Short term toxicity of nanomaterials in different development stages of amphibians

Detalhes bibliográficos
Autor(a) principal: Costa, Nuno Mouta Faria da
Data de Publicação: 2014
Tipo de documento: Dissertação
Idioma: eng
Título da fonte: Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)
Texto Completo: http://hdl.handle.net/10773/14129
Resumo: The production of engineered nanomaterials is rising and constantly growing. The fast advances in this industry are causing the introduction of nanomaterials (NMs) into the environment, namely into aquatic ecosystems. The specific properties that these new compounds exhibit may promote higher toxicity to biota, comparatively to their bulk counterparts. Size, charge, surface area, aggregation index, among others, may dictate the availability and the degree of toxicity of NMs in aquatic environments, especially when assembled with environmental changing conditions such as pH and temperature. Amphibians are excellent bioindicators to study the risk associated with the release of NM into the aquatic environment, since they inhabit a wide variety of freshwater habitats associated with industrial contamination. The present work intended to study the toxicity of NMs to different life stages of amphibians, concerning the increase of global temperature that is currently taking place. In order to achieve this, two specific goals were determined: i) evaluate the influence of temperature in the toxicity of NMs of hidrophobically modified polyacrylic acid (HM-PAA) to tadpoles of Epidalea calamita and Pelophylax perezi. For this, tadpoles of E. calamita and P. perezi were exposed to a range of six concentrations of HM-PAA plus a control, at 20ºC and 25ºC. Results showed lethal and sublethal toxicity of HM-PAA, but a clear pattern of temperature influence in the toxicity of HM-PAA could not be unveiled; ii) assess the influence of Si-NM size and temperature in the toxicity of this NM to embryos of Pelophylax perezi. To attain this goal, embryos of P. perezi were exposed to a range of six concentrations of three differently sized Si-NMs (SM30-7nm, HS30-12nm, and TM40-22nm) plus a control, at 20ºC and 26ºC. Results obtained show lethal and sublethal toxicity caused by all the Si-NM and an increased toxicity at higher temperatures. Furthermore, it was observed that the NM presenting the lowest primary size exhibited the highest toxicity.
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spelling Short term toxicity of nanomaterials in different development stages of amphibiansEcotoxicologiaNanomateriais - ToxicidadeEcossistemas aquáticos - ContaminaçãoAnfíbios - Efeitos da poluiçãoThe production of engineered nanomaterials is rising and constantly growing. The fast advances in this industry are causing the introduction of nanomaterials (NMs) into the environment, namely into aquatic ecosystems. The specific properties that these new compounds exhibit may promote higher toxicity to biota, comparatively to their bulk counterparts. Size, charge, surface area, aggregation index, among others, may dictate the availability and the degree of toxicity of NMs in aquatic environments, especially when assembled with environmental changing conditions such as pH and temperature. Amphibians are excellent bioindicators to study the risk associated with the release of NM into the aquatic environment, since they inhabit a wide variety of freshwater habitats associated with industrial contamination. The present work intended to study the toxicity of NMs to different life stages of amphibians, concerning the increase of global temperature that is currently taking place. In order to achieve this, two specific goals were determined: i) evaluate the influence of temperature in the toxicity of NMs of hidrophobically modified polyacrylic acid (HM-PAA) to tadpoles of Epidalea calamita and Pelophylax perezi. For this, tadpoles of E. calamita and P. perezi were exposed to a range of six concentrations of HM-PAA plus a control, at 20ºC and 25ºC. Results showed lethal and sublethal toxicity of HM-PAA, but a clear pattern of temperature influence in the toxicity of HM-PAA could not be unveiled; ii) assess the influence of Si-NM size and temperature in the toxicity of this NM to embryos of Pelophylax perezi. To attain this goal, embryos of P. perezi were exposed to a range of six concentrations of three differently sized Si-NMs (SM30-7nm, HS30-12nm, and TM40-22nm) plus a control, at 20ºC and 26ºC. Results obtained show lethal and sublethal toxicity caused by all the Si-NM and an increased toxicity at higher temperatures. Furthermore, it was observed that the NM presenting the lowest primary size exhibited the highest toxicity.A produção de nanomateriais artificiais está em constante crescimento. Os rápidos avanços nesta indústria promovem a introdução de nanomateriais (NMs) no meio ambiente, nomeadamente nos ecossistemas aquáticos. As propriedades específicas que estes compostos apresentam podem promover uma maior toxicidade comparativamente aos seus correspondentes de tamanho não nano. Tamanho, carga, área superficial, índice de agregação, entre outras propriedades, podem ditar o grau de toxicidade dos NMs em ambientes aquáticos, especialmente quando combinados com as constantes mudanças de vários parâmetros ambientais, por exemplo pH e temperatura. Os anfíbios são excelentes bioindicadores para estudar o risco associado à introdução de NMs no meio aquático, uma vez que habitam uma grande variedade de habitats de água doce potencialmente contaminados com descargas industriais. O presente trabalho teve como objetivo estudar a toxicidade de NMs em diferentes estágios de vida de anfíbios, tendo