Department of Regenerative Medicine, Research Institute, National Center for Global Health and Medicine, Tokyo, Japan.
PLoS One. 2021 Jan 11;16(1):e0245204. doi: 10.1371/journal.pone.0245204. eCollection 2021.
Diabetes mellitus is caused by breakdown of blood glucose homeostasis, which is maintained by an exquisite balance between insulin and glucagon produced respectively by pancreatic beta cells and alpha cells. However, little is known about the mechanism of inducing glucagon secretion from human alpha cells. Many methods for generating pancreatic beta cells from human pluripotent stem cells (hPSCs) have been reported, but only two papers have reported generation of pancreatic alpha cells from hPSCs. Because NKX6.1 has been suggested as a very important gene for determining cell fate between pancreatic beta and alpha cells, we searched for the factors affecting expression of NKX6.1 in our beta cell differentiation protocols. We found that BMP antagonism and activation of retinoic acid signaling at stage 2 (from definitive endoderm to primitive gut tube) effectively suppressed NKX6.1 expression at later stages. Using two different hPSCs lines, treatment with BMP signaling inhibitor (LDN193189) and retinoic acid agonist (EC23) at Stage 2 reduced NKX6.1 expression and allowed differentiation of almost all cells into pancreatic alpha cells in vivo after transplantation under a kidney capsule. Our study demonstrated that the cell fate of pancreatic cells can be controlled by adjusting the expression level of NKX6.1 with proper timing of BMP antagonism and activation of retinoic acid signaling during the pancreatic differentiation process. Our method is useful for efficient induction of pancreatic alpha cells from hPSCs.
糖尿病是由血糖稳态的破坏引起的,这是由胰腺β细胞和α细胞分别产生的胰岛素和胰高血糖素之间的精细平衡维持的。然而,人们对诱导人α细胞分泌胰高血糖素的机制知之甚少。已经报道了许多从人多能干细胞 (hPSC) 生成胰腺β细胞的方法,但只有两篇论文报道了从 hPSC 生成胰腺α细胞。由于 NKX6.1 被认为是决定胰腺β和α细胞之间细胞命运的非常重要的基因,我们在我们的β细胞分化方案中寻找影响 NKX6.1 表达的因素。我们发现 BMP 拮抗作用和阶段 2(从确定的内胚层到原始肠管)中维甲酸信号的激活有效地抑制了后期 NKX6.1 的表达。使用两种不同的 hPSC 系,在阶段 2 用 BMP 信号抑制剂 (LDN193189) 和维甲酸激动剂 (EC23) 处理可降低 NKX6.1 的表达,并允许分化后的几乎所有细胞在移植到肾囊下后体内分化为胰腺α细胞。我们的研究表明,通过在胰腺分化过程中适当的时间点调节 NKX6.1 的表达水平,可以控制胰腺细胞的命运。我们的方法可有效诱导 hPSC 分化为胰腺α细胞。