Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation

Detalhes bibliográficos
Autor(a) principal: Leite, Fábio Renato Manzolli
Data de Publicação: 2008
Outros Autores: Ramalho, Lizete Toledo de Oliveira
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFPel - Guaiaca
Texto Completo: http://repositorio.ufpel.edu.br/handle/ri/864
Resumo: Innocuous biocompatible materials have been searched to repair or reconstruct bone defects. Their goal is to restore the function of live or dead tissues. This study compared connective tissue and bone reaction when exposed to demineralized bovine bone matrix and a polyurethane resin derived from castor bean (Ricinus communis). Forty-five rats were assigned to 3 groups of 15 animals (control, bovine bone and polyurethane). A cylindrical defect was created on mandible base and filled with bovine bone matrix and the polyurethane. Control group received no treatment. Analyses were performed after 15, 45 and 60 days (5 animals each). Histological analysis revealed connective tissue tolerance to bovine bone with local inflammatory response similar to that of the control group. After 15 days, all groups demonstrated similar outcomes, with mild inflammatory reaction, probably due to the surgical procedure rather than to the material. In the polymer group, after 60 days, scarce multinucleated cells could still be observed. In general, all groups showed good stability and osteogenic connective tissue with blood vessels into the surgical area. The results suggest biocompatibility of both materials, seen by their integration into rat mandible. Moreover, the polyurethane seems to be an alternative in bone reconstruction and it is an inexhaustible source of biomaterial.
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spelling Leite, Fábio Renato ManzolliRamalho, Lizete Toledo de Oliveira2013-12-03T11:48:59Z2013-12-03T11:48:59Z2008LEITE, Fábio Renato Manzolli; RAMALHO, Lizeti Toledo de Oliveira. Bone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation. Journal of Applied Oral Science, Tenesse, v. 16, n.1, p. 122-126, 2008.1678-7757http://repositorio.ufpel.edu.br/handle/ri/864Innocuous biocompatible materials have been searched to repair or reconstruct bone defects. Their goal is to restore the function of live or dead tissues. This study compared connective tissue and bone reaction when exposed to demineralized bovine bone matrix and a polyurethane resin derived from castor bean (Ricinus communis). Forty-five rats were assigned to 3 groups of 15 animals (control, bovine bone and polyurethane). A cylindrical defect was created on mandible base and filled with bovine bone matrix and the polyurethane. Control group received no treatment. Analyses were performed after 15, 45 and 60 days (5 animals each). Histological analysis revealed connective tissue tolerance to bovine bone with local inflammatory response similar to that of the control group. After 15 days, all groups demonstrated similar outcomes, with mild inflammatory reaction, probably due to the surgical procedure rather than to the material. In the polymer group, after 60 days, scarce multinucleated cells could still be observed. In general, all groups showed good stability and osteogenic connective tissue with blood vessels into the surgical area. The results suggest biocompatibility of both materials, seen by their integration into rat mandible. Moreover, the polyurethane seems to be an alternative in bone reconstruction and it is an inexhaustible source of biomaterial.Universidade de São Paulov.16, n.2;Bone regenerationRicinus communisBone substitutesBone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantationinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleengreponame:Repositório Institucional da UFPel - Guaiacainstname:Universidade Federal de Pelotas (UFPEL)instacron:UFPELinfo:eu-repo/semantics/openAccessORIGINALBone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation.pdfBone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation.pdfapplication/pdf377672http://guaiaca.ufpel.edu.br/xmlui/bitstream/123456789/864/1/Bone%20regeneration%20after%20demineralized%20bone%20matrix%20and%20castor%20oil%20%28Ricinus%20communis%29%20polyurethane%20implantation.pdf26e81353967c795ff4a6b0f8d49b9223MD51open accessLICENSElicense.txtlicense.txttext/plain; charset=utf-867http://guaiaca.ufpel.edu.br/xmlui/bitstream/123456789/864/2/license.txtfbd6c74465857056e3ca572d7586661bMD52open accessTEXTBone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation.pdf.txtBone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation.pdf.txtExtracted