聚乙二醇化多壁碳纳米管的细胞穿透效率与细胞类型有关

Jinping Cheng, Y. Lam, Ya‐Ping Sun, S. Cheng
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引用次数: 0

摘要

碳纳米管(Carbon nanotubes, CNTs)作为生物医学领域中最有前途的纳米材料之一,受到了广泛的研究。聚乙二醇二胺(PEG)功能化碳纳米管是公认的具有良好溶解度和生物相容性的方法。本研究制备了PEG共轭(PEGylated)多壁碳纳米管(MWCNTs),并用荧光团FITC标记。使用荧光团共轭聚乙二醇化的MWCNTs,我们监测了它们在转化癌细胞和正常细胞中的积累情况。在共聚焦显微镜和透射电镜下研究聚乙二醇化MWCNTs在细胞内的积累。在相同的浓度和暴露时间下,聚乙二醇化的MWCNTs比三种原代人成纤维细胞系更有效地进入所有三种测试的癌细胞系。在单独细胞培养、单独暴露条件和共培养、共暴露条件下观察到不同的细胞穿透效率。本研究强调,聚乙二醇化MWCNTs的细胞穿透效率取决于细胞类型,可能是由于不同细胞类型的代谢率不同。此外,聚乙二醇化的MWCNTs在细胞内的积累不会损害膜的完整性,处理后的细胞保持正常形态,表明聚乙二醇化的MWCNTs具有良好的生物相容性。该研究表明,聚乙二醇化的MWCNTs可作为潜在的药物载体开发,其固有的对肿瘤细胞的偏好高于正常细胞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cell-penetration efficiency of PEGylated multi-walled carbon nanotubes is dependent on cell types
Carbon nanotubes (CNTs) have been widely investigated as one of the most promising nanomaterials in biomedical applications. Functionalization of CNTs with poly(ethylene glycol) diamine (PEG) is a recognized methodology with good solubility and biocompatibility. In this study, PEG conjugated (PEGylated) multi-walled CNTs (MWCNTs) were prepared and labeled with fluorophore FITC. Using fluorophore-conjugated PEGylated MWCNTs, we monitored their accumulation in transformed cancer cells and in normal cells. The intracellular accumulation of PEGylated MWCNTs was studied under confocal microscope and transmission electron microscope. At the same concentration and exposure time, PEGylated MWCNTs entered all three of the cancer cell lines tested much more efficiently than the three primary human fibroblast lines. This different cell-penetration efficiency was observed both in separate cell culture separate exposure conditions and in co-culture and co-exposure conditions. This study highlights that the cell-penetration efficiency of PEGylated MWCNTs is dependent on cell types, and possibly due to different metabolic rates in different cell types. Furthermore, the intracellular accumulation of PEGylated MWCNTs did not impair membrane integrity, and the treated cells remained normal morphology, indicating good biocompatibility of PEGylated MWCNTs. This study suggests that PEGylated MWCNTs can be developed as potential drug carrier with its intrinsic higher preference to tumor cells than normal cells.
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