Texas Heart Institute, 6770 Bertner Avenue, MC 1-135, Houston, TX 77030, USA.
Institute of Chemistry, Federal University of Rio de Janeiro, Rio de Janeiro, RJ 21941-909, Brazil.
Biomater Sci. 2021 May 18;9(10):3737-3749. doi: 10.1039/d0bm01686a.
New robust and reproducible differentiation approaches are needed to generate induced pluripotent stem cell (iPSC)-derived cardiomyocytes of specific subtypes in predictable quantities for tissue-specific disease modeling, tissue engineering, and eventual clinical translation. Here, we assessed whether powdered decellularized extracellular matrix (dECM) particles contained chamber-specific cues that could direct the cardiac differentiation of human iPSCs toward an atrial phenotype. Human hearts were dissected and the left ventricle (LV) and left atria (LA) were isolated, minced, and decellularized using an adapted submersion decellularization technique to generate chamber-specific powdered dECM. Comparative proteomic analyses showed chamber-specific dECM segregation, with atrial- and ventricle-specific proteins uniquely present in powdered dECM-hA and dECM-hV, respectively. Cell populations differentiated in the presence of dECM-hA showed upregulated atrial molecular markers and a two-fold increase in the number of atrial-like cells as compared with cells differentiated with dECM-hV or no dECM (control). Finally, electrophysiological data showed an increase in action potentials characteristic of atrial-like cells in the dECM-hA group. These findings support the hypothesis that dECM powder derived from human atria retained endogenous cues to drive cardiac differentiation toward an atrial fate.
需要新的稳健且可重现的分化方法,以便以可预测的数量生成特定亚型的诱导多能干细胞(iPSC)衍生的心肌细胞,用于组织特异性疾病建模、组织工程和最终的临床转化。在这里,我们评估了粉末状去细胞细胞外基质(dECM)颗粒是否包含腔室特异性线索,可以指导人 iPSC 的心脏分化向心房表型方向发展。将人心解剖并分离左心室(LV)和左心房(LA),使用改良的浸没去细胞化技术将其切碎并去细胞化,以生成腔室特异性粉末状 dECM。比较蛋白质组学分析显示腔室特异性 dECM 分离,粉末状 dECM-hA 和 dECM-hV 中分别存在心房和心室特异性蛋白。与用 dECM-hV 或无 dECM(对照)分化的细胞相比,在存在 dECM-hA 的情况下分化的细胞群显示出上调的心房分子标志物,并且心房样细胞的数量增加了两倍。最后,电生理数据显示 dECM-hA 组中的动作电位增加,这是心房样细胞的特征。这些发现支持这样的假设,即源自人心房的 dECM 粉末保留了内源性线索,可以驱动心脏分化向心房命运发展。