Precision oncology: Using cancer genomics for targeted therapy advancements

IF 9.7 1区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Cigir Biray Avci , Bakiye Goker Bagca , Behrouz Shademan , Leila Sabour Takanlou , Maryam Sabour Takanlou , Alireza Nourazarian
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引用次数: 0

Abstract

Cancer genomics plays a crucial role in oncology by enhancing our understanding of how genes drive cancer and facilitating the development of improved treatments. This field meticulously examines various cancers' genetic makeup through various methodologies, leading to groundbreaking discoveries. Innovative tools such as rapid gene sequencing, single-cell studies, spatial gene mapping, epigenetic analysis, liquid biopsies, and computational modeling have significantly progressed the field. These techniques uncover genetic alterations, tumor heterogeneity, and the evolutionary dynamics of cancers. Genetic abnormalities and molecular markers that initiate and propagate distinct cancer types are classified according to tumor type. The integration of precision medicine with cancer genomics emphasizes the significance of utilizing genetic data in treatment decision-making, enabling personalized care and enhancing patient outcomes. Critical topics in cancer genomics encompass tumor diversity, alterations in non-coding DNA, epigenetic modifications, cancer-specific proteins, metabolic changes, and the impact of inherited genes on cancer risk.
精准肿瘤学:利用癌症基因组学推进靶向治疗。
癌症基因组学在肿瘤学中发挥着至关重要的作用,增强了我们对基因驱动癌症的理解,促进了改进治疗方法的发展。该领域通过各种方法细致地检查各种癌症的基因组成,从而产生突破性的发现。快速基因测序、单细胞研究、空间基因定位、表观遗传分析、液体活检和计算模型等创新工具在该领域取得了重大进展。这些技术揭示了基因改变、肿瘤异质性和癌症的进化动力学。启动和传播不同癌症类型的遗传异常和分子标记根据肿瘤类型进行分类。精准医学与癌症基因组学的结合强调了在治疗决策中利用基因数据、实现个性化护理和提高患者预后的重要性。癌症基因组学的关键课题包括肿瘤多样性、非编码DNA的改变、表观遗传修饰、癌症特异性蛋白、代谢变化以及遗传基因对癌症风险的影响。
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来源期刊
Biochimica et biophysica acta. Reviews on cancer
Biochimica et biophysica acta. Reviews on cancer 医学-生化与分子生物学
CiteScore
17.20
自引率
0.00%
发文量
138
审稿时长
33 days
期刊介绍: Biochimica et Biophysica Acta (BBA) - Reviews on Cancer encompasses the entirety of cancer biology and biochemistry, emphasizing oncogenes and tumor suppressor genes, growth-related cell cycle control signaling, carcinogenesis mechanisms, cell transformation, immunologic control mechanisms, genetics of human (mammalian) cancer, control of cell proliferation, genetic and molecular control of organismic development, rational anti-tumor drug design. It publishes mini-reviews and full reviews.
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