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Tenascin-C 通过影响血管侵袭增加肺转移。

Tenascin-C increases lung metastasis by impacting blood vessel invasions.

机构信息

INSERM U1109 - MN3T, The Microenvironmental Niche in Tumorigenesis and Targeted Therapy and, the Tumor Microenvironment group, France; Université de Strasbourg, Strasbourg, France; LabEx Medalis, Université de Strasbourg, France; Fédération de Médecine Translationnelle de Strasbourg (FMTS), Strasbourg, France.

Department of Pathology, University Hospital Strasbourg, Strasbourg, France.

出版信息

Matrix Biol. 2019 Oct;83:26-47. doi: 10.1016/j.matbio.2019.07.001. Epub 2019 Jul 6.

Abstract

Metastasis is a major cause of death in cancer patients. The extracellular matrix molecule tenascin-C is a known promoter of metastasis, however the underlying mechanisms are not well understood. To further analyze the impact of tenascin-C on cancer progression we generated MMTV-NeuNT mice that develop spontaneous mammary tumors, on a tenascin-C knockout background. We also developed a syngeneic orthotopic model in which tumor cells derived from a MMTV-NeuNT tumor. Tumor cells were transfected with control shRNA or with shRNA to knockdown tenascin-C expression and, were grafted into the mammary gland of immune competent, wildtype or tenascin-C knockout mice. We show that stromal-derived tenascin-C increases metastasis by reducing apoptosis and inducing the cellular plasticity of cancer cells located in pulmonary blood vessels invasions (BVI), before extravasation. We characterized BVI as organized structures of tightly packed aggregates of proliferating tumor cells with epithelial characteristics, surrounded by Fsp1+ cells, internally located platelets and, a luminal monolayer of endothelial cells. We found extracellular matrix, in particular, tenascin-C, between the stromal cells and the tumor cell cluster. In mice lacking stromal-derived tenascin-C, the organization of pulmonary BVI was significantly affected, revealing novel functions of host-derived tenascin-C in supporting the integrity of the endothelial cell coat, increasing platelet abundance, tumor cell survival, epithelial plasticity, thereby promoting overall lung metastasis. Many effects of tenascin-C observed in BVI including enhancement of cellular plasticity, survival and migration, could be explained by activation of TGF-β signaling. Finally, in several human cancers, we also observed BVI to be surrounded by an endothelial monolayer and to express tenascin-C. Expression of tenascin-C is specific to BVI and is not observed in lymphatic vascular invasions frequent in breast cancer, which lack an endothelial lining. Given that BVI have prognostic significance for many tumor types, such as shorter cancer patient survival, increased metastasis, vessel occlusion, and organ failure, our data revealing a novel mechanism by which stromal tenascin-C promotes metastasis in human cancer, may have potential for diagnosis and therapy.

摘要

转移是癌症患者死亡的主要原因。细胞外基质分子 tenascin-C 是已知的转移促进物,但其潜在机制尚不清楚。为了进一步分析 tenascin-C 对癌症进展的影响,我们在 tenascin-C 敲除背景下生成了自发发生乳腺肿瘤的 MMTV-NeuNT 小鼠。我们还开发了一种同源原位模型,其中肿瘤细胞源自 MMTV-NeuNT 肿瘤。肿瘤细胞用对照 shRNA 或用于敲低 tenascin-C 表达的 shRNA 转染,并被移植到免疫功能正常的野生型或 tenascin-C 敲除小鼠的乳腺中。我们表明,基质衍生的 tenascin-C 通过减少细胞凋亡并诱导位于肺血管浸润 (BVI) 中的癌细胞的细胞可塑性来增加转移,然后再发生血管外渗。我们将 BVI 特征化为具有上皮特征的增殖性肿瘤细胞紧密聚集的有组织结构,被 Fsp1+细胞、内部血小板和内皮细胞的管腔单层所包围。我们发现细胞外基质,特别是 tenascin-C,位于基质细胞和肿瘤细胞簇之间。在缺乏基质衍生的 tenascin-C 的小鼠中,肺 BVI 的组织明显受到影响,揭示了宿主衍生的 tenascin-C 在支持内皮细胞层的完整性、增加血小板丰度、肿瘤细胞存活、上皮可塑性方面的新功能,从而促进整体肺转移。在 BVI 中观察到的 tenascin-C 的许多作用,包括增强细胞可塑性、存活和迁移,可通过 TGF-β 信号的激活来解释。最后,在几种人类癌症中,我们还观察到 BVI 被内皮单层包围并表达 tenascin-C。tenascin-C 的表达是 BVI 的特异性表达,在乳腺癌中常见的缺乏内皮衬里的淋巴管浸润中观察不到。鉴于 BVI 对许多肿瘤类型具有预后意义,例如癌症患者的存活时间缩短、转移增加、血管阻塞和器官衰竭,我们的数据揭示了基质 tenascin-C 在人类癌症中促进转移的新机制,可能具有诊断和治疗的潜力。

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