Department of Bioengineering and Robotics, Graduate School of Engineering, Tohoku University, Aoba, Sendai, Japan.
Ann Biomed Eng. 2011 Nov;39(11):2750-8. doi: 10.1007/s10439-011-0372-8. Epub 2011 Aug 3.
A coculture of endothelial cells (ECs) and smooth muscle cells (SMCs), which mimics cellular interactions appearing in vivo, has been performed in studies on the relationship between atherogenesis and fluid shear stress conditions. Although healthy arteries in vivo consist of contractile phenotype SMCs, cultured cells used in many studies normally exhibit a synthetic phenotype. Here, we developed an EC-SMC coculture model to investigate the interactions between ECs and contractile SMCs, and examined the effect of shear stress applied to ECs on SMC phenotypes. Cultured human umbilical artery SMCs were differentiated into contractile states by arresting cell growth using a serum-free medium. Western blotting confirmed that SMC expression of contractile protein markers, α-smooth muscle actin (SMA) and calponin, increased to levels similar to those observed in arterial cells. After coculturing contractile SMCs with ECs separated by a collagen gel layer, the expression of α-SMA decreased under static conditions, indicating that the SMC phenotype tended to be synthetic by coculturing with ECs, but shear stress applied to cocultured ECs maintained the level of α-SMA expression in SMCs. The coculture model constructed in the present study will be a useful tool to investigate interactions between ECs and contractile SMCs under shear conditions.
已将内皮细胞 (ECs) 和平滑肌细胞 (SMCs) 共培养,以模拟体内出现的细胞相互作用,用于研究动脉粥样硬化形成与流体切应力条件之间的关系。尽管体内健康的动脉包含收缩表型的 SMCs,但许多研究中使用的培养细胞通常表现出合成表型。在这里,我们开发了一种 EC-SMC 共培养模型,以研究 ECs 与收缩性 SMCs 之间的相互作用,并研究施加于 ECs 的切应力对 SMC 表型的影响。使用无血清培养基抑制细胞生长,将培养的人脐动脉 SMCs 分化为收缩状态。Western blot 证实 SMC 收缩蛋白标志物 α-平滑肌肌动蛋白 (SMA) 和钙调蛋白的表达增加到与动脉细胞相似的水平。将收缩性 SMCs 与通过胶原凝胶层分隔的 ECs 共培养后,在静态条件下 α-SMA 的表达减少,表明与 ECs 共培养时 SMC 表型趋于合成,但施加于共培养 ECs 的切应力维持了 SMCs 中 α-SMA 表达水平。本研究构建的共培养模型将成为研究剪切条件下 ECs 和收缩性 SMCs 之间相互作用的有用工具。