Texttext/plain18598http://guaiaca.ufpel.edu.br/xmlui/bitstream/123456789/864/3/Bone%20regeneration%20after%20demineralized%20bone%20matrix%20and%20castor%20oil%20%28Ricinus%20communis%29%20polyurethane%20implantation.pdf.txt9a408890af98df1e6836f836d8185afeMD53open accessTHUMBNAILBone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation.pdf.jpgBone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation.pdf.jpgGenerated Thumbnailimage/jpeg1783http://guaiaca.ufpel.edu.br/xmlui/bitstream/123456789/864/4/Bone%20regeneration%20after%20demineralized%20bone%20matrix%20and%20castor%20oil%20%28Ricinus%20communis%29%20polyurethane%20implantation.pdf.jpg1df534ab203d9bed23b80f6e3072846aMD54open access123456789/8642020-07-03 16:32:32.391open accessoai:guaiaca.ufpel.edu.br:123456789/864VG9kb3Mgb3MgaXRlbnMgZGVzc2EgY29tdW5pZGFkZSBzZWd1ZW0gYSBsaWNlbsOnYSBDcmVhdGl2ZSBDb21tb25zLg==Repositório InstitucionalPUBhttp://repositorio.ufpel.edu.br/oai/requestrippel@ufpel.edu.br || repositorio@ufpel.edu.br || aline.batista@ufpel.edu.bropendoar:2020-07-03T19:32:32Repositório Institucional da UFPel - Guaiaca - Universidade Federal de Pelotas (UFPEL)false
dc.title.pt_BR.fl_str_mv Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
title Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
spellingShingle Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
Leite, Fábio Renato Manzolli
Bone regeneration
Ricinus communis
Bone substitutes
title_short Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
title_full Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
title_fullStr Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
title_full_unstemmed Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
title_sort Bone regeneration after demineralized bone matrix and castor oil Ricinus communis polyurethane implantation
author Leite, Fábio Renato Manzolli
author_facet Leite, Fábio Renato Manzolli
Ramalho, Lizete Toledo de Oliveira
author_role author
author2 Ramalho, Lizete Toledo de Oliveira
author2_role author
dc.contributor.author.fl_str_mv Leite, Fábio Renato Manzolli
Ramalho, Lizete Toledo de Oliveira
dc.subject.por.fl_str_mv Bone regeneration
Ricinus communis
Bone substitutes
topic Bone regeneration
Ricinus communis
Bone substitutes
description Innocuous biocompatible materials have been searched to repair or reconstruct bone defects. Their goal is to restore the function of live or dead tissues. This study compared connective tissue and bone reaction when exposed to demineralized bovine bone matrix and a polyurethane resin derived from castor bean (Ricinus communis). Forty-five rats were assigned to 3 groups of 15 animals (control, bovine bone and polyurethane). A cylindrical defect was created on mandible base and filled with bovine bone matrix and the polyurethane. Control group received no treatment. Analyses were performed after 15, 45 and 60 days (5 animals each). Histological analysis revealed connective tissue tolerance to bovine bone with local inflammatory response similar to that of the control group. After 15 days, all groups demonstrated similar outcomes, with mild inflammatory reaction, probably due to the surgical procedure rather than to the material. In the polymer group, after 60 days, scarce multinucleated cells could still be observed. In general, all groups showed good stability and osteogenic connective tissue with blood vessels into the surgical area. The results suggest biocompatibility of both materials, seen by their integration into rat mandible. Moreover, the polyurethane seems to be an alternative in bone reconstruction and it is an inexhaustible source of biomaterial.
publishDate 2008
dc.date.issued.fl_str_mv 2008
dc.date.accessioned.fl_str_mv 2013-12-03T11:48:59Z
dc.date.available.fl_str_mv 2013-12-03T11:48:59Z
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dc.identifier.citation.fl_str_mv LEITE, Fábio Renato Manzolli; RAMALHO, Lizeti Toledo de Oliveira. Bone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation. Journal of Applied Oral Science, Tenesse, v. 16, n.1, p. 122-126, 2008.
dc.identifier.uri.fl_str_mv http://repositorio.ufpel.edu.br/handle/ri/864
dc.identifier.issn.none.fl_str_mv 1678-7757
identifier_str_mv LEITE, Fábio Renato Manzolli; RAMALHO, Lizeti Toledo de Oliveira. Bone regeneration after demineralized bone matrix and castor oil (Ricinus communis) polyurethane implantation. Journal of Applied Oral Science, Tenesse, v. 16, n.1, p. 122-126, 2008.
1678-7757
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dc.rights.driver.fl_str_mv info:eu-repo/semantics/openAccess
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dc.publisher.none.fl_str_mv Universidade de São Paulo
publisher.none.fl_str_mv Universidade de São Paulo
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