高分子表面改性技术对高岭土纳米管细胞相容性的影响

M. Di Paola, P. Pisani, F. Conversano, E. Sbenaglia, S. Casciaro, S. Leporatti
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引用次数: 1

摘要

高岭土粘土纳米管(HNTs)是由双层铝硅酸盐矿物组成的天然纳米材料,具有中空管状结构。由于其有趣的结构特征,化学活性的内外表面,廉价和丰富的可用性,hnt作为一种新型材料,近年来成为研究的重点,用于各种生物应用,包括药物和基因运载工具,癌细胞分离,骨植入物,超声造影剂,癌症和干细胞分离以及化妆品。因此,评估HNT的生物相容性对于证明其临床用途的适用性具有重要意义。本研究将聚乙二醇(PEG)致密包被HNTs,并在两种不同的人类癌细胞系,即HeLa(宫颈癌)细胞和HepG2(肝癌)细胞上进行MTT测量,以量化聚乙二醇包被HNTs的生物相容性与纳米管剂量和孵育时间的关系。虽然未包被的纳米管表现出明显的浓度和时间依赖性毒性,但peg包被的纳米管在高达0.5 mg/mL的浓度和长达72小时的孵育时间下具有完全的生物相容性,使其成为纳米医学应用的合适候选人。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Highly Improved Cytocompatibility of Halloysite Nanotubes through Polymeric Surface Modification
Halloysite Clay nanotubes (HNTs) are naturally occurring nanomaterials composed of double layered aluminosilicate minerals with a hollow tubular structure. Due to their interesting structural characteristics, chemically active external and internal surfaces, cheap and abundant availability, HNTs have recently become the subject of research attention as a new type of material for various biological applications, including drug and gene delivery vehicles, cancer cells isolation, bone implants, ultrasound contrast agents, cancer and stem cells isolation and cosmetics. Therefore, assessment of HNT biocompatibility has gained importance to demonstrate its suitability for clinical purposes. In this study, HNTs were densely coated with poly(ethylene glycol) (PEG) and MTT measurements were carried out on two different human cancer cell lines, namely HeLa (cervical cancer) cells and HepG2 (hepatocarcinoma) cells, to quantify the biocompatibility of PEG-coated HNTs as a function of nanotube dosage and incubation time. While non-coated nanotubes exhibited significant concentration- and time-dependent toxicity, PEG-coated HNTs resulted fully biocompatible for concentrations up to 0.5 mg/mL and for incubation time up to 72 h, making them suitable candidates for nanomedicine applications.
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