首页> 外文会议>2014 40th Annual Northeast Bioengineering Conference >Culture medium effects on vascular smooth muscle cell contractile protein expression and morphology in 2D v. 3D
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Culture medium effects on vascular smooth muscle cell contractile protein expression and morphology in 2D v. 3D

机译:培养基对2D v.3D中血管平滑肌细胞收缩蛋白表达和形态的影响

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Vascular tissue engineering is dependent on achieving both tissue strength and contractility. Proliferative, synthetic smooth muscle cells (SMCs) are necessary for producing strong, engineered vascular tissue; however, in vivo, healthy SMCs are quiescent and contractile. In this study, we evaluated the effects of culturing cells in a high serum, growth medium (GM), compared to a low serum, quiescence medium (QM). QM increases contractile protein expression and decreases proliferation in 2D primary human SMC cultures. We observed an increase in population doubling time within 5 days (from 23±1 to 47±3 hrs; n=6) in 2D human SMC cultures, consistent with a contractile phenotype. After 3 days in QM, smooth muscle α-actin (SMaA) increased 10-fold with similar increases in calponin (compared to SMCs cultured in GM). The cellular response was different when applied to 3D cultures, which were created by human SMC self-assembly into ring-shaped tissue constructs. SMC rings were cultured for 24 hours in GM followed by 13 days in GM or QM. The rings grown in QM were significantly thinner than rings grown in GM (400±30 v 540±90μm; n=5,4) with a visible increase in collagen deposition by picrosirius red staining. There was no detectable difference in SMaA or calponin expression within SMC ring samples cultured in GM or QM. This difference in SMC response indicates the need for other approaches to SMC differentiation in 3D constructs.
机译:血管组织工程依赖于实现组织强度和收缩力。增生,合成的平滑肌细胞(SMCs)是产生坚固的工程血管组织所必需的。但是,在体内,健康的SMC会静止且收缩。在这项研究中,我们评估了高血清生长培养基(GM)与低血清静止培养基(QM)相比培养细胞的效果。在2D初级人类SMC培养物中,QM可增加收缩蛋白的表达并减少其增殖。我们观察到在2D人SMC培养物中5天内(从23±1到47±3小时; n = 6)人口倍增时间增加,这与可收缩的表型一致。在QM中进行3天后,平滑肌α-肌动蛋白(SMaA)的含量增加了10倍,钙蛋白的含量也有类似的增加(与GM培养的SMC相比)。当应用于3D培养物时,细胞反应是不同的,3D培养物是通过人SMC自组装而形成的环形组织构造而产生的。 SMC环在GM中培养24小时,然后在GM或QM中培养13天。在QM中生长的环比在GM中生长的环显着更细(400±30 v 540±90μm; n = 5,4),并且通过皮克西里乌斯红染色可见胶原沉积增加。在GM或QM中培养的SMC环样品中SMaA或钙蛋白的表达没有可检测的差异。 SMC反应的差异表明需要在3D结构中采用其他方法进行SMC分化。

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