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癌症演变与异质性

Cancer evolution and heterogeneity.

作者信息

Mimori Koshi, Saito Tomoko, Niida Atsushi, Miyano Satoru

机构信息

Department of Surgery Kyushu University Beppu Hospital Beppu Japan.

Division of Health Medical Computational Science Health Intelligence Center Institute of Medical Science The University of Tokyo Tokyo Japan.

出版信息

Ann Gastroenterol Surg. 2018 Jul 4;2(5):332-338. doi: 10.1002/ags3.12182. eCollection 2018 Sep.

Abstract

Undoubtedly, intratumor heterogeneity (ITH) is one of the causes of the intractability of cancers. Recently, technological innovation in genomics has promoted studies on ITH in solid tumors and on the pattern and level of diversity, which varies among malignancies. We profiled the genome in multiple regions of nine colorectal cancer (CRC) cases. The most impressive finding was that in the late phase, a parental clone branched into numerous subclones. We found that minor mutations were dominant in advanced CRC named neutral evolution; that is, driver gene aberrations were observed with high proportion in the early-acquired phase, but low in the late-acquired phase. Then, we validated that neutral evolution could cause ITH in advanced CRC by super-computational analysis. According to the clinical findings, we explored a branching evolutionary process model in cancer evolution, which assumes that each tumor cell has cellular automaton. According to the model, we verified factors to foster ITH with neutral evolution in advanced CRC. In this review, we introduce recent advances in the field of ITH including the general component of ITH, clonal selective factors that consolidate the evolutionary process, and a representative clinical application of ITH.

摘要

毫无疑问,肿瘤内异质性(ITH)是癌症难以治疗的原因之一。最近,基因组学的技术创新推动了对实体瘤中ITH以及多样性模式和水平的研究,而这些在不同恶性肿瘤中有所不同。我们对9例结直肠癌(CRC)病例的多个区域进行了基因组分析。最令人印象深刻的发现是,在晚期,一个亲代克隆分支成众多亚克隆。我们发现,在晚期CRC中,微小突变占主导地位,即所谓的中性进化;也就是说,驱动基因畸变在早期获得阶段比例较高,但在晚期获得阶段比例较低。然后,我们通过超级计算分析验证了中性进化可导致晚期CRC中的ITH。根据临床发现,我们探索了癌症进化中的分支进化过程模型,该模型假设每个肿瘤细胞都具有细胞自动机。根据该模型,我们验证了晚期CRC中促进ITH与中性进化的因素。在这篇综述中,我们介绍了ITH领域的最新进展,包括ITH的一般组成部分、巩固进化过程的克隆选择因素以及ITH的一个代表性临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6809/6139712/8a62a4b1454d/AGS3-2-332-g001.jpg

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