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Updated: Jul 17, 2026

Salinity-dependent Toxicity Assay of Silver Nanocolloids Using Medaka Eggs
Published on: March 18, 2016
Comparative toxicity of green and chemically synthesized silver nanoparticles in developing zebrafish: A step toward
Rafaella Silva Brito1, Lívia Pitombeira de Figueirêdo2, Paula Sampaio Araújo3
1Laboratory of Environmental Biotechnology and Ecotoxicology, Institute of Tropical Pathology and Public Health, Federal University of Goiás, Goiânia, Goiás, Brazil; Experimental Danio rerio Facility (BEDAR), Federal University of São Paulo, Diadema, Brazil.
Abstract:
Green silver nanoparticles (G-AgNPs) are emerging nanomaterials for biomedical and environmental applications; however, there are some concerns regarding their potential ecotoxicological risks to aquatic organisms. Therefore, the current study aimed to compare the potential ecotoxicity of G-AgNPs synthesized from the aqueous extracts of Croton urucurana leaves and chemically synthesized AgNPs (PVP-AgNPs) using zebrafish (Danio rerio) as a model system. G-AgNPs and PVP-AgNPs were synthesized and characterized by multiple techniques. Zebrafish embryos and larvae were exposed to G-AgNPs, aqueous leaf extract, PVP-AgNPs, and ionic silver for 144 h. The results showed that G-AgNPs altered survival and early development of zebrafish from 0.5 mg L-1 (LC50,144 h = 0.75 mg L-1), reduced spontaneous contractions and heart rate, indicating their potential embryotoxic, neurotoxic, and cardiotoxic effects to fish. Also, G-AgNPs induced reactive oxygen species (ROS) production and cell death. Isolated extract caused delayed development, decreased spontaneous contractions and heart rate, cell death, and delayed hatching. Overall, G-AgNPs presented higher ecotoxicity in comparison with PVP-AgNPs (LC50,144 h > 10 mg L-1), indicating the potential hazardous effects of G-AgNPs to aquatic organisms.

