Cisplatin and beyond: molecular mechanisms of action and drug resistance development in cancer chemotherapy

顺铂 医学 抗药性 药理学 药品 化疗 作用机理 癌症化疗 毒性 癌症 生物信息学 癌症研究 遗传学 内科学 生物 体外
作者
Tomaž Makovec
出处
期刊:Radiology and Oncology [De Gruyter Open]
卷期号:53 (2): 148-158 被引量:416
标识
DOI:10.2478/raon-2019-0018
摘要

Background Platinum-based anticancer drugs are widely used in the chemotherapy of human neoplasms. The major obstacle for the clinical use of this class of drugs is the development of resistance and toxicity. It is therefore very important to understand the chemical properties, transport and metabolic pathways and mechanism of actions of these compounds. There is a large body of evidence that therapeutic and toxic effects of platinum drugs on cells are not only a consequence of covalent adducts formation between platinum complexes and DNA but also with RNA and many proteins. These processes determine molecular mechanisms that underlie resistance to platinum drugs as well as their toxicity. Increased expression levels of various transporters and increased repair of platinum-DNA adducts are both considered as the most significant processes in the development of drug resistance. Functional genomics has an increasing role in predicting patients' responses to platinum drugs. Genetic polymorphisms affecting these processes may play an important role and constitute the basis for individualized approach to cancer therapy. Similar processes may also influence therapeutic potential of nonplatinum metal compounds with anticancer activity. Conclusions Cisplatin is the most frequently used platinum based chemotherapeutic agent that is clinically proven to combat different types of cancers and sarcomas.
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