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利用计算病理学和基因组学对皮肤附属器癌进行异质性分析的策略性方法

Strategic Approach to Heterogeneity Analysis of Cutaneous Adnexal Carcinomas Using Computational Pathology and Genomics.

作者信息

Nishimura Yuuki, Ryo Eijitsu, Inoue Satoshi, Kawazu Masahito, Ueno Toshihide, Namikawa Kenjiro, Takahashi Akira, Ogata Dai, Yoshida Akihiko, Yamazaki Naoya, Mano Hiroyuki, Yatabe Yasushi, Mori Taisuke

机构信息

Department of Diagnostic Pathology, National Cancer Center Hospital, Tokyo, Japan.

Course of Advanced Clinical Research of Cancer, Juntendo University Graduate School of Medicine, Tokyo, Japan.

出版信息

JID Innov. 2023 Sep 9;3(6):100229. doi: 10.1016/j.xjidi.2023.100229. eCollection 2023 Nov.

Abstract

Cutaneous adnexal tumors are neoplasms that arise from skin appendages. Their morphologic diversity and phenotypic variability with rare progression to malignancy make them difficult to diagnose and classify, and there is currently no established treatment strategy. To overcome these difficulties, this study investigated the transcription factor SOX9 expression, morphology, and genetics of skin adnexal tumors for understanding their biology, especially their histogenesis. We showed that cutaneous adnexal tumors and their nontumor counterparts of skin and appendages exhibit expression patterns similar to that of SOX9. Its expression intensity and pattern, as well as histopathologic evaluation of tumors, were analyzed using digital images of 69 normal skin adnexal 9-type organs and 185 skin adnexal 29-type tumors as references. It was possible to distinguish basal cell carcinoma from squamous cell carcinoma, sebaceous carcinoma, and pilomatrixoma with significant differences, along with porocarcinoma from squamous cell carcinoma. Furthermore, unsupervised machine learning "computational pathology" was used to derive a multiregion whole-exome sequencing fusion method termed "genocomputed pathology." The genocomputed pathology of three representable adnexal carcinomas (porocarcinoma, hidradenocarcinoma, and spiradenocarcinoma) was evaluated for total nine cases. We showed that there was more heterogeneity than expected within the tumors as well as the coexistence of components lacking driver fusion genes. The presence or absence of potential driver genes, such as , , and , in each region was identified, highlighting a therapeutic strategy for cutaneous adnexal carcinoma encompassing heterogeneous tumors.

摘要

皮肤附属器肿瘤是起源于皮肤附属器的肿瘤。它们形态多样、表型多变,恶变进展罕见,这使得它们难以诊断和分类,目前也没有既定的治疗策略。为克服这些困难,本研究调查了皮肤附属器肿瘤的转录因子SOX9表达、形态学和遗传学,以了解其生物学特性,尤其是其组织发生。我们发现皮肤附属器肿瘤及其皮肤和附属器的非肿瘤对应物表现出与SOX9相似的表达模式。以69个正常皮肤附属器9种类型器官和185个皮肤附属器29种类型肿瘤的数字图像为参考,分析了其表达强度和模式以及肿瘤的组织病理学评估。可以显著区分基底细胞癌与鳞状细胞癌、皮脂腺癌和毛母质瘤,以及汗腺癌与鳞状细胞癌。此外,使用无监督机器学习“计算病理学”得出了一种称为“基因计算病理学”的多区域全外显子测序融合方法。对9例三种代表性附属器癌(汗腺癌、汗腺瘤和螺旋腺瘤)进行了基因计算病理学评估。我们发现肿瘤内部的异质性比预期的更多,并且存在缺乏驱动融合基因的成分。确定了每个区域中潜在驱动基因(如 、 和 )的存在与否,突出了一种针对包含异质性肿瘤的皮肤附属器癌的治疗策略。

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