Application of Novel Molecular Biology in Cancer Therapy

A. Abdolmaleki, Aida Karimian, A. Asadi, Hussein A. Ghanimi, Muhammad Akram
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Abstract

Cancer is a genetic illness that develops for various reasons, including the activation of oncogenes, the failure of tumor suppressor genes, or mutagenesis induced by environmental stimuli. This article was produced using PubMed, Nature, Science Direct, Springer, and Elsevier data. Oncogenes are altered forms of normal proto-oncogenic genes that are important for cell proliferation, development, and regulation. The transformation of a gene to an oncogene is caused by chromosomal translocation or gene mutation due to addition, deletion, duplication, or viral infection. These oncogenes are targeted by medications or the RNAi system to limit malignant cell development. Various molecular biology methods for cancer detection and treatment have been developed, including targeting cancer stem cell pathways for cancer therapy, retroviral therapy, oncogene silencing, and alterations in tumor suppressor genes. Among all the techniques used, RNAi, zinc finger nucleases, and CRISPR have a greater chance of reaching a cancer-free planet.
新型分子生物学在癌症治疗中的应用
癌症是一种由多种原因引起的遗传性疾病,包括致癌基因的激活、肿瘤抑制基因的失效或环境刺激引起的突变。本文使用PubMed, Nature, Science Direct, Springer和Elsevier的数据制作。癌基因是正常原癌基因的改变形式,对细胞增殖、发育和调控很重要。基因向致癌基因的转化是由染色体易位或基因突变引起的,这是由于添加、删除、复制或病毒感染所致。这些致癌基因是药物或RNAi系统的目标,以限制恶性细胞的发展。各种用于癌症检测和治疗的分子生物学方法已经开发出来,包括针对癌症干细胞途径的癌症治疗、逆转录病毒治疗、癌基因沉默和肿瘤抑制基因的改变。在所有使用的技术中,RNAi、锌指核酸酶和CRISPR有更大的机会到达一个没有癌症的星球。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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