4.7 Article

Humic acid attenuation of silver nanoparticle toxicity by ion complexation and the formation of a Ag3+ coating

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 353, 期 -, 页码 173-181

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2018.04.019

关键词

Silver nanoparticles; Humic acid; Cation concentration; Toxicity attenuation; Zebrafish

资金

  1. Brazilian National Council for Scientific and Technological Development (CNPq)
  2. Brazilian Coordination for the Improvement of Higher Education Personnel (CAPES)
  3. Brazilian National Institute of Science and Technology in Nanobiotechnology (INCT in Nanobiotechnology)
  4. Marie Curie Project FP7-PEOPLE-IRSES HIGRAPHEN grant [612704]
  5. Marie Curie Project FP7-PEOPLE-IRSES-BRASINOEU grant [318916]

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The use of silver nanoparticles (AgNPs) result in an inevitable contact with aquatic environments. Here we study the behavior of AgNPs and the developmental toxicity in zebrafish embryos exposed to these nanoparticles (0-10 mg/L) with and without the presence of HA (20 mg/L), using zebrafish facility water (ZFW) and zebrafish growing media (ZGM). The presence of cations and HA gave rise to a decrease in Ag ion release and zeta-potential, an increase in the hydrodynamic diameter and oxidation of the AgNP surface. The results show that the presence of HA and cations in the media, as well as the silver speciation, i.e., the unusual presence of Ag3+, decreases the toxicity of AgNPs (LC50(AgNps): 1.19 mg/L; LC50(AgNps) (+ HA): 3.56 mg/L), as well as silver bioavailability and toxicity in zebrafish embryos. Developmental alterations and the LC50 (1.19 mg/L) of AgNPs in ZFW were more relevant (p <= 0.05) than for AgNPs in ZGM (LC50 (>) 10 mg/L). It was demonstrated that the bioaccumulation and toxicity of AgNPs depends on several factors including AgNPs concentration, nanoparticle aggregation, dissolved silver ions, speciation of silver ions, the amount of salt in the environment, the presence of humic substances and others, and different combinations of all of these factors.

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