Department of Cell Biology, School of Basic Medical Sciences, Nanjing Medical University, 210029, China.
J Biomed Nanotechnol. 2013 May;9(5):741-50. doi: 10.1166/jbn.2013.1583.
Nanomaterials can enhance the delivery and treatment efficiency of anti-cancer drugs, and the mechanisms of the tumor-reducing activity of nanomaterials with cancer drug have been investigated. The task for drug to reach pathological areas has facilitated rapid advances in nanomedicine. Herein, we summarize promising findings with respect to cancer therapeutics based on nano-drug delivery vectors. Relatively high toxicity of uncoated nanoparticles restricts the use of these materials in humans. In order to reduce toxicity, many approaches have focused on the encapsulation of nanoparticles with biocompatible materials. Efficient delivery systems have been developed that utilized nanoparticles loaded with high dose of cancer drug in the presence of bilayer molecules. Well-established nanotechnologies have been designed for drug delivery with specific bonding. Surface-modified nanoparticles as vehicles for drug delivery system that contains multiple nano-components, each specially designed to achieve aimed task for the emerging application delivery of therapeutics. Drug-coated polymer nanoparticles could efficiently increase the intracellular accumulation of anti-cancer drugs. This review also introduces the nanomaterials with drug on the induction of apoptosis in cancer cells in vitro and in vivo. Direct interactions between the particles and cellular molecules to cause adverse biological responses are also discussed.
纳米材料可以提高抗癌药物的递送和治疗效率,并且已经研究了纳米材料与癌症药物协同作用降低肿瘤活性的机制。药物到达病理区域的任务促进了纳米医学的快速发展。本文总结了基于纳米药物递送载体的癌症治疗的有前途的发现。未经包覆的纳米粒子的相对高毒性限制了这些材料在人类中的应用。为了降低毒性,许多方法都集中在使用生物相容性材料包覆纳米粒子上。已经开发出了高效的递送系统,这些系统利用双层分子存在时负载高剂量癌症药物的纳米粒子。已经设计了成熟的纳米技术用于具有特定结合的药物递送。表面改性的纳米粒子作为药物递送系统的载体,其中包含多个纳米组件,每个组件都专门设计用于实现新兴应用中治疗剂的递药目标。载药聚合物纳米粒子可以有效地增加抗癌药物在细胞内的积累。本文还介绍了纳米材料在体外和体内诱导癌细胞凋亡的作用。还讨论了颗粒与细胞分子之间的直接相互作用,导致不良的生物学反应。