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本文引用的文献

1
Charting cellular identity during human in vitro β-cell differentiation.绘制人类体外 β 细胞分化过程中的细胞身份图谱。
Nature. 2019 May;569(7756):368-373. doi: 10.1038/s41586-019-1168-5. Epub 2019 May 8.
2
Targeted Elimination of Senescent Beta Cells Prevents Type 1 Diabetes.靶向清除衰老的β细胞可预防 1 型糖尿病。
Cell Metab. 2019 May 7;29(5):1045-1060.e10. doi: 10.1016/j.cmet.2019.01.021. Epub 2019 Feb 21.
3
Recapitulating endocrine cell clustering in culture promotes maturation of human stem-cell-derived β cells.在培养中重现内分泌细胞的簇集促进了人干细胞衍生的β细胞的成熟。
Nat Cell Biol. 2019 Feb;21(2):263-274. doi: 10.1038/s41556-018-0271-4. Epub 2019 Feb 1.
4
Acquisition of Dynamic Function in Human Stem Cell-Derived β Cells.人干细胞衍生β细胞中动态功能的获得。
Stem Cell Reports. 2019 Feb 12;12(2):351-365. doi: 10.1016/j.stemcr.2018.12.012. Epub 2019 Jan 17.
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The Difference δ-Cells Make in Glucose Control.δ 细胞在葡萄糖控制中的作用差异。
Physiology (Bethesda). 2018 Nov 1;33(6):403-411. doi: 10.1152/physiol.00029.2018.
6
Evidence for Loss in Identity, De-Differentiation, and -Differentiation of Islet β-Cells in Type 2 Diabetes.2型糖尿病中胰岛β细胞身份丧失、去分化和再分化的证据。
Front Genet. 2017 Mar 29;8:35. doi: 10.3389/fgene.2017.00035. eCollection 2017.
7
Virgin Beta Cells Persist throughout Life at a Neogenic Niche within Pancreatic Islets.原始β细胞在胰岛内的新生微环境中终生存在。
Cell Metab. 2017 Apr 4;25(4):911-926.e6. doi: 10.1016/j.cmet.2017.03.017.
8
All mixed up: defining roles for β-cell subtypes in mature islets.一团乱麻:界定成熟胰岛中β细胞亚型的作用
Genes Dev. 2017 Feb 1;31(3):228-240. doi: 10.1101/gad.294389.116.
9
Unexpected effects of the MIP-CreER transgene and tamoxifen on β-cell growth in C57Bl6/J male mice.MIP-CreER转基因和他莫昔芬对C57Bl6/J雄性小鼠β细胞生长的意外影响。
Physiol Rep. 2016 Sep;4(18). doi: 10.14814/phy2.12863.
10
Aldehyde dehydrogenase 1a3 defines a subset of failing pancreatic β cells in diabetic mice.醛脱氢酶 1a3 定义了糖尿病小鼠衰竭的胰岛 β 细胞的一个亚群。
Nat Commun. 2016 Aug 30;7:12631. doi: 10.1038/ncomms12631.

尿皮质素 3 的基因缺失不会阻止β细胞的功能成熟。

Genetic deletion of Urocortin 3 does not prevent functional maturation of beta cells.

机构信息

Department of Neurobiology, Physiology & Behavior, College of Biological Sciences, University of California, Davis, California, USA.

Department of Physiology and Membrane Biology, School of Medicine, University of California, Davis, California, USA.

出版信息

J Endocrinol. 2020 Jul;246(1):69-78. doi: 10.1530/JOE-19-0535.

DOI:10.1530/JOE-19-0535
PMID:32369775
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7286360/
Abstract

There is great interest in generating functionally mature beta cells from stem cells, as loss of functional beta cell mass contributes to the pathophysiology of diabetes. Identifying markers of beta cell maturity is therefore very helpful for distinguishing stem cells that have been successfully differentiated into fully mature beta cells from stem cells that did not. Urocortin 3 (UCN3) is a peptide hormone whose expression is associated with the acquisition of functional maturity in beta cells. The onset of its expression occurs after other beta cell maturity markers are already expressed and its loss marks the beginning of beta cell dedifferentiation. Its expression pattern is therefore tightly correlated with beta cell maturity. While this makes UCN3 an excellent marker of beta cell maturity, it is not established whether UCN3 is required for beta cell maturation. Here, we compared gene expression and function of beta cells from Ucn3-null mice relative to WT mice to determine whether beta cells are functionally mature in the absence of UCN3. Our results show that genetic deletion of Ucn3 does not cause a loss of beta cell maturity or an increase in beta cell dedifferentiation. Furthermore, virgin beta cells, first identified as insulin-expressing, UCN3-negative beta cells, can still be detected at the islet periphery in Ucn3-null mice. Beta cells from Ucn3-null mice also exhibit normal calcium response when exposed to high glucose. Collectively, these observations indicate that UCN3 is an excellent mature beta cell marker that is nevertheless not necessary for beta cell maturation.

摘要

人们对从干细胞中生成功能成熟的β细胞非常感兴趣,因为功能性β细胞质量的丧失是导致糖尿病病理生理学的原因之一。因此,识别β细胞成熟的标志物对于区分已经成功分化为完全成熟β细胞的干细胞和未分化的干细胞非常有帮助。脑肠肽 UCN3 是一种肽类激素,其表达与β细胞获得功能成熟有关。它的表达起始于其他β细胞成熟标志物已经表达之后,其缺失标志着β细胞去分化的开始。因此,其表达模式与β细胞成熟密切相关。虽然这使得 UCN3 成为β细胞成熟的极佳标志物,但尚不清楚 UCN3 是否是β细胞成熟所必需的。在这里,我们比较了 Ucn3 敲除小鼠和 WT 小鼠的β细胞的基因表达和功能,以确定在缺乏 UCN3 的情况下β细胞是否具有功能成熟性。我们的结果表明,Ucn3 的基因缺失不会导致β细胞成熟的丧失或β细胞去分化的增加。此外,在 Ucn3 敲除小鼠中,仍可在胰岛周边检测到最初被鉴定为胰岛素表达、UCN3 阴性的β细胞。Ucn3 敲除小鼠的β细胞在暴露于高葡萄糖时也表现出正常的钙反应。总之,这些观察结果表明,UCN3 是一种出色的成熟β细胞标志物,但对于β细胞成熟并非必需。