Department of Chemical and Biomolecular Engineering, University of Nebraska-Lincoln, Nebraska, USA.
Biomater Sci. 2018 Dec 18;7(1):347-361. doi: 10.1039/c8bm01128a.
Vascular smooth muscle cells (VSMCs) are of great value and are needed in large quantities for tissue engineering, drug screening, disease modeling and cell-based therapies. However, getting high quantity VSMCs remains a challenge. Here, we report a method for the scalable manufacturing of VSMCs from human pluripotent stem cells (hPSCs). hPSCs are expanded and differentiated into VSMCs in a three dimensional (3D) thermoreversible hydrogel. The hydrogel not only acts as a 3D scaffold for cells to grow, but also protects cells from hydrodynamic stresses in the culture vessel and prevents cells from excessive aggregation. Together, the hydrogel creates a cell-friendly microenvironment, leading to high culture efficiency. We show that VSMCs can be generated in 10 days with high viability (>90%), high purity (>80%) and high yield (∼2.0 × 107 cells per mL hydrogel) in the hydrogel scaffold. The generated VSMCs have normal functions. Genome-wide gene expression analysis shows VSMCs made in the hydrogel (i.e. 3D-VSMCs) have higher expression of genes related to vasculature development and glycolysis compared to VSMCs made in the conventional 2D cultures (i.e. 2D-VSMCs), while 2D-VSMCs have higher expression of genes related to cell proliferation. This simple, defined and efficient method is scalable for manufacturing hPSC-VSMCs for various biomedical applications.
血管平滑肌细胞(VSMCs)在组织工程、药物筛选、疾病建模和基于细胞的治疗中具有重要价值,并且需要大量的 VSMCs。然而,获得大量的 VSMCs 仍然是一个挑战。在这里,我们报告了一种从人多能干细胞(hPSCs)中可扩展制造 VSMCs 的方法。hPSCs 在三维(3D)热可逆水凝胶中被扩增并分化为 VSMCs。水凝胶不仅充当细胞生长的 3D 支架,还可以保护细胞免受培养容器中流体动力应力的影响,并防止细胞过度聚集。水凝胶共同创造了一个有利于细胞的微环境,从而提高了培养效率。我们表明,VSMCs 可以在水凝胶支架中以高活力(>90%)、高纯度(>80%)和高产率(~2.0×107 个细胞/mL 水凝胶)在 10 天内生成。生成的 VSMCs 具有正常功能。全基因组基因表达分析表明,与在传统二维培养(即 2D-VSMCs)中生成的 VSMCs 相比,在水凝胶中生成的 VSMCs(即 3D-VSMCs)中与血管发育和糖酵解相关的基因表达更高,而 2D-VSMCs 中与细胞增殖相关的基因表达更高。这种简单、定义明确和高效的方法可用于制造用于各种生物医学应用的 hPSC-VSMCs。