Momozane Toru, Fukui Eriko, Funaki Soichiro, Fujii Makoto, Kinehara Yuhei, Ito Emiko, Miyagawa Shigeru, Ohno Yuko, Sawa Yoshiki, Okumura Meinoshin, Shintani Yasushi
Department of General Thoracic Surgery, Osaka University Graduate School of Medicine, Osaka, Japan.
Department of Mathematical Health Science, Osaka University Graduate School of Medicine, Osaka, Japan.
Stem Cells Int. 2019 Dec 27;2019:1271682. doi: 10.1155/2019/1271682. eCollection 2019.
Regenerative medicine has continued to progress for lung biology and lung diseases. Efforts have focused on a variety of different applications for pluripotent stem cells. Several groups have reported successful methods for inducing differentiation of induced pluripotent stem cells (iPSCs) into the airway epithelium such as alveolar epithelium type II (ATII). However, differentiation efficiency varies among reports and improvements are needed. In the present paper, we propose a novel method for elimination of residual undifferentiated murine iPSCs using JQ1, a potent inhibitor of bromodomain (BRD) and extraterminal domain (BET) family proteins, for efficient differentiation into ATII. First, the murine iPSC line 20D-17 was induced to differentiate into ATII over a period of 26 days (days 0-26) using previously reported embryoid body seeding and stepwise differentiation methods. mRNA expressions of differentiation markers including surfactant protein C () were confirmed by real-time reverse transcription-polymerase chain reaction (RT-PCR) results, and 17% of the cells were shown positive for prosurfactant protein C (proSPC) in flow cytometry analysis. Next, those cells were cultured three-dimensionally in Matrigel for an additional 14 days (days 26-40), during which JQ1 was added for 4 days (days 28-32) to remove residual undifferentiated iPSCs. As a result, on day 40, the mRNA expression level of in the three-dimensional culture was maintained at the same level as on day 26 and shown to be further increased by the addition of JQ1, with 39% of the cells found to express proSPC, showing that differentiation efficiency could be further increased. Three-dimensional culture with BRD4 inhibition by JQ1 improved the differentiation induction efficiency to ATII by removing residual undifferentiated murine iPSCs during the differentiation induction process.
再生医学在肺生物学和肺部疾病方面持续取得进展。研究工作聚焦于多能干细胞的多种不同应用。多个研究小组报告了将诱导多能干细胞(iPSC)诱导分化为气道上皮细胞(如II型肺泡上皮细胞(ATII))的成功方法。然而,不同报告中的分化效率各不相同,仍需改进。在本文中,我们提出了一种新方法,即使用溴结构域(BRD)和额外末端结构域(BET)家族蛋白的强效抑制剂JQ1来消除残留的未分化小鼠iPSC,以实现高效分化为ATII。首先,使用先前报道的胚状体接种和逐步分化方法,在26天(第0 - 26天)内诱导小鼠iPSC系20D - 17分化为ATII。实时逆转录 - 聚合酶链反应(RT - PCR)结果证实了包括表面活性蛋白C()在内的分化标志物的mRNA表达,并且在流式细胞术分析中显示17%的细胞表面活性蛋白原C(proSPC)呈阳性。接下来,将这些细胞在基质胶中进行三维培养,持续14天(第26 - 40天),在此期间添加JQ1持续4天(第28 - 32天)以去除残留的未分化iPSC。结果,在第40天,三维培养中 的mRNA表达水平维持在与第26天相同的水平,并且通过添加JQ1显示进一步升高,39%的细胞被发现表达proSPC,表明分化效率可以进一步提高。在分化诱导过程中,通过JQ1抑制BRD4进行三维培养,通过去除残留的未分化小鼠iPSC提高了向ATII的分化诱导效率。