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In vivo manipulation of the extracellular matrix induces vascular regression in a basal chordate

机译:体内操作细胞外基质可诱导基底脉管内血管退化

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摘要

We investigated the physical role of the extracellular matrix (ECM) in vascular homeostasis in the basal chordate Botryllus schlosseri, which has a large, transparent, extracorporeal vascular network encompassing an area >100 cm2. We found that the collagen cross-linking enzyme lysyl oxidase is expressed in all vascular cells and that in vivo inhibition using β-aminopropionitrile (BAPN) caused a rapid, global regression of the entire network, with some vessels regressing >10 mm within 16 h. BAPN treatment changed the ultrastructure of collagen fibers in the vessel basement membrane, and the kinetics of regression were dose dependent. Pharmacological inhibition of both focal adhesion kinase (FAK) and Raf also induced regression, and levels of phosphorylated FAK in vascular cells decreased during BAPN treatment and FAK inhibition but not Raf inhibition, suggesting that physical changes in the vessel ECM are detected via canonical integrin signaling pathways. Regression is driven by apoptosis and extrusion of cells through the basal lamina, which are then engulfed by blood-borne phagocytes. Extrusion and regression occurred in a coordinated manner that maintained vessel integrity, with no loss of barrier function. This suggests the presence of regulatory mechanisms linking physical changes to a homeostatic, tissue-level response.
机译:我们研究了细胞外基质(ECM)在基底脉管梭菌Botryllus schlosseri的血管动态平衡中的物理作用,Botryllus schlosseri具有一个大的,透明的体外血管网络,面积大于100 cm 2 。我们发现胶原蛋白交联酶赖氨酰氧化酶在所有血管细胞中都有表达,并且体内使用β-氨基丙腈(BAPN)的抑制作用导致整个网络快速,整体退化,其中某些血管在16小时内退化> 10 mm 。 BAPN处理改变了血管基底膜中胶原纤维的超微结构,并且回归动力学与剂量有关。局灶性粘附激酶(FAK)和Raf的药理抑制作用也可引起消退,在BAPN治疗期间血管细胞中磷酸化FAK的水平降低,FAK抑制但不是Raf抑制降低,表明通过规范的整合素信号检测到了血管ECM的物理变化途径。退化是由细胞的凋亡和通过基底层的挤出驱动的,然后被血源吞噬细胞吞噬。挤出和消退以协调的方式进行,可维持血管的完整性,而不会丧失屏障功能。这表明调节机制的存在将物理变化与稳态,组织水平的反应联系在一起。

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