Department of Molecular Pharmacology, Diabetes Research Center, Institute for Aging Research, Albert Einstein College of Medicine, Bronx, United States.
Elife. 2020 Feb 21;9:e52580. doi: 10.7554/eLife.52580.
We report that mouse hypothalamic stem/progenitor cells produce multiple pancreatic, gastrointestinal and hypothalamic peptides in addition to exosomes. Through cell sorting and selection according to insulin promoter activity, we generated a subpopulation(s) of these cells which formed 3D spherical structure with combined features of hypothalamic neurospheres and pancreatic islets. Through testing streptozotocin-induced pancreatic islet disruption and fatal diabetes, we found that peripheral implantation of these spheres in mice led to remarkable improvements in general health and survival in addition to a moderate antidiabetic effect, and notably these pro-survival versus metabolic effects were dissociable to a significant extent. Mechanistically, secretion of exosomes by these spheres was essential for enhancing survival while production of insulin was important for the antidiabetic effect. In summary, hypothalamic neural stem/progenitor cells comprise subpopulations with multifaceted secretion, and their derived hypothalamic islets can be implanted peripherally to enhance general health and survival together with an antidiabetic benefit.
我们报告称,除了外泌体,小鼠下丘脑干细胞/祖细胞还能产生多种胰腺、胃肠道和下丘脑肽。通过根据胰岛素启动子活性进行细胞分选和选择,我们生成了这些细胞的一个亚群,这些细胞形成了具有下丘脑神经球和胰岛特征的 3D 球形结构。通过测试链脲佐菌素诱导的胰岛破坏和致命性糖尿病,我们发现将这些球体植入小鼠体内可显著改善整体健康和生存,同时具有适度的抗糖尿病作用,值得注意的是,这些生存促进与代谢作用在很大程度上是可分离的。从机制上讲,这些球体分泌的外泌体对于增强生存至关重要,而胰岛素的产生对于抗糖尿病作用很重要。总之,下丘脑神经干细胞/祖细胞包含具有多方面分泌功能的亚群,其衍生的下丘脑胰岛可以被植入外周以增强整体健康和生存,同时具有抗糖尿病益处。