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Wall Shear Stress Effects on Endothelial-Endothelial and Endothelial-Smooth Muscle Cell Interactions in Tissue Engineered Models of the Vascular Wall

机译:壁剪切应力对血管壁组织工程模型中内皮-内皮和内皮-平滑肌细胞相互作用的影响

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摘要

Vascular functions are affected by wall shear stresses (WSS) applied on the endothelial cells (EC), as well as by the interactions of the EC with the adjacent smooth muscle cells (SMC). The present study was designed to investigate the effects of WSS on the endothelial interactions with its surroundings. For this purpose we developed and constructed two co-culture models of EC and SMC, and compared their response to that of a single monolayer of cultured EC. In one co-culture model the EC were cultured on the SMC, whereas in the other model the EC and SMC were cultured on the opposite sides of a membrane. We studied EC-matrix interactions through focal adhesion kinase morphology, EC-EC interactions through VE-Cadherin expression and morphology, and EC-SMC interactions through the expression of Cx43 and Cx37. In the absence of WSS the SMC presence reduced EC-EC connectivity but produced EC-SMC connections using both connexins. The exposure to WSS produced discontinuity in the EC-EC connections, with a weaker effect in the co-culture models. In the EC monolayer, WSS exposure (12 and 4 dyne/cm2 for 30 min) increased the EC-EC interaction using both connexins. WSS exposure of 12 dyne/cm2 did not affect the EC-SMC interactions, whereas WSS of 4 dyne/cm2 elevated the amount of Cx43 and reduced the amount of Cx37, with a different magnitude between the models. The reduced endothelium connectivity suggests that the presence of SMC reduces the sealing properties of the endothelium, showing a more inflammatory phenotype while the distance between the two cell types reduced their interactions. These results demonstrate that EC-SMC interactions affect EC phenotype and change the EC response to WSS. Furthermore, the interactions formed between the EC and SMC demonstrate that the 1-side model can simulate better the arterioles, while the 2-side model provides better simulation of larger arteries.
机译:血管功能受到施加在内皮细胞(EC)上的壁切应力(WSS)以及EC与相邻平滑肌细胞(SMC)相互作用的影响。本研究旨在调查WSS对内皮及其周围环境相互作用的影响。为此,我们开发并构建了EC和SMC的两种共培养模型,并将它们与单层培养的EC的响应进行了比较。在一种共培养模型中,EC在SMC上培养,而在另一种模型中,EC和SMC在膜的相对侧培养。我们研究了通过粘着斑激酶形态学的EC-基质相互作用,通过VE-钙黏着蛋白表达和形态学的EC-EC相互作用,以及通过Cx43和Cx37的表达研究EC-SMC相互作用。在没有WSS的情况下,SMC的存在会降低EC-EC的连接性,但会同时使用两种连接蛋白产生EC-SMC的连接。暴露于WSS导致EC-EC连接不连续,在共培养模型中的影响较小。在EC单层中,WSS暴露(12和4达因/ cm 2 30分钟)增加了两种连接蛋白的EC-EC相互作用。 WSS暴露量为12达因/ cm 2 不会影响EC-SMC相互作用,而WSS暴露量为4达因/ cm 2 会增加Cx43的量并减少Cx37的量,模型之间的幅度不同。降低的内皮连接性表明SMC的存在降低了内皮的密封性能,表现出更炎性的表型,而两种细胞类型之间的距离降低了它们的相互作用。这些结果表明,EC-SMC相互作用会影响EC表型并改变EC对WSS的反应。此外,EC和SMC之间形成的相互作用表明1侧模型可以更好地模拟小动脉,而2侧模型则可以更好地模拟大动脉。

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