首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Human Fetal Bone Marrow-Derived Mesenchymal Stem Cells Promote the Proliferation and Differentiation of Pancreatic Progenitor Cells and the Engraftment Function of Islet-Like Cell Clusters
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Human Fetal Bone Marrow-Derived Mesenchymal Stem Cells Promote the Proliferation and Differentiation of Pancreatic Progenitor Cells and the Engraftment Function of Islet-Like Cell Clusters

机译:人胎儿骨髓间充质干细胞促进胰腺祖细胞的增殖和分化以及胰岛样细胞团的植入功能

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摘要

Pancreatic progenitor cells (PPCs) are the primary source for all pancreatic cells, including beta-cells, and thus the proliferation and differentiation of PPCs into islet-like cell clusters (ICCs) opens an avenue to providing transplantable islets for diabetic patients. Meanwhile, mesenchymal stem cells (MSCs) can enhance the development and function of different cell types of interest, but their role on PPCs remains unknown. We aimed to explore the mechanism-of-action whereby MSCs induce the in vitro and in vivo PPC/ICC development by means of our established co-culture system of human PPCs with human fetal bone marrow-derived MSCs. We examined the effect of MSC-conditioned medium on PPC proliferation and survival. Meanwhile, we studied the effect of MSC co-culture enhanced PPC/ICC function in vitro and in vivo co-/transplantation. Furthermore, we identified IGF1 as a critical factor responsible for the MSC effects on PPC differentiation and proliferation via IGF1-PI3K/Akt and IGF1-MEK/ERK1/2, respectively. In conclusion, our data indicate that MSCs stimulated the differentiation and proliferation of human PPCs via IGF1 signaling, and more importantly, promoted the in vivo engraftment function of ICCs. Taken together, our protocol may provide a mechanism-driven basis for the proliferation and differentiation of PPCs into clinically transplantable islets.
机译:胰腺祖细胞(PPC)是所有胰腺细胞(包括β细胞)的主要来源,因此PPC的增殖和分化为胰岛样细胞簇(ICC)开启了向糖尿病患者提供可移植胰岛的途径。同时,间充质干细胞(MSCs)可以增强感兴趣的不同细胞类型的发育和功能,但它们在PPC上的作用仍然未知。我们的目的是通过我们建立的人PPC与人胎儿骨髓源性MSC的共培养系统,探索MSC诱导体外和体内PPC / ICC发展的作用机理。我们检查了MSC条件培养基对PPC增殖和存活的影响。同时,我们研究了MSC共培养增强的PPC / ICC功能的体外和体内共移植效果。此外,我们确定IGF1是分别通过IGF1-PI3K / Akt和IGF1-MEK / ERK1 / 2负责MSC对PPC分化和增殖的影响的关键因素。总之,我们的数据表明,MSC通过IGF1信号传导刺激了人PPC的分化和增殖,更重要的是,它促进了ICC的体内移植功能。两者合计,我们的协议可能为PPC增殖和分化为临床可移植胰岛提供机制驱动的基础。

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