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Effect of Surface Functionalization on the Cellular Uptake and Toxicity of Nanozeolite A

机译:表面功能化对纳米沸石A细胞摄取和毒性的影响

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Extensive use of zeolite nanoparticles in many areas, including medicine, has led to the concern about an impact and possible risk of their use for human health and the environment. In our studies, we investigated an uptake, retention, and cytotoxicity of nanozeolite A (BaA) functionalized with aminopropyl or poly(ethylene glycol) (PEG) of different chain lengths using human cervical carcinoma cell line. For internalization studies, nanozeolite was labeled with _(133)Ba radionuclide. The results show that in the case of PEG modification, toxicity and uptake depend on the PEG chain length. The highest toxicity has been observed for nanozeolites coated with short-length chain (Ba-silane-PEGm(MW350). Also, amine-modified nanozeolites exhibited high toxicity, while nanozeolites coated with long PEG molecules, BaA-silane-PEGm(MW1000), and BaA-silane-PEGm(MW2000), as well as unmodified nanozeolite, seem to be nontoxic. In conclusion, this study shows that uptake, retention, and toxicity of nanozeolites coated with various length PEG molecules groups depend on the molecular weight of PEG.
机译:沸石纳米颗粒在包括医学在内的许多领域中的广泛使用,引起了人们对其使用对人类健康和环境的影响和潜在风险的关注。在我们的研究中,我们使用人宫颈癌细胞系研究了不同链长的氨基丙基或聚乙二醇(PEG)官能化的纳米沸石A(BaA)的吸收,保留和细胞毒性。为了进行内部化研究,纳米沸石用_(133)Ba放射性核素标记。结果表明,在PEG修饰的情况下,毒性和摄取取决于PEG链长。包覆短链的纳米沸石(Ba-硅烷-PEGm(MW350))具有最高的毒性。此外,胺改性的纳米沸石具有高毒性,而包覆有长PEG分子的纳米沸石,BaA-硅烷-PEGm(MW1000)总之,这项研究表明,涂覆有各种长度PEG分子基团的纳米沸石的吸收,保留和毒性取决于其分子量,而BaA-硅烷-PEGm(MW2000)和未改性的纳米沸石似乎是无毒的。聚乙二醇。

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