包膜细胞聚焦于抗癌药物的代谢激活。

Brian Salmons, Eva M Brandtner, Kay Hettrich, Wolfgang Wagenknecht, Bert Volkert, Steffen Fischer, John A Dangerfield, Walter H Gunzburg
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引用次数: 0

摘要

癌症基因治疗的最初策略之一是使用自杀基因/前药组合,最初使用病毒载体将其传递到肿瘤细胞中。这种方法的一个主要限制是自杀基因传递的低效率。另一种策略是将自杀基因与肿瘤在物理上并置,包括植入被封装的转基因细胞。细胞包封技术最初是为治疗获得性和遗传性疾病(如糖尿病)而开发的。在将该技术应用于肿瘤治疗时,将基因修饰过表达自杀基因的细胞包裹并植入实体瘤附近;这个过程之后是系统的前药给药。本文综述了临床前和临床试验中使用的各种细胞类型、自杀基因和前药,以及从这些研究中获得的数据。还讨论了第二代方法生产的未来改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Encapsulated cells to focus the metabolic activation of anticancer drugs.

One of the first strategies for cancer gene therapy was the use of suicide gene/prodrug combinations, originally delivered to tumor cells using viral vectors. A major limitation of this approach was the inefficiency of suicide gene delivery. An alternative strategy, in which the suicide genes are physically juxtaposed to the tumor, involves the implantation of encapsulated, genetically modified cells. Cell encapsulation technologies were originally developed for the treatment of acquired and genetic diseases, such as diabetes. In the application of this technology for the treatment of tumors, cells that are genetically modified to overexpress suicide genes are encapsulated and implanted near solid tumors; this process is then followed by systemic prodrug administration. This review discusses the various cells types, suicide genes and prodrugs that have been used in preclinical and clinical trials, as well as the data that have been obtained from these studies. Future improvements for the production of second-generation approaches are also discussed.

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Current Opinion in Molecular Therapeutics
Current Opinion in Molecular Therapeutics 医学-生物工程与应用微生物
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