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本文引用的文献

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Matrix Stiffness Enhances VEGFR-2 Internalization, Signaling, and Proliferation in Endothelial Cells.基质硬度增强内皮细胞中血管内皮生长因子受体-2(VEGFR-2)的内化、信号传导及增殖。
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Corrigendum: Vascular Endothelial (VE)-Cadherin, Endothelial Adherens Junctions, and Vascular Disease.勘误:血管内皮(VE)-钙黏蛋白、内皮黏附连接与血管疾病。
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Stiff Substrates Increase Inflammation-Induced Endothelial Monolayer Tension and Permeability.坚硬基质会增加炎症诱导的内皮单层张力和通透性。
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VE-Cadherin Disassembly and Cell Contractility in the Endothelium are Necessary for Barrier Disruption Induced by Tumor Cells.血管内皮钙黏蛋白解聚和细胞收缩是肿瘤细胞诱导屏障破坏所必需的。
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Matrix stiffening promotes a tumor vasculature phenotype.基质硬化促进肿瘤血管表型。
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Tissue stiffness regulates serine/arginine-rich protein-mediated splicing of the extra domain B-fibronectin isoform in tumors.组织硬度调节肿瘤中富含丝氨酸/精氨酸蛋白介导的额外结构域B纤连蛋白异构体的剪接。
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FAK in cancer: mechanistic findings and clinical applications.FAK 在癌症中的作用:机制研究发现与临床应用
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8
A FAK-Cas-Rac-lamellipodin signaling module transduces extracellular matrix stiffness into mechanosensitive cell cycling.一种黏着斑激酶-钙黏蛋白-Rac-片层状肌动蛋白结合蛋白信号传导模块将细胞外基质硬度转化为机械敏感的细胞周期进程。
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Leukocyte extravasation and vascular permeability are each controlled in vivo by different tyrosine residues of VE-cadherin.白细胞渗出和血管通透性在体内分别受 VE-钙黏蛋白不同的酪氨酸残基控制。
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10
Inhibition of endothelial FAK activity prevents tumor metastasis by enhancing barrier function.抑制内皮细胞 FAK 活性通过增强屏障功能来预防肿瘤转移。
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基质硬度通过黏着斑激酶活性调节血管完整性。

Matrix stiffness regulates vascular integrity through focal adhesion kinase activity.

机构信息

Department of Biomedical Engineering, Vanderbilt University, Nashville, Tennessee, USA.

Robert Frederick Smith School of Chemical and Biomolecular Engineering, Cornell University, Ithaca, New York, USA; and.

出版信息

FASEB J. 2019 Jan;33(1):1199-1208. doi: 10.1096/fj.201800841R. Epub 2018 Aug 13.

DOI:10.1096/fj.201800841R
PMID:30102569
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6355084/
Abstract

Tumor vasculature is known to be more permeable than the vasculature found in healthy tissue, which in turn can lead to a more aggressive tumor phenotype and impair drug delivery into tumors. While the stiffening of the stroma surrounding solid tumors has been reported to increase vascular permeability, the mechanism of this process remains unclear. Here, we utilize an in vitro model of tumor stiffening, ex ovo culture, and a mouse model to investigate the molecular mechanism by which matrix stiffening alters endothelial barrier function. Our data indicate that the increased endothelial permeability caused by heightened matrix stiffness can be prevented by pharmaceutical inhibition of focal adhesion kinase (FAK) both in vitro and ex ovo. Matrix stiffness-mediated FAK activation determines Src localization to cell-cell junctions, which then induces increased vascular endothelial cadherin phosphorylation both in vitro and in vivo. Endothelial cells in stiff tumors have more activated Src and higher levels of phosphorylated vascular endothelial cadherin at adherens junctions compared to endothelial cells in more compliant tumors. Altogether, our data indicate that matrix stiffness regulates endothelial barrier integrity through FAK activity, providing one mechanism by which extracellular matrix stiffness regulates endothelial barrier function. Additionally, our work also provides further evidence that FAK is a promising potential target for cancer therapy because FAK plays a critical role in the regulation of endothelial barrier integrity.-Wang, W., Lollis, E. M., Bordeleau, F., Reinhart-King, C. A. Matrix stiffness regulates vascular integrity through focal adhesion kinase activity.

摘要

肿瘤血管系统比健康组织中的血管系统更具渗透性,这反过来又会导致肿瘤更具侵袭性,并损害药物向肿瘤内的输送。虽然已经报道了实体瘤周围基质的变硬会增加血管通透性,但这一过程的机制仍不清楚。在这里,我们利用体外肿瘤变硬模型、鸡胚体外培养和小鼠模型来研究基质变硬改变内皮屏障功能的分子机制。我们的数据表明,通过体外和鸡胚体外抑制粘着斑激酶 (FAK),可以预防由基质变硬引起的内皮通透性增加。基质变硬介导的 FAK 激活决定了Src 在细胞-细胞连接处的定位,从而导致体外和体内血管内皮钙粘蛋白的磷酸化增加。与更顺应性的肿瘤中的内皮细胞相比,硬肿瘤中的内皮细胞具有更多激活的Src 和更高水平的磷酸化血管内皮钙粘蛋白在黏着连接。总之,我们的数据表明,基质刚度通过 FAK 活性调节内皮屏障完整性,为细胞外基质刚度调节内皮屏障功能的机制之一提供了依据。此外,我们的工作还进一步证明,FAK 是癌症治疗的一个很有前途的潜在靶点,因为 FAK 在调节内皮屏障完整性方面起着关键作用。