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含氟紫杉烷类抗癌药物及其肿瘤靶向给药

Fluorine-Containing Taxoid Anticancer Agents and Their Tumor-Targeted Drug Delivery.

作者信息

Seitz Joshua, Vineberg Jacob G, Zuniga Edison S, Ojima Iwao

机构信息

Department of Chemistry, State University of New York at Stony Brook, Stony Brook, NY, 11794-3400.

出版信息

J Fluor Chem. 2013 Aug 1;152:157-165. doi: 10.1016/j.jfluchem.2013.05.013.

Abstract

A long-standing problem of conventional chemotherapy is the lack of tumor-specific treatments. Traditional chemotherapy relies on the premise that rapidly proliferating cancer cells are more likely to be killed by a cytotoxic agent. In reality, however, cytotoxic agents have very little or no specificity, which leads to systemic toxicity, causing undesirable severe side effects. Consequently, various "molecularly targeted cancer therapies" have been developed for use in specific cancers, including tumor-targeting drug delivery systems. In general, such a drug delivery system consists of a tumor recognition moiety and a cytotoxic "warhead" connected through a "smart" linker to form a conjugate. When a multi-functionalized nanomaterial is used as the vehicle, a "Trojan Horse" approach can be used for mass delivery of cytotoxic "warheads" to maximize the efficacy. Exploitation of the special properties of fluorine has proven successful in the development of new and effective biochemical tools as well as therapeutic agents. Fluorinated congeners can also serve as excellent probes for the investigation of biochemical mechanisms. F-NMR can provide unique and powerful tools for mechanistic investigations in chemical biology. This account presents our recent progress, in perspective, on the molecular approaches to the design and development of novel tumor-targeted drug delivery systems for new generation chemotherapy by exploiting the unique nature of fluorine.

摘要

传统化疗长期存在的一个问题是缺乏肿瘤特异性治疗方法。传统化疗基于这样一个前提,即快速增殖的癌细胞更有可能被细胞毒性药物杀死。然而,实际上细胞毒性药物几乎没有特异性,这会导致全身毒性,引发不良的严重副作用。因此,人们开发了各种“分子靶向癌症疗法”用于特定癌症,包括肿瘤靶向给药系统。一般来说,这种给药系统由一个肿瘤识别部分和一个细胞毒性“弹头”组成,它们通过一个“智能”连接子相连形成一个共轭物。当使用多功能纳米材料作为载体时,可以采用“特洛伊木马”方法大量递送细胞毒性“弹头”,以最大化疗效。事实证明,利用氟的特殊性质在开发新型有效生化工具以及治疗药物方面是成功的。含氟同系物也可作为研究生化机制的优秀探针。氟核磁共振(F-NMR)可为化学生物学的机制研究提供独特而强大的工具。本综述从利用氟的独特性质出发,介绍了我们在设计和开发用于新一代化疗的新型肿瘤靶向给药系统的分子方法方面的最新进展。

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