Liu Feng, Long Dandan, Huang Wenjun, Peng Wanling, Lan Huan, Zhou Yafei, Dang Xitong, Zhou Rui
National Regional Children's Medical Center (Northwest), Key Laboratory of Precision Medicine to Pediatric Diseases of Shaanxi Province, Xi'an Key Laboratory of Children's Health and Diseases, Shaanxi Institute for Pediatric Diseases, Xi'an Children's Hos.
The Key Laboratory of Medical Electrophysiology of Ministry of Education and Medical Electrophysiological Key Laboratory of Sichuan Province, Collaborative Innovation Center for Prevention and Treatme.
Int J Stem Cells. 2022 Aug 30;15(3):247-257. doi: 10.15283/ijsc21148. Epub 2022 Feb 28.
Although human-induced pluripotent stem cells (hiPSC) can be efficiently differentiated into cardiomyocytes (CMs), the heterogeneity of the hiPSC-CMs hampers their applications in research and regenerative medicine. Retinoic acid (RA)-mediated signaling pathway has been proved indispensable in cardiac development and differentiation of hiPSC toward atrial CMs. This study was aimed to test whether RA signaling pathway can be manipulated to direct the differentiation into sinoatrial node (SAN) CMs.
Using the well-characterized GiWi protocol that cardiomyocytes are generated from hiPSC via temporal modulation of Wnt signaling pathway by small molecules, RA signaling pathway was manipulated during the differentiation of hiPSC-CMs on day 5 post-differentiation, a crucial time point equivalent to the transition from cardiac mesoderm to cardiac progenitor cells in cardiac development. The resultant CMs were characterized at mRNA, protein and electrophysiology levels by a combination of qPCR, immunofluorescence, flow cytometry, and whole-cell patch clamp. The results showed that activation of the RA signaling pathway biased the differentiation of atrial CMs, whereas inhibition of the signaling pathway biased the differentiation of sinoatrial node-like cells (SANLCs).
Our study not only provides a novel and simple strategy to enrich SANLCs but also improves our understanding of the importance of RA signaling in the differentiation of hiPSC-CMs.
尽管人类诱导多能干细胞(hiPSC)能够高效分化为心肌细胞(CM),但hiPSC-CM的异质性阻碍了它们在研究和再生医学中的应用。维甲酸(RA)介导的信号通路已被证明在心脏发育以及hiPSC向心房CM的分化过程中不可或缺。本研究旨在测试是否可以通过操控RA信号通路来引导分化为窦房结(SAN)CM。
利用已充分表征的GiWi方案,即通过小分子对Wnt信号通路进行时间调控,使hiPSC生成心肌细胞,在分化后第5天(这是一个关键时间点,相当于心脏发育过程中从心脏中胚层向心脏祖细胞的转变)hiPSC-CM分化过程中操控RA信号通路。通过qPCR、免疫荧光、流式细胞术和全细胞膜片钳技术相结合的方法,在mRNA、蛋白质和电生理水平对所得的CM进行表征。结果表明,激活RA信号通路偏向于心房CM的分化,而抑制该信号通路则偏向于窦房结样细胞(SANLC)的分化。
我们的研究不仅提供了一种新颖且简单的策略来富集SANLC,还增进了我们对RA信号在hiPSC-CM分化中重要性的理解。