Advances in cancer genomics and precision oncology.

IF 1.6 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Yonjong Heo, Woo-Jin Kim, Yong-Joon Cho, Jae-Won Jung, Nam-Soo Kim, Ik-Young Choi
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引用次数: 0

Abstract

Background: Next-generation sequencing has revolutionized genome science over the last two decades. Indeed, the wealth of sequence information on our genome has deepened our understanding on cancer. Cancer is a genetic disease caused by genetic or epigenetic alternations that affect the expression of genes that control cell functions, particularly cell growth and division. Utilization of next-generation sequencing in cancer gene panels has enabled the identification of actionable gene alterations in cancer patients to guide personalized precision medicine.

Objective: The aim is to provide information that can identify actionable gene alterations, enabling personalized precision medicine for cancer patients.

Results & discussion: Equipped with next-generation sequencing techniques, international collaboration programs on cancer genomics have identified numerous mutations, gene fusions, microsatellite variations, copy number variations, and epigenetics changes that promote the transformation of normal cells into tumors. Cancer classification has traditionally been based on cell type or tissue-of-origin and the morphological characteristics of the cancer. However, interactive genomic analyses have currently reclassified cancers based on systemic molecular-based taxonomy. Although all cancer-causing genes and mechanisms have yet to be completely understood or identified, personalized or precision medicine is now currently possible for some forms of cancer. Unlike the "one-size-fits-all" approach of traditional medicine, precision medicine allows for customized or personalized treatment based on genomic information.

Conclusion: Despite the availability of numerous cancer gene panels, technological innovation in genomics and expansion of knowledge on the cancer genome will allow precision oncology to manage even more types of cancers.

癌症基因组学和精确肿瘤学的进展。
背景:在过去的二十年中,下一代测序已经彻底改变了基因组科学。事实上,基因组序列信息的丰富加深了我们对癌症的理解。癌症是一种遗传性疾病,由影响控制细胞功能,特别是细胞生长和分裂的基因表达的遗传或表观遗传改变引起。在癌症基因面板中利用下一代测序技术,可以识别癌症患者可操作的基因改变,从而指导个性化的精准医疗。目的:目的是提供能够识别可操作的基因改变的信息,为癌症患者提供个性化的精准医疗。结果与讨论:利用新一代测序技术,癌症基因组学国际合作项目已经确定了许多促进正常细胞向肿瘤转化的突变、基因融合、微卫星变异、拷贝数变异和表观遗传学变化。癌症的分类传统上是基于细胞类型或起源组织和癌症的形态学特征。然而,交互式基因组分析目前已经基于系统分子分类学对癌症进行了重新分类。虽然所有的致癌基因和机制还没有被完全理解或确定,但针对某些形式的癌症,个性化或精准医疗现在是可能的。与传统医学的“一刀切”方法不同,精准医学允许基于基因组信息的定制或个性化治疗。结论:尽管有许多癌症基因面板,但基因组学的技术创新和癌症基因组知识的扩展将使精确肿瘤学能够管理更多类型的癌症。
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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来源期刊
Genes & genomics
Genes & genomics 生物-生化与分子生物学
CiteScore
3.70
自引率
4.80%
发文量
131
审稿时长
6-12 weeks
期刊介绍: Genes & Genomics is an official journal of the Korean Genetics Society (http://kgenetics.or.kr/). Although it is an official publication of the Genetics Society of Korea, membership of the Society is not required for contributors. It is a peer-reviewed international journal publishing print (ISSN 1976-9571) and online version (E-ISSN 2092-9293). It covers all disciplines of genetics and genomics from prokaryotes to eukaryotes from fundamental heredity to molecular aspects. The articles can be reviews, research articles, and short communications.
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