Wei Yuanchen, Chen Feng, Zhang Tao, Chen Deyong, Jia Xin, Wang Junbo, Guo Wei, Chen Jian
State Key Laboratory of Transducer Technology, Institute of Electronics, Chinese Academy of Sciences, Beijing, P.R. China, 100190.
Department of Vascular Surgery, Clinical Division of Surgery, Chinese PLA General Hospital, Beijing, P.R. China, 100853.
Sci Rep. 2015 Sep 14;5:14049. doi: 10.1038/srep14049.
This paper presents a tubing-free microfluidic wound healing assay to quantify the migration of vascular smooth muscle cells (VSMCs), where gravity was used to generate a laminar flow within microfluidic channels, enabling cell seeding, culture, and wound generation. As the first systemic study to quantify the migration of VSMCs within microfluidic environments, the effects of channel geometries, surface modifications and chemokines on cellular migration were investigated, revealing that 1) height of the micro channels had a significant impact on cell migration; 2) the surface coating of collagen induced more migration of VSMCs than fibronectin coated surfaces and 3) platelet derived growth factor resulted in maximal cell migration compared to tumor necrosis factor alpha and fetal bovine serum. Furthermore, migrations of five types of VSMCs (e.g., the human vascular smooth muscle cell line, two types of primary vascular smooth cells, and VSMCs isolated from two human samples) were quantified, finding that VSMCs from the cell line and human samples demonstrated comparable migration distances, which were significantly lower than the migration distances of two primary cell types. As a platform technology, this wound healing assay may function as a new model to study migration of VSMCs within microfluidic environments.
本文介绍了一种无管道微流控伤口愈合检测方法,用于量化血管平滑肌细胞(VSMC)的迁移,该方法利用重力在微流控通道内产生层流,实现细胞接种、培养和伤口生成。作为量化VSMC在微流控环境中迁移的第一项系统性研究,研究了通道几何形状、表面修饰和趋化因子对细胞迁移的影响,结果表明:1)微通道高度对细胞迁移有显著影响;2)与纤连蛋白包被的表面相比,胶原蛋白表面涂层诱导更多的VSMC迁移;3)与肿瘤坏死因子α和胎牛血清相比,血小板衍生生长因子导致最大程度的细胞迁移。此外,还对五种类型的VSMC(如人血管平滑肌细胞系、两种原代血管平滑肌细胞以及从两个人类样本中分离的VSMC)的迁移进行了量化,发现细胞系和人类样本中的VSMC表现出相当的迁移距离,显著低于两种原代细胞类型的迁移距离。作为一种平台技术,这种伤口愈合检测方法可作为研究VSMC在微流控环境中迁移的新模型。