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间充质干细胞与间充质肿瘤细胞具有共同的分子特征,并促进同基因小鼠早期肿瘤生长。

Mesenchymal stem cells share molecular signature with mesenchymal tumor cells and favor early tumor growth in syngeneic mice.

作者信息

Galiè M, Konstantinidou G, Peroni D, Scambi I, Marchini C, Lisi V, Krampera M, Magnani P, Merigo F, Montani M, Boschi F, Marzola P, Orrù R, Farace P, Sbarbati A, Amici A

机构信息

Department of Morphological and Biomedical Sciences, Anatomy and Histology Section, University of Verona, Verona, Italy.

出版信息

Oncogene. 2008 Apr 17;27(18):2542-51. doi: 10.1038/sj.onc.1210920. Epub 2007 Nov 12.

Abstract

Tumor microenvironment in carcinomas recruits mesenchymal cells with an abnormal proangiogenic and invasive phenotype. It is not clear whether mesenchymal tumor cells (MTCs) derive from the activation of mature fibroblasts or from their stem cell precursors. However, stromal cell activation in tumors resembles in several aspects the mesenchymal rearrangement which normally occurs during reparative processes such as wound healing. Mesenchymal stem cells (MSCs) play a crucial role in developmental and reparative processes and have extraordinary proangiogenic potential, on the basis of which they are thought to show great promise for the treatment of ischemic disorders. Here, we show that MTCs have proangiogenic potential and that they share the transcriptional expression of the best-known proangiogenic factors with MSCs. We also found that MTCs and MSCs have the same molecular signature for stemness-related genes, and that when co-implanted with cancer cells in syngeneic animals MSCs determine early tumor appearance, probably by favoring the angiogenic switch. Our data (1) reveal crucial aspects of the proangiogenic phenotype of MTCs, (2) strongly suggest their stem origin and (3) signal the risk of therapeutic use of MSCs in tumor-promoting conditions.

摘要

癌组织中的肿瘤微环境会募集具有异常促血管生成和侵袭表型的间充质细胞。目前尚不清楚间充质肿瘤细胞(MTCs)是源自成熟成纤维细胞的激活还是其干细胞前体。然而,肿瘤中的基质细胞激活在几个方面类似于在诸如伤口愈合等修复过程中正常发生的间充质重排。间充质干细胞(MSCs)在发育和修复过程中发挥着关键作用,并且具有非凡的促血管生成潜力,基于此它们被认为在治疗缺血性疾病方面具有巨大前景。在此,我们表明MTCs具有促血管生成潜力,并且它们与MSCs共享最著名的促血管生成因子的转录表达。我们还发现MTCs和MSCs在干性相关基因方面具有相同的分子特征,并且当在同基因动物中与癌细胞共植入时,MSCs可能通过促进血管生成转换来决定肿瘤的早期出现。我们的数据(1)揭示了MTCs促血管生成表型的关键方面,(2)强烈提示它们的干细胞起源,以及(3)表明在肿瘤促进条件下使用MSCs进行治疗存在风险。

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