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外周癌中的雪旺细胞:旁观者还是促进者?

Schwann Cells in Peripheral Cancers: Bystanders or Promoters?

机构信息

Department of Surgery, Klinikum rechts der Isar, Technical University of Munich, School of Medicine, 81675, Munich, Germany.

German Cancer Consortium (DKTK), Partner Site Munich, 81675, Munich, Germany.

出版信息

Adv Biol (Weinh). 2022 Sep;6(9):e2200033. doi: 10.1002/adbi.202200033. Epub 2022 Jun 3.

Abstract

The tumor microenvironment is subject to intense investigation in terms of its influence on tumorigenesis. Despite the fact that Schwann cells are cancer cells' early interaction partners, investigations on tumor progression and the molecular drivers of carcinogenesis do not place enough emphasis on them. Recent studies have shown that malignant cells and nerves interact on several levels during early carcinogenesis. For instance, the emergence of nerves in cancer, known as cancer neo-neurogenesis, is one important mechanism that contributes to cancer progression. Recent studies on Schwann cells brought the investigation of tumor-nerve interactions to a whole new level. Schwann cells make up the majority of glial cells in the peripheral nervous system, are outstandingly plastic cells, and serve a variety of roles in most organs. All these properties make Schwann cells excellent potential targets for tumor cells to exploit and turn them into promoters of carcinogenesis. In the present review, the distinctive features of Schwann cell-tumor cell interactions and the implications of this interaction on the tumor microenvironment are outlined. Further, this study points out the neglected aspects of Schwann cells in the tumor microenvironment and provides a potential new avenue for future research.

摘要

肿瘤微环境在肿瘤发生中的影响受到了广泛的研究。尽管施万细胞是癌细胞的早期相互作用伙伴,但在肿瘤进展和致癌分子驱动因素的研究中,并没有给予它们足够的重视。最近的研究表明,恶性细胞和神经在早期癌变过程中在多个层面上相互作用。例如,癌症中神经的出现,即癌症新生神经发生,是促进癌症进展的一个重要机制。最近对施万细胞的研究将肿瘤-神经相互作用的研究提升到了一个全新的水平。施万细胞构成了周围神经系统中大多数神经胶质细胞,是具有高度可塑性的细胞,在大多数器官中发挥多种作用。所有这些特性使施万细胞成为肿瘤细胞利用的极佳潜在靶点,并将其转化为致癌作用的促进者。在本综述中,概述了施万细胞-肿瘤细胞相互作用的特征,以及这种相互作用对肿瘤微环境的影响。此外,本研究指出了肿瘤微环境中施万细胞被忽视的方面,并为未来的研究提供了一个潜在的新途径。

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