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Cytotoxicity of nanomixture: Combined action of silver and plastic nanoparticles on immortalized human lymphocytes.

Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements (GMS) 2022 Score: 35 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Krunoslav Ilić, Lucija Krce, Jorge Rodriguez-Ramos, Felix Rico, Nikolina Kalčec, Ivica Aviani, Petra Turčić, Ivan Pavičić, Ivana Vinković Vrček

Summary

Human lymphocyte cells exposed to a mixture of silver nanoparticles and polystyrene nanoplastics showed greater cytotoxicity than cells exposed to either material alone, indicating synergistic toxicity. The findings are relevant to human health because both types of nanoparticles are increasingly present in the environment and in consumer products.

Polymers
Body Systems

BACKGROUND: Silver nanoparticles (AgNP) are one of the most commercialized types of nanomaterials, with a wide range of applications owing to their antimicrobial activity. They are particularly important in hospitals and other healthcare settings, where they are used to maintain sterility of surfaces, textiles, catheters, medical implants, and more. However, AgNP can not only harm bacteria, but also damage mammalian cells and tissue. While the potential toxicity of AgNP is an understood risk, there is a lack of data on their toxicity in combination with polymeric materials, especially plastic nanoparticles such as polystyrene nanoparticles (PSNP) that can be released from surfaces of polystyrene devices during their medical use. AIM: This study aimed to investigate combined effect of AgNP and nanoplastics on human immune response. METHODS: Cells were treated with a range of PSNP and AgNP concentrations, either applied alone or in combination. Cytotoxicity, induction of apoptosis, generation of oxidative stress, uptake efficiency, intracellular localization and nanomechanical cell properties were selected as exposure biomarkers. RESULTS: Collected experimental data showed that nanomixture induced oxidative stress, apoptosis and mortality of Jurkat cells stronger than its individual components. Cell treatment with AgNP/PSNP mixture also significantly changed cell mechanical properties, evidenced by reduction of cells' Young Modulus. CONCLUSION: AgNP and PSNP showed additive toxic effects on immortalized human lymphocytes, evidenced by increase in cellular oxidative stress, induction of apoptosis, and reduction of cell stiffness. These results have important implications for using AgNP and PSNP in medical contexts, particularly for long-term medical implants.

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