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谷胱甘肽响应型纳米载体作为一种有前途的靶向细胞内药物和基因递送平台。

Glutathione-responsive nano-vehicles as a promising platform for targeted intracellular drug and gene delivery.

机构信息

Biomedical Polymers Laboratory, and Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, PR China.

出版信息

J Control Release. 2011 May 30;152(1):2-12. doi: 10.1016/j.jconrel.2011.01.030. Epub 2011 Feb 2.

Abstract

The past couple of years have witnessed a tremendous progress in the development of glutathione-responsive nano-vehicles for targeted intracellular drug and gene delivery, as driven by the facts that (i) many therapeutics (e.g. anti-cancer drugs, photosensitizers, and anti-oxidants) and biotherapeutics (e.g. peptide and protein drugs, and siRNA) exert therapeutical effects only inside cells like the cytosol and cell nucleus, and (ii) several intracellular compartments such as cytosol, mitochondria, and cell nucleus contain a high concentration of glutathione (GSH) tripeptides (about 2-10 mM), which is 100 to 1000 times higher than that in the extracellular fluids and circulation (about 2-20 μM). Glutathione has been recognized as an ideal and ubiquitous internal stimulus for rapid destabilization of nano-carriers inside cells to accomplish efficient intracellular drug release. In this paper, we will review recent results on GSH-responsive nano-vehicles in particular micelles, nanoparticles, capsules, polymersomes, nanogels, dendritic and macromolecular drug conjugates, and nano-sized nucleic acid complexes for controlled delivery of anti-cancer drugs (e.g. doxorubicin and paclitaxel), photosensitizers, anti-oxidants, peptides, protein drugs, and nucleic acids (e.g. DNA, siRNA, and antisense oligodeoxynucleotide). The unique disulfide chemistry has enabled novel and versatile designs of multifunctional delivery systems addressing both intracellular and extracellular barriers. We are convinced that GSH-responsive nano-carrier systems have enormous potential in targeted cancer therapy.

摘要

在过去的几年中,由于以下事实,谷胱甘肽响应型纳米载体在靶向细胞内药物和基因递送上取得了巨大进展:(i)许多治疗剂(例如抗癌药物、光敏剂和抗氧化剂)和生物治疗剂(例如肽和蛋白质药物以及 siRNA)仅在细胞内(如细胞质和细胞核)发挥治疗作用,(ii)细胞质、线粒体和细胞核等几个细胞内隔室含有高浓度的谷胱甘肽(GSH)三肽(约 2-10mM),比细胞外液和循环中的浓度高 100 至 1000 倍(约 2-20μM)。谷胱甘肽已被认为是一种理想且普遍的内部刺激物,可迅速破坏细胞内的纳米载体,以实现有效的细胞内药物释放。本文将综述近年来关于谷胱甘肽响应型纳米载体(特别是胶束、纳米粒子、胶囊、聚合物囊泡、纳米凝胶、树枝状和高分子药物偶联物以及纳米级核酸复合物)的研究进展,用于控制抗癌药物(如阿霉素和紫杉醇)、光敏剂、抗氧化剂、肽、蛋白质药物和核酸(如 DNA、siRNA 和反义寡脱氧核苷酸)的递送。独特的二硫键化学使得多功能递药系统的新颖且多功能设计成为可能,可解决细胞内和细胞外的屏障问题。我们相信,谷胱甘肽响应型纳米载体系统在靶向癌症治疗方面具有巨大的潜力。

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