica Supplement. v. 554, p. 221-233. 1986. ZIMMERMANN, M. Ethical guidelines for investigations of experimental pain in conscious animals. Pain. v. 16, n. 2, p. 109-110. 1983.
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