Clonal evolution and expansion associated with therapy resistance and relapse of colorectal cancer

癌症的体细胞进化 神经母细胞瘤RAS病毒癌基因同源物 克拉斯 结直肠癌 肿瘤进展 生物 表观遗传学 肿瘤异质性 抗药性 癌症研究 癌症 生物信息学 基因 遗传学
作者
S Anupriya,Averi Chakraborty,Srinivas Patnaik
出处
期刊:Mutation Research-reviews in Mutation Research [Elsevier BV]
卷期号:790: 108445-108445 被引量:10
标识
DOI:10.1016/j.mrrev.2022.108445
摘要

Colorectal cancer (CRC) arises by a continuous process of genetic diversification and clonal evolution. Multiple genes and pathways have a role in tumor initiation and progression. The gradual accumulation of genetic and epigenetic processes leads to the establishment of adenoma and cancer. The important 'driver' mutations in tumor suppressor genes (such as TP53, APC, and SMAD4) and oncogenes (such as KRAS, NRAS, MET, and PIK3CA) confer selective growth advantages and cause CRC advancement. Clonal evolution induced by therapeutic pressure, as well as intra-tumoral heterogeneity, has been a great challenge in the treatment of metastatic CRC. Tumors often develop resistance to treatments as a result of intra-tumor heterogeneity, clonal evolution, and selection. Hence, the development of a multidrug personalized approach should be prioritized to pave the way for therapeutics repurposing and combination therapy to arrest tumor progression. This review summarizes how selective drug pressure can impact tumor evolution, resulting in the formation of polyclonal resistance mechanisms, ultimately promoting cancer progression. Current strategies for targeting clonal evolution are described. By understanding sources and consequences of tumor heterogeneity, customized and effective treatment plans to combat drug resistance may be devised.
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