National Heart Research Institute Singapore, National Heart Centre Singapore, Singapore, 169609, Singapore.
Department of Endocrinology, Nanjing First Hospital, Nanjing Medical University, Nanjing, 210029, China.
Stem Cell Res Ther. 2022 Jan 10;13(1):13. doi: 10.1186/s13287-021-02687-x.
Prior studies show that signature phenotypes of diabetic human induced pluripotent stem cells derived endothelial cells (dia-hiPSC-ECs) are disrupted glycine homeostasis, increased senescence, impaired mitochondrial function and angiogenic potential as compared with healthy hiPSC-ECs. In the current study, we aimed to assess the role of thymosin β-4 (Tb-4) on endothelial function using dia-hiPSC-ECs as disease model of endothelial dysfunction.
Using dia-hiPSC-ECs as models of endothelial dysfunction, we determined the effect of Tb-4 on cell proliferation, senescence, cyto-protection, protein expression of intercellular adhesion molecule-1 (ICAM-1), secretion of endothelin-1 and MMP-1, mitochondrial membrane potential, and cyto-protection in vitro and angiogenic potential for treatment of ischemic limb disease in a mouse model of type 2 diabetes mellitus (T2DM) in vivo. We found that 600 ng/mL Tb4 significantly up-regulated AKT activity and Bcl-XL protein expression, enhanced dia-hiPSC-EC viability and proliferation, limited senescence, reduced endothelin-1 and MMP-1 secretion, and improved reparative potency of dia-hiPSC-ECs for treatment of ischemic limb disease in mice with T2DM. However, Tb4 had no effect on improving mitochondrial membrane potential and glycine homeostasis and reducing intercellular adhesion molecule-1 protein expression in dia-hiPSC-ECs.
Tb-4 improves endothelial dysfunction through enhancing hiPSC-EC viability, reducing senescence and endothelin-1 production, and improves angiogenic potency in diabetes.
先前的研究表明,与健康的 hiPSC-EC 相比,糖尿病诱导的人多能干细胞衍生的内皮细胞(dia-hiPSC-EC)的特征表型是甘氨酸稳态失调、衰老增加、线粒体功能受损和血管生成潜能受损。在本研究中,我们旨在使用 dia-hiPSC-EC 作为内皮功能障碍的疾病模型来评估胸腺素β-4(Tb-4)对内皮功能的作用。
我们使用 dia-hiPSC-EC 作为内皮功能障碍模型,确定了 Tb-4 对细胞增殖、衰老、细胞保护、细胞间黏附分子-1(ICAM-1)蛋白表达、内皮素-1 和 MMP-1 分泌、线粒体膜电位和细胞保护的影响,以及在体内治疗 2 型糖尿病(T2DM)小鼠缺血肢体疾病的血管生成潜能。我们发现,600ng/mL 的 Tb4 可显著上调 AKT 活性和 Bcl-XL 蛋白表达,增强 dia-hiPSC-EC 的活力和增殖,限制衰老,减少内皮素-1 和 MMP-1 的分泌,并改善 dia-hiPSC-EC 治疗 T2DM 小鼠缺血肢体疾病的修复能力。然而,Tb4 对改善线粒体膜电位和甘氨酸稳态以及减少 dia-hiPSC-EC 中细胞间黏附分子-1 蛋白表达没有影响。
Tb-4 通过增强 hiPSC-EC 的活力、减少衰老和内皮素-1 的产生,改善糖尿病患者的血管生成潜能,从而改善内皮功能障碍。