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用于肿瘤特异性药物递送的梭状芽孢杆菌孢子。

Clostridium spores for tumor-specific drug delivery.

作者信息

Nuyts S, Van Mellaert L, Theys J, Landuyt W, Lambin P, Anné J

机构信息

Laboratory of Bacteriology, Rega Institute, Katholieke Universiteit Leuven, 3000 Leuven, Belgium.

出版信息

Anticancer Drugs. 2002 Feb;13(2):115-25. doi: 10.1097/00001813-200202000-00002.

Abstract

Insufficient blood supply of rapidly growing tumors leads to the presence of hypoxia, a well-known feature in solid tumors. Hypoxia is known to decrease the efficiency of currently used anti-cancer modalities like surgery, chemotherapy and radiotherapy. Therefore, hypoxia seems to be a major limitation in current anti-cancer therapy. The use of non-pathogenic clostridia to deliver toxic agents to the tumor cells takes advantage of this unique physiology. These strictly anaerobic, Gram-positive, spore-forming bacteria give, after systemic administration, a selective colonization of hypoxic/necrotic areas within the tumor. Moreover, they can be genetically modified to secrete therapeutic proteins like cytosine deaminase or tumor necrosis factor-alpha. The specificity of this protein delivery system can be further increased when expression is controlled by the use of a radio-inducible promoter, leading to increased spatial and temporal regulation of protein expression. This approach of bacterial vector systems to target protein expression to the tumor can be considered very safe since bacteria can be eliminated at any moment by the addition of proper antibiotics. The Clostridium-based delivery system thus presents an alternative therapeutic modality to deliver anti-tumor agents specifically to the tumor site. This high selectivity offers a major advantage in comparison with the classical gene therapy systems.

摘要

快速生长的肿瘤血液供应不足会导致缺氧,这是实体瘤的一个众所周知的特征。已知缺氧会降低目前使用的抗癌方法如手术、化疗和放疗的效率。因此,缺氧似乎是当前抗癌治疗的一个主要限制。利用非致病性梭菌向肿瘤细胞递送毒性剂就是利用了这种独特的生理学特性。这些严格厌氧、革兰氏阳性、产芽孢的细菌在全身给药后,会选择性地定殖于肿瘤内的缺氧/坏死区域。此外,它们可以通过基因改造来分泌治疗性蛋白质,如胞嘧啶脱氨酶或肿瘤坏死因子-α。当通过使用放射性诱导启动子来控制表达时,这种蛋白质递送系统的特异性可以进一步提高,从而增强蛋白质表达的空间和时间调控。这种将细菌载体系统用于将蛋白质表达靶向肿瘤的方法可以被认为是非常安全的,因为通过添加适当的抗生素可以随时消除细菌。基于梭菌的递送系统因此提供了一种将抗肿瘤剂特异性递送至肿瘤部位的替代治疗方式。与经典的基因治疗系统相比,这种高选择性具有一个主要优势。

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