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吩噻嗪类及其结构相关化合物作为癌症多药耐药性的调节剂

Phenothiazines and structurally related compounds as modulators of cancer multidrug resistance.

作者信息

Tsakovska I, Pajeva I

机构信息

Centre of Biomedical Engineering, Bulgarian Academy of Sciences, Acad. G. Bonchev Str., Bl. 105, 1113 Sofia, Bulgaria.

出版信息

Curr Drug Targets. 2006 Sep;7(9):1123-34. doi: 10.2174/138945006778226660.

Abstract

Phenothiazines and structurally related compounds alongside their other biological activities are able to modulate multidrug resistance (MDR) in tumor cells. The extensive investigations on their MDR modulation effects consist part of the efforts to overcome MDR - the major obstacle in cancer chemotherapy. In this article we try to systematize the results collected in the last two decades in two main aspects. The first one comprises the mechanism of modulation by phenothiazine-type MDR modulators. Two main possible mechanisms of MDR reversal are reviewed: (i) direct interaction with Pgp; (ii) interactions with membrane phospholipids. The second aspect relates to the structural properties of phenothiazines and related compounds responsible for their MDR reversing effect. The structural alerts and physicochemical properties influencing anti-MDR activity are considered as identified by structure--activity (SAR) or quantitative structure--activity relationship (QSAR) studies. Results discussed in the article point to MDR modulation by phenothiazines and related compounds as a complex process in which more than one mechanism are certainly involved. Further investigations in this direction should contribute to elucidation of the possible mechanisms of MDR modulation by these compounds. On the basis of the studies discussed the potential use of phenothiazine-type MDR modulators as a model system in the further investigations of the MDR phenomenon is outlined.

摘要

吩噻嗪及其结构相关化合物除了具有其他生物活性外,还能够调节肿瘤细胞中的多药耐药性(MDR)。对其MDR调节作用的广泛研究是克服MDR(癌症化疗中的主要障碍)所做努力的一部分。在本文中,我们试图从两个主要方面对过去二十年收集的结果进行系统化整理。第一个方面包括吩噻嗪型MDR调节剂的调节机制。本文综述了两种主要的MDR逆转可能机制:(i)与Pgp直接相互作用;(ii)与膜磷脂相互作用。第二个方面涉及吩噻嗪及其相关化合物产生MDR逆转作用的结构特性。通过结构-活性(SAR)或定量结构-活性关系(QSAR)研究确定了影响抗MDR活性的结构警示和物理化学性质。本文讨论的结果表明,吩噻嗪及其相关化合物对MDR的调节是一个复杂的过程,其中肯定涉及多种机制。在这个方向上的进一步研究应有助于阐明这些化合物调节MDR的可能机制。基于所讨论的研究,概述了吩噻嗪型MDR调节剂作为MDR现象进一步研究的模型系统的潜在用途。

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