Jara-Avaca Monica, Kempf Henning, Rückert Michael, Robles-Diaz Diana, Franke Annika, de la Roche Jeanne, Fischer Martin, Malan Daniela, Sasse Philipp, Solodenko Wladimir, Dräger Gerald, Kirschning Andreas, Martin Ulrich, Zweigerdt Robert
Leibniz Research Laboratories for Biotechnology and Artificial Organs (LEBAO), Department of Cardiothoracic, Transplantation and Vascular Surgery, REBIRTH-Cluster of Excellence, Hannover Medical School, Carl-Neuberg Straße 1, 30625 Hannover, Germany.
Institute for Neurophysiology, Hannover Medical School, Carl-Neuberg Straße, 30625 Hannover, Germany.
Stem Cell Reports. 2017 Feb 14;8(2):305-317. doi: 10.1016/j.stemcr.2016.12.012. Epub 2017 Jan 12.
Subtype-specific human cardiomyocytes (CMs) are valuable for basic and applied research. Induction of cardiomyogenesis and enrichment of nodal-like CMs was described for mouse pluripotent stem cells (mPSCs) in response to 1-ethyl-2-benzimidazolinone (EBIO), a chemical modulator of small-/intermediate-conductance Ca-activated potassium channels (SKs 1-4). Investigating EBIO in human pluripotent stem cells (PSCs), we have applied three independent differentiation protocols of low to high cardiomyogenic efficiency. Equivalent to mPSCs, timed EBIO supplementation during hPSC differentiation resulted in dose-dependent enrichment of up to 80% CMs, including an increase in nodal- and atrial-like phenotypes. However, our study revealed extensive EBIO-triggered cell loss favoring cardiac progenitor preservation and, subsequently, CMs with shortened action potentials. Proliferative cells were generally more sensitive to EBIO, presumably via an SK-independent mechanism. Together, EBIO did not promote cardiogenic differentiation of PSCs, opposing previous findings, but triggered lineage-selective survival at a cardiac progenitor stage, which we propose as a pharmacological strategy to modulate CM subtype composition.
亚型特异性人类心肌细胞(CMs)对基础研究和应用研究具有重要价值。在小鼠多能干细胞(mPSCs)中,已描述了对1-乙基-2-苯并咪唑啉酮(EBIO)(一种小/中电导钙激活钾通道(SKs 1-4)的化学调节剂)的反应可诱导心肌生成并富集节点样CMs。在人类多能干细胞(PSCs)中研究EBIO时,我们应用了三种从低到高心肌生成效率的独立分化方案。与mPSCs类似,在hPSC分化过程中适时补充EBIO导致CMs剂量依赖性富集,最高可达80%,包括节点样和心房样表型增加。然而,我们的研究表明,EBIO引发广泛的细胞丢失,有利于心脏祖细胞的保留,随后导致动作电位缩短的CMs。增殖细胞通常对EBIO更敏感,可能是通过一种不依赖SK的机制。总之,EBIO并未促进PSCs的心肌分化,这与之前的研究结果相反,但在心脏祖细胞阶段引发了谱系选择性存活,我们将此作为一种调节CM亚型组成的药理学策略。