Kodydková K, Krejsek J
Ustav klinické imunologie a alergologie LF UK a FN, Hradec Králové.
Cas Lek Cesk. 2000 Oct 11;139(20):620-2.
Resistance to cytotoxic drugs is a serious drawback in the treatment of patient with tumours, both of the haemopoietic and non-haemopoietic origin. The cytotoxic effect of drugs on the malignant cells manifests as the process of apoptosis. In the resistant malignant cells, apoptosis becomes prevented by several mechanisms. The multidrug resistance (MDR) is one of the principal mechanisms when the cancer cells develop resistance to multiple chemically and functionally unrelated cytotoxic compounds. The decrease of the cytotoxic drug concentration at the molecular target site may come from activation of some efflux membrane systems participating in the transport of cytotoxic drugs out of the cell (e.g. Pgp, MDR, and LRP). Another mechanism of resistance is the increased enzymatic detoxification of the drug by glutathion-S-transferase system. Changes in the molecular target of the cytotoxic drug such as topoisomerase molecule can be also responsible for the resistance. At least two additional mechanisms of resistance of tumour cells were identified. Resistance can come from either deregulation of proapoptotic mechanisms in tumour cells or by increased activity of reparation processes which control the damaged molecule of DNA. Several methods that detect the cause of resistance in distinct cell populations have been developed. The great effort is now focused on both the detection of mechanisms of the resistance and on the clinical procedures of overcoming the resistance to cytotoxic drugs.
对细胞毒性药物产生耐药性是肿瘤患者治疗过程中的一个严重缺陷,这些肿瘤患者既有造血系统来源的,也有非造血系统来源的。药物对恶性细胞的细胞毒性作用表现为凋亡过程。在耐药的恶性细胞中,凋亡会通过多种机制受到抑制。多药耐药(MDR)是癌细胞对多种化学结构和功能无关的细胞毒性化合物产生耐药性的主要机制之一。细胞毒性药物在分子靶点部位浓度的降低可能源于一些参与将细胞毒性药物转运出细胞的外排膜系统(如Pgp、MDR和LRP)的激活。另一种耐药机制是谷胱甘肽-S-转移酶系统对药物的酶促解毒作用增强。细胞毒性药物分子靶点(如拓扑异构酶分子)的变化也可能导致耐药性。至少还发现了肿瘤细胞的另外两种耐药机制。耐药性可能源于肿瘤细胞中促凋亡机制的失调,或者源于控制受损DNA分子的修复过程活性增加。已经开发出了几种检测不同细胞群体中耐药原因的方法。目前,人们的巨大努力集中在耐药机制的检测以及克服对细胞毒性药物耐药性的临床方法上。