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纳米材料与细胞的相互作用及其医学应用。

Interaction of nanomaterials with cells and their medical applications.

作者信息

Wahid F, Khan T, Shehzad A, Ui-Islam M, Kim Y Y

出版信息

J Nanosci Nanotechnol. 2014 Jan;14(1):744-54. doi: 10.1166/jnn.2014.9016.

Abstract

Many studies have been conducted on the development of nanomaterials for medical applications. The interaction of nanomaterials with human cells is the most important criterion for biomedical application and has been studied in detail. Three common approaches have been suggested for nanomaterial mechanisms for cellular interaction and internalization: direct diffusion or disruption to the plasma membrane, endocytosis, and entry through ion channels and transporter proteins. Several important factors affect the interaction and cellular uptake of nanomaterials: size, shape, rigidity, surface properties, cell type, and endocytotic pathways. In this review, we summarize the mechanisms of cell-nanomaterial interactions, and the various factors that influence these interactions. The importance of proper cell-nanomaterial interaction for medical research applications is also highlighted. The results summarized in this review may add new dimensions to our understanding of cell-nanomaterial interactions and their applications in therapeutic and diagnostic techniques for biomedical, academic, and industrial research.

摘要

针对用于医学应用的纳米材料的开发,已经开展了许多研究。纳米材料与人体细胞的相互作用是生物医学应用的最重要标准,并且已经进行了详细研究。关于纳米材料与细胞相互作用及内化的机制,已提出三种常见方法:直接扩散或对质膜的破坏、内吞作用以及通过离子通道和转运蛋白进入。有几个重要因素会影响纳米材料的相互作用和细胞摄取:尺寸、形状、刚性、表面性质、细胞类型和内吞途径。在本综述中,我们总结了细胞与纳米材料相互作用的机制以及影响这些相互作用的各种因素。还强调了适当的细胞与纳米材料相互作用对医学研究应用的重要性。本综述中总结的结果可能会为我们对细胞与纳米材料相互作用及其在生物医学、学术和工业研究的治疗与诊断技术中的应用的理解增添新的维度。

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