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上皮-间质转化/间质-上皮转化处于干性、再生与肿瘤发生的十字路口:细胞球体中重现的阴阳平衡

EMT/MET at the Crossroad of Stemness, Regeneration and Oncogenesis: The Ying-Yang Equilibrium Recapitulated in Cell Spheroids.

作者信息

Forte Elvira, Chimenti Isotta, Rosa Paolo, Angelini Francesco, Pagano Francesca, Calogero Antonella, Giacomello Alessandro, Messina Elisa

机构信息

The Jackson Laboratory, Bar Harbor, ME 04609, USA.

Department of Medical Surgical Sciences and Biotechnologies, "La Sapienza" University of Rome, 04100 Italy.

出版信息

Cancers (Basel). 2017 Jul 29;9(8):98. doi: 10.3390/cancers9080098.

Abstract

The epithelial-to-mesenchymal transition (EMT) is an essential trans-differentiation process, which plays a critical role in embryonic development, wound healing, tissue regeneration, organ fibrosis, and cancer progression. It is the fundamental mechanism by which epithelial cells lose many of their characteristics while acquiring features typical of mesenchymal cells, such as migratory capacity and invasiveness. Depending on the contest, EMT is complemented and balanced by the reverse process, the mesenchymal-to-epithelial transition (MET). In the saving economy of the living organisms, the same (Ying-Yang) tool is integrated as a physiological strategy in embryonic development, as well as in the course of reparative or disease processes, prominently fibrosis, tumor invasion and metastasis. These mechanisms and their related signaling (e.g., TGF-β and BMPs) have been effectively studied in vitro by tissue-derived cell spheroids models. These three-dimensional (3D) cell culture systems, whose phenotype has been shown to be strongly dependent on TGF-β-regulated EMT/MET processes, present the advantage of recapitulating in vitro the hypoxic in vivo micro-environment of tissue stem cell niches and their formation. These spheroids, therefore, nicely reproduce the finely regulated Ying-Yang equilibrium, which, together with other mechanisms, can be determinant in cell fate decisions in many pathophysiological scenarios, such as differentiation, fibrosis, regeneration, and oncogenesis. In this review, current progress in the knowledge of signaling pathways affecting EMT/MET and stemness regulation will be outlined by comparing data obtained from cellular spheroids systems, as ex vivo niches of stem cells derived from normal and tumoral tissues. The mechanistic correspondence in vivo and the possible pharmacological perspective will be also explored, focusing especially on the TGF-β-related networks, as well as others, such as SNAI1, PTEN, and EGR1. This latter, in particular, for its ability to convey multiple types of stimuli into relevant changes of the cell transcriptional program, can be regarded as a heterogeneous "stress-sensor" for EMT-related inducers (growth factor, hypoxia, mechano-stress), and thus as a therapeutic target.

摘要

上皮-间质转化(EMT)是一个重要的转分化过程,在胚胎发育、伤口愈合、组织再生、器官纤维化和癌症进展中起着关键作用。它是上皮细胞失去许多自身特征,同时获得间质细胞典型特征(如迁移能力和侵袭性)的基本机制。根据具体情况,EMT会被反向过程——间质-上皮转化(MET)所补充和平衡。在生物体的节约机制中,同样的(阴阳)工具作为一种生理策略整合于胚胎发育过程以及修复或疾病过程中,尤其是纤维化、肿瘤侵袭和转移过程。这些机制及其相关信号通路(如TGF-β和骨形态发生蛋白)已通过组织来源的细胞球体模型在体外得到有效研究。这些三维(3D)细胞培养系统,其表型已被证明强烈依赖于TGF-β调节的EMT/MET过程,具有在体外重现组织干细胞龛的低氧体内微环境及其形成的优势。因此,这些球体很好地再现了精细调节的阴阳平衡,这与其他机制一起,在许多病理生理情况下(如分化、纤维化、再生和肿瘤发生)的细胞命运决定中可能起决定性作用。在本综述中,将通过比较从细胞球体系统获得的数据来概述影响EMT/MET和干性调节的信号通路的当前知识进展,细胞球体系统作为源自正常和肿瘤组织的干细胞的离体龛。还将探讨体内的机制对应关系以及可能的药理学前景,特别关注TGF-β相关网络以及其他网络,如SNAI1、PTEN和EGR1。尤其是后者,因其能够将多种类型的刺激转化为细胞转录程序的相关变化,可被视为EMT相关诱导剂(生长因子、缺氧、机械应力)的异质性“应激传感器”,因此可作为治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0db1/5575601/c6c6c91de2b0/cancers-09-00098-g001.jpg

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