Argovit™ Silver Nanoparticles Mitigate Sodium Arsenite-Induced Cytogenotoxicity Effects in Cultured Human Lymphocytes
María del Carmen Jauregui Romo, Balam Ruiz Ruiz, Francisco Casilas-Figueroa, Nayeli Guadalupe Girón Vázquez, Roberto Luna Vázquez Gómez, Olivia Torres-Bugarín, Idalia Yazmín Castañeda Yslas, Alexey Pestryakov, Nina Bogdanchikova, María Evarista Arellano García

TL;DR
This study shows that Argovit™ silver nanoparticles can reduce the harmful effects of arsenic exposure in human lymphocytes.
Contribution
The novel finding is that Argovit™ silver nanoparticles exhibit antigenotoxic and cytoprotective effects against sodium arsenite.
Findings
Post-treatment with Argovit™ significantly reduced arsenite-induced cytotoxic and genotoxic effects.
Statistical analysis confirmed the cytoprotective and antigenotoxic properties of Argovit™.
Exposure to sodium arsenite increased biomarkers of cytotoxicity and genotoxicity.
Abstract
Exposure to arsenic, a known environmental and occupational genotoxicant, poses significant health risks. Identifying agents capable of mitigating its effects is crucial for public health. This study evaluates the protective potential of Argovit™ silver nanoparticles (AgNPs) against cytotoxic and genotoxic damage induced by sodium arsenite in ex vivo cultured human lymphocytes obtained from the whole blood of healthy donors. Lymphocytes were exposed to sodium arsenite (3.7 × 10−3 µg/mL) and Argovit™ AgNPs (3.6 × 10−3 µg/mL). The cytokinesis-block micronucleus (CBMN) assay was performed using a modified 144 h protocol to assess delayed effects across two cell cycles. Four groups were analyzed: untreated control, sodium arsenite only, AgNPs only, and sodium arsenite followed by AgNPs. Arsenite exposure increased cytotoxic and genotoxic biomarkers. In contrast, post-treatment with AgNPs…
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Taxonomy
TopicsHeavy Metal Exposure and Toxicity · Nanoparticles: synthesis and applications · Arsenic contamination and mitigation
