代谢与肿瘤发生过程的相互作用:microrna的作用

Aastha Arora, Saurabh Singh, A. Bhatt, S. Pandey, R. Sandhir, B. Dwarakanath
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引用次数: 37

摘要

癌症是一种复杂的疾病,由于多种基因的组成和调控发生改变,导致信号通路紊乱,导致细胞增殖和死亡的失调,以及转化细胞侵入宿主组织和转移的能力下降。越来越清楚的是,代谢重编程在肿瘤发生和转移中起着关键作用。因此,靶向这种表型被认为是开发治疗和佐剂的一种有前途的方法。代谢重编程的过程与致癌基因的激活和/或抑癌基因的抑制有关,而抑癌基因的激活和/或抑癌基因的抑制又受到microrna (mirna)的进一步调控,microrna在致癌过程和代谢重编程之间的相互作用中起着重要作用。回顾最近取得的进展,似乎从代谢、miRNA和治疗反应领域的研究中获得的知识将导致这种疾病管理的范式转变。
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Interplay Between Metabolism and Oncogenic Process: Role of microRNAs
Cancer is a complex disease that arises from the alterations in the composition and regulation of several genes leading to the disturbances in signaling pathways, resulting in the dysregulation of cell proliferation and death as well as the ability of transformed cells to invade the host tissue and metastasize. It is increasingly becoming clear that metabolic reprograming plays a critical role in tumorigenesis and metastasis. Therefore, targeting this phenotype is considered as a promising approach for the development of therapeutics and adjuvants. The process of metabolic reprograming is linked to the activation of oncogenes and/or suppression of tumor suppressor genes, which are further regulated by microRNAs (miRNAs) that play important roles in the interplay between oncogenic process and metabolic reprograming. Looking at the advances made in the recent past, it appears that the translation of knowledge from research in the areas of metabolism, miRNA, and therapeutic response will lead to paradigm shift in the management of this disease.
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