Toxicity of plant-based silver nanoparticles to vectors and intermediate hosts: historical review and trends
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Green nanoparticles (GNPs), mainly green silver nanoparticles (Ag NPs), have been recommended as sustainable and eco-friendly technologies to control vectors and intermediate hosts. The aim of the current study is to carry out a historical and systematic literature review about the use of green plant-based Ag NPs (GP-Ag NPs) to control medically important mosquito, tick and gastropods. Data about the number of studies published per year, geographical distribution of studies (mailing address of the corresponding author), synthesis type (plant species, plant structure and extract types), physicochemical properties of GP-Ag NPs, experimental designs, developmental stages and the toxic effects on mosquitoes, ticks and gastropods were summarized and discussed. Revised data showed that GP-Ag NPs synthesis and toxicity in mosquitoes, ticks and snails depend on plant species, plant part, extract types, exposure condition and on the analyzed species. GP-Ag NPs induced mortality, tissue damage, biochemical and behavioral changes in mosquitoes and reduced their fecundity, oviposition, egg hatching and longevity. Ticks exposed to GP-Ag NPs presented increased mortality and reduced oviposition, while on snails, studies demonstrated mortality, oxidative stress, and DNA damage. Immune responses were also observed in snails after their exposure to GP-Ag NPs. GP-Ag NPs reduced the reproduction and population of several vectors and intermediate hosts. This finding confirms their potential to be used in gastropod control programs. Future studies about current gaps in knowledge are recommended.
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Acaricide, Green nanoparticle, Insecticide, Molluscicide, Nanotoxicity, Parasite control
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ARAUJO, Paula Sampaio et al. Toxicity of plant-based silver nanoparticles to vectors and intermediate hosts: historical review and trends. Science of the Total Environment, Amsterdam, v. 834, e155299, 2022. DOI: 10.1016/j.scitotenv.2022.155299. Disponível em: https://www.sciencedirect.com/science/article/pii/S0048969722023920?via%3Dihub. Acesso em: 31 jul. 2025.