Kusuma Sravanti, Smith Quinton, Facklam Amanda, Gerecht Sharon
Department of Chemical and Biomolecular Engineering, Johns Hopkins Physical Sciences, Oncology Center and Institute for NanoBioTechnology, Baltimore, MD, USA.
Department of Biomedical Engineering, Johns Hopkins University, Baltimore, MD, USA.
J Tissue Eng Regen Med. 2017 Mar;11(3):855-861. doi: 10.1002/term.1985. Epub 2015 Jan 30.
The multifaceted extracellular milieu presents biochemical and biophysical stimuli that influence stem cell differentiation. Two-dimensional (2D) micropatterned substrates allow the presentation of these cues in spatially defined geometries that have been demonstrated to guide stem cell fate decisions. Leveraging stem cells to reconstruct microvasculature, made up of an inner lining of endothelial cells (ECs) supported by pericytes, is critical to tissue-engineering advances; thus, methods to improve endothelial differentiation efficiency are vital to these efforts. In this study, we examine the hypothesis that the diameter of micropatterned islands influences endothelial differentiation from human induced pluripotent stem cells (hiPSCs). Comparing island diameters of 80, 140, 225 and 500 µm, we found that co-cultures of control ECs and pericytes did not yield variable ratios of cell types; however, when hiPSCs were differentiated toward a bicellular population of ECs and pericytes on these varying micropattern feature sizes, we found that smaller islands promoted EC differentiation efficiency, yielding a derived population composed of 70% ECs, which exhibited a greater sprouting propensity. Differentiation on the largest feature size exhibited a smaller EC yield, similar to that on non-patterned substrates. Taken together, these data demonstrate that micropatterned islands of varying diameters can be used to modulate EC differentiation efficiency. Copyright © 2015 John Wiley & Sons, Ltd.
多层面的细胞外环境呈现出影响干细胞分化的生化和生物物理刺激。二维(2D)微图案化基质能够以空间定义的几何形状呈现这些信号,已证明这些几何形状可引导干细胞的命运决定。利用干细胞重建由周细胞支持的内皮细胞(ECs)内衬组成的微血管,对组织工程进展至关重要;因此,提高内皮细胞分化效率的方法对这些努力至关重要。在本研究中,我们检验了这样一个假设,即微图案化岛屿的直径会影响人诱导多能干细胞(hiPSCs)向内皮细胞的分化。比较80、140、225和500 µm的岛屿直径,我们发现对照ECs和周细胞的共培养未产生不同比例的细胞类型;然而,当hiPSCs在这些不同的微图案特征尺寸上分化为ECs和周细胞的双细胞群体时,我们发现较小的岛屿促进了EC分化效率,产生了一个由70%的ECs组成的衍生群体,其表现出更大的发芽倾向。在最大特征尺寸上的分化显示出较低的EC产量,类似于在无图案基质上的情况。综上所述,这些数据表明,不同直径的微图案化岛屿可用于调节EC分化效率。版权所有© 2015约翰威立父子有限公司。