Influential Factors and Synergies for Radiation-Gene Therapy on Cancer

Mei Lin, Junxing Huang, Yujuan Shi, Yanhong Xiao, Ting Guo
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引用次数: 3

Abstract

Radiation-gene therapy, a dual anticancer strategy of radiation therapy and gene therapy through connecting radiation-inducible regulatory sequence to therapeutic gene, leading to the gene being induced to express by radiation while radiotherapy is performed and finally resulting in a double synergistic antitumor effect of radiation and gene, has become one of hotspots in the field of cancer treatment in recent years. But under routine dose of radiation, especially in the hypoxia environment of solid tumor, it is difficult for this therapy to achieve desired effect because of low activity of radiation-inducible regulatory elements, low level and transient expression of target gene induced by radiation, inferior target specificity and poor biosecurity, and so on. Based on the problems existing in radiation-gene therapy, many efforts have been devoted to the curative effect improvement of radiation-gene therapy by various means to increase radiation sensitivity or enhance target gene expression and the expression's controllability. Among these synergistic techniques, gene circuit, hypoxic sensitization, and optimization of radiation-induced sequence exhibit a good application potential. This review provides the main influential factors to radiation-gene therapy on cancer and the synergistic techniques to improve the anticancer effect of radiation-gene therapy.
肿瘤放射基因治疗的影响因素及协同作用
放射-基因治疗是一种结合放射治疗和基因治疗的双重抗癌策略,通过将放射诱导的调控序列连接到治疗基因上,在进行放射治疗的同时诱导基因表达,最终达到放射和基因的双重协同抗肿瘤作用,已成为近年来癌症治疗领域的热点之一。但在常规放射剂量下,特别是在实体瘤缺氧环境下,由于辐射诱导调控元件活性低、辐射诱导靶基因表达水平低且短暂、靶特异性较差、生物安全性差等原因,该疗法难以达到预期效果。针对放射基因治疗中存在的问题,人们通过各种手段提高放射基因治疗的疗效,以提高放射敏感性或增强靶基因的表达及其表达的可控性。在这些协同技术中,基因回路、低氧敏化和辐射诱导序列优化具有较好的应用潜力。本文综述了影响肿瘤放射基因治疗的主要因素以及提高放射基因治疗抗癌效果的协同技术。
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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