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Toxic, genotoxic, mutagenic, and bioaccumulative effects of metal mixture from settleable particulate matter on American bullfrog tadpoles (Lithobates catesbeianus)

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Autor(es):
da Costa, Regiane Luiza ; Souza, Iara Costa ; Morozesk, Mariana ; de Carvalho, Luana Beserra ; Carvalho, Cleoni dos Santos ; Monferran, Magdalena Victoria ; Wunderlin, Daniel Alberto ; Fernandes, Marisa Narciso ; Monteiro, Diana Amaral
Número total de Autores: 9
Tipo de documento: Artigo Científico
Fonte: Environmental Pollution; v. 340, p. 12-pg., 2023-11-09.
Resumo

Amphibians are more susceptible to environmental stressors than other vertebrates due to their semipermeable skin and physiological adaptations to living in very specific microhabitats. Therefore, the aim of the present study was to investigate the effects of a metal mixture from settleable particulate matter (SePM) released from metallurgical industries on Lithobates catesbeianus tadpoles. Endpoints analyzed included metal bioconcentration, morphological (biometrical indices), hematological parameters (hemoglobin and blood cell count), and erythrocyte DNA damage (genotoxicity and mutagenicity). American bullfrog tadpoles (Gosner's stage 25) were kept under control condition (no contaminant addition) or exposed to a sub-lethal and environmentally relevant concentration (1 g.L-1) of SePM for 96 h. Tadpoles exposed to SePM exhibited elevated whole blood levels of Fe56, AL, Sn, Pb, Zn, Cr, Cu, Ti, Rb, V, Ce, La, Ag, As. SePM-exposed tadpoles showed a significant decrease in condition factor (12%) and increases in hepatosomatic index (25%), hemoglobin concentration (17%), and total leukocytes (82%), thrombocytes (90%), and monocytes (78%) abundance. In addition, exposed tadpoles showed higher MN and ENAs (340 and 140%, respectively) frequencies, and erythrocyte DNA damage with approximately 1.2-to 1.8-fold increases in comet parameters. Taken together, these results suggest that the multimetal mixture found in SePM is potentially genotoxic and mutagenic to L. catesbeianus tadpoles, induces stress associated with hematological changes, and negatively affects growth. Although such contamination occurs at sublethal levels, regulatory standards are needed to control the emission of SePM and protect amphibian populations. (AU)

Processo FAPESP: 19/08491-0 - Material particulado atmosférico e contaminação ambiental. Avaliação do impacto na biota aquática em uma abordagem ecofisiotoxicológica integrada
Beneficiário:Marisa Narciso Fernandes
Modalidade de apoio: Auxílio à Pesquisa - Temático