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Genetic and Epigenetic Modulation of Drug Resistance in Cancer: Challenges and Opportunities

机译:癌症中耐药性遗传和表观遗传调节:挑战与机遇

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Cancer is a complex disease that has the ability to develop resistance to traditional therapies. The current chemotherapeutic treatment has become increasingly sophisticated, yet it is not 100% effective against disseminated tumours. Anticancer drugs resistance is an intricate process that ascends from modifications in the drug targets suggesting the need for better targeted therapies in the therapeutic arsenal. Advances in the modern techniques such as DNA microarray, proteomics along with the development of newer targeted drug therapies might provide better strategies to overcome drug resistance. This drug resistance in tumours can be attributed to an individual's genetic differences, especially in tumoral somatic cells but acquired drug resistance is due to different mechanisms, such as cell death inhibition (apoptosis suppression) altered expression of drug transporters, alteration in drug metabolism epigenetic and drug targets, enhancing DNA repair and gene amplification. This review also focusses on the epigenetic modifications and microRNAs, which induce drug resistance and contributes to the formation of tumour progenitor cells that are not destroyed by conventional cancer therapies. Lastly, this review highlights different means to prevent the formation of drug resistant tumours and provides future directions for better treatment of these resistant tumours.
机译:癌症是一种复杂的疾病,具有能够造成对传统疗法的抵抗力。目前的化学治疗治疗变得越来越复杂,但它与播散的肿瘤有效而不是100%。抗癌药物抗性是一种复杂的方法,可从药物靶标的修饰上升,这表明需要在治疗性阿森纳中获得更好的靶向疗法。现代技术等DNA微阵列,蛋白质组学以及较新的靶向药物治疗的发展可能提供更好的策略来克服耐药性。这种肿瘤的这种耐药性可归因于个体遗传差异,特别是在肿瘤体细胞中,但由于不同机制,所获得的耐药性,例如细胞死亡抑制(凋亡抑制)改变药物转运蛋白的表达,药物代谢的改变和药物靶标,增强DNA修复和基因扩增。该综述还重点关注表观遗传修饰和MicroRNA,其诱导耐药性并有助于形成常规癌症治疗的肿瘤祖细胞的形成。最后,本综述凸显了防止耐药性肿瘤的不同手段,并提供了未来的方向,以便更好地治疗这些抗性肿瘤。

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