em perspetiva a influência do aumento da temperatura global que atualmente afeta o planeta Terra. A fim de alcançar este objetivo, foram realizados dois estudos que pretenderam: i) avaliar a influência da temperatura na toxicidade de NMs de ácido poliacrílico hidrofobicamente modificado (HM-PAA) para girinos de Epidalea calamita e Pelophylax perezi. Para tal, girinos de E. calamita e P. perezi foram expostos a uma gama de seis concentrações de HM-PAA e a um controlo, a temperaturas de 20ºC e 25ºC. Os resultados mostram toxicidade letal e sub-letal provocada pelo HM-PAA, no entanto, não foi visível um padrão claro de influência da temperatura na toxicidade deste NM; ii) determinar a influência do tamanho de Si-NMs e da temperatura na sua toxicidade para embriões de Pelophylax perezi. Ovos de P. perezi foram expostos a uma gama de seis concentrações de três Si- NPs com diferentes tamanhos (SM30-7nm, HS30-12nm, e TM40- 22nm) e a um controlo, a temperaturas de 20ºC e 26ºC. Os resultados obtidos mostram toxicidade letal e sub-letal causadas pelos 3 NMs e um aumento da toxicidade com temperaturas mais elevadas. Mais ainda o NM com menor tamanho apresentou maior toxicidade.Universidade de Aveiro2015-05-22T16:01:29Z2014-01-01T00:00:00Z2014info:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisapplication/pdfhttp://hdl.handle.net/10773/14129TID:201588242engCosta, Nuno Mouta Faria dainfo:eu-repo/semantics/openAccessreponame:Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos)instname:Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãoinstacron:RCAAP2024-02-22T11:25:47Zoai:ria.ua.pt:10773/14129Portal AgregadorONGhttps://www.rcaap.pt/oai/openaireopendoar:71602024-03-20T02:49:46.796654Repositório Científico de Acesso Aberto de Portugal (Repositórios Cientìficos) - Agência para a Sociedade do Conhecimento (UMIC) - FCT - Sociedade da Informaçãofalse
dc.title.none.fl_str_mv Short term toxicity of nanomaterials in different development stages of amphibians
title Short term toxicity of nanomaterials in different development stages of amphibians
spellingShingle Short term toxicity of nanomaterials in different development stages of amphibians
Costa, Nuno Mouta Faria da
Ecotoxicologia
Nanomateriais - Toxicidade
Ecossistemas aquáticos - Contaminação
Anfíbios - Efeitos da poluição
title_short Short term toxicity of nanomaterials in different development stages of amphibians
title_full Short term toxicity of nanomaterials in different development stages of amphibians
title_fullStr Short term toxicity of nanomaterials in different development stages of amphibians
title_full_unstemmed Short term toxicity of nanomaterials in different development stages of amphibians
title_sort Short term toxicity of nanomaterials in different development stages of amphibians
author Costa, Nuno Mouta Faria da
author_facet Costa, Nuno Mouta Faria da
author_role author
dc.contributor.author.fl_str_mv Costa, Nuno Mouta Faria da
dc.subject.por.fl_str_mv Ecotoxicologia
Nanomateriais - Toxicidade
Ecossistemas aquáticos - Contaminação
Anfíbios - Efeitos da poluição
topic Ecotoxicologia
Nanomateriais - Toxicidade
Ecossistemas aquáticos - Contaminação
Anfíbios - Efeitos da poluição
description The production of engineered nanomaterials is rising and constantly growing. The fast advances in this industry are causing the introduction of nanomaterials (NMs) into the environment, namely into aquatic ecosystems. The specific properties that these new compounds exhibit may promote higher toxicity to biota, comparatively to their bulk counterparts. Size, charge, surface area, aggregation index, among others, may dictate the availability and the degree of toxicity of NMs in aquatic environments, especially when assembled with environmental changing conditions such as pH and temperature. Amphibians are excellent bioindicators to study the risk associated with the release of NM into the aquatic environment, since they inhabit a wide variety of freshwater habitats associated with industrial contamination. The present work intended to study the toxicity of NMs to different life stages of amphibians, concerning the increase of global temperature that is currently taking place. In order to achieve this, two specific goals were determined: i) evaluate the influence of temperature in the toxicity of NMs of hidrophobically modified polyacrylic acid (HM-PAA) to tadpoles of Epidalea calamita and Pelophylax perezi. For this, tadpoles of E. calamita and P. perezi were exposed to a range of six concentrations of HM-PAA plus a control, at 20ºC and 25ºC. Results showed lethal and sublethal toxicity of HM-PAA, but a clear pattern of temperature influence in the toxicity of HM-PAA could not be unveiled; ii) assess the influence of Si-NM size and temperature in the toxicity of this NM to embryos of Pelophylax perezi. To attain this goal, embryos of P. perezi were exposed to a range of six concentrations of three differently sized Si-NMs (SM30-7nm, HS30-12nm, and TM40-22nm) plus a control, at 20ºC and 26ºC. Results obtained show lethal and sublethal toxicity caused by all the Si-NM and an increased toxicity at higher temperatures. Furthermore, it was observed that the NM presenting the lowest primary size exhibited the highest toxicity.
publishDate 2014
dc.date.none.fl_str_mv 2014-01-01T00:00:00Z
2014
2015-05-22T16:01:29Z
dc.type.status.fl_str_mv info:eu-repo/semantics/publishedVersion
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TID:201588242
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dc.publisher.none.fl_str_mv Universidade de Aveiro
publisher.none.fl_str_mv Universidade de Aveiro
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