EPR effect based nanocarriers targeting for treatment of cancer

K. R. Gajbhiye, J. Gajbhiye
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引用次数: 5

Abstract

The enhanced permeability and retention (EPR) effect is a unique phenomenon of solid tumors related to their anatomical and pathophysiological differences from normal tissues. In solid tumors, angiogenesis leads to high vascular density. Large gaps exist between endothelial cells in tumor blood vessels, which lead to selective extravasations and retention of macromolecular drugs. This EPR effect served as a basis for development of macromolecular anticancer therapy. There are various factors, which lead to a significantly increased EPR effect and enhanced antitumor drug effects as well. This review discusses the unique anatomy of tumor vessels, molecular mechanisms of factors related to the EPR effect and the role of the EPR effect in the intratumoral delivery of protein and peptide drugs, macromolecular drugs and drug-loaded long-circulating nanocarriers.
基于EPR效应的纳米载体靶向治疗癌症
增强渗透性和滞留性(EPR)效应是实体瘤的独特现象,与实体瘤与正常组织的解剖和病理生理差异有关。在实体瘤中,血管生成导致高血管密度。肿瘤血管内皮细胞之间存在较大间隙,导致大分子药物选择性外渗和滞留。这种EPR效应为大分子抗癌治疗的发展奠定了基础。多种因素导致EPR效应显著增强,抗肿瘤药物作用增强。本文综述了肿瘤血管的独特解剖结构、EPR效应相关因素的分子机制以及EPR效应在肿瘤内传递蛋白质和多肽药物、大分子药物和载药长循环纳米载体中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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