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使用动脉壁共培养模型研究内皮细胞对流体剪切应力的反应。

The response of endothelial cells to fluid shear stress using a co-culture model of the arterial wall.

作者信息

Imberti B, Seliktar D, Nerem R M, Remuzzi A

机构信息

Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, GA 30332-0363, USA.

出版信息

Endothelium. 2002;9(1):11-23. doi: 10.1080/10623320210714.

Abstract

An endothelial cell (EC) smooth muscle cell (SMC) co-culture model of the arterial wall was used to study the effect of fluid shear stress on EC behavior. This model, in addition to being a more realistic tissue analogue, is a valuable research tool for studying the effects of mechanical stimulation upon the behavior of both SMCs and ECs. In the present study, a 10% cyclic strain was used to alter the characteristics of an SMC-seeded collagen gel. This form of strain preconditioning resulted in a rearrangement of the vessel wall that yielded circumferentially oriented cells and collagen fibrils. The preconditioned collagen gel was subsequently seeded with ECs and exposed to fluid-induced shear stress (10 dynes/cm2) for 48 hr. In the absence of flow, ECs seeded on slab constructs were oriented with the underlying collagen fibrils. Sheared constructs exhibited ECs oriented in the flow direction. Shear stress also affected EC proliferation, reducing the total number of dividing ECs by as much as 48 percent compared to unsheared constructs. The shear-induced reduction in proliferation was further enhanced when constructs were first strain-preconditioned (64% reduction). Moreover, conditioned media from shear stress experiments inhibited proliferation of ECs seeded on tissue culture plastic. These results suggest that EC response to fluid shear stress in a collagen co-culture model is influenced by the underlying substrate, and one that in this study is modified by strain preconditioning.

摘要

采用动脉壁内皮细胞(EC)和平滑肌细胞(SMC)共培养模型来研究流体剪切应力对EC行为的影响。该模型不仅是更逼真的组织类似物,也是研究机械刺激对SMC和EC行为影响的宝贵研究工具。在本研究中,使用10%的循环应变来改变接种SMC的胶原凝胶的特性。这种形式的应变预处理导致血管壁重排,产生周向排列的细胞和胶原纤维。随后将预处理过的胶原凝胶接种EC,并使其暴露于流体诱导的剪切应力(10达因/平方厘米)下48小时。在无流动情况下,接种在平板构建物上的EC与下层胶原纤维方向一致。经剪切处理的构建物中,EC呈流动方向排列。剪切应力还影响EC增殖,与未剪切的构建物相比,使分裂EC的总数减少多达48%。当构建物首先进行应变预处理时,剪切诱导的增殖减少进一步增强(减少64%)。此外,剪切应力实验的条件培养基抑制接种在组织培养塑料上的EC增殖。这些结果表明,在胶原共培养模型中,EC对流体剪切应力的反应受下层基质影响,且在本研究中这种影响因应变预处理而改变。

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