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本文引用的文献

1
Induction of human beta-cell proliferation and engraftment using a single G1/S regulatory molecule, cdk6.使用单一 G1/S 调节分子 CDK6 诱导人胰岛β细胞增殖和植入。
Diabetes. 2010 Aug;59(8):1926-36. doi: 10.2337/db09-1776.
2
Context-dependent transformation of adult pancreatic cells by oncogenic K-Ras.致癌性K-Ras对成年胰腺细胞的背景依赖性转化
Cancer Cell. 2009 Nov 6;16(5):379-89. doi: 10.1016/j.ccr.2009.09.027.
3
A new strategy to generate functional insulin-producing cell lines by somatic gene transfer into pancreatic progenitors.一种通过将体细胞基因转移到胰腺祖细胞中来生成功能性胰岛素产生细胞系的新策略。
PLoS One. 2009;4(3):e4731. doi: 10.1371/journal.pone.0004731. Epub 2009 Mar 6.
4
Beta cells within single human islets originate from multiple progenitors.单个人胰岛内的β细胞起源于多个祖细胞。
PLoS One. 2008;3(10):e3559. doi: 10.1371/journal.pone.0003559. Epub 2008 Oct 29.
5
Widespread amyloid deposition in transplanted human pancreatic islets.移植的人胰岛中广泛的淀粉样蛋白沉积。
N Engl J Med. 2008 Aug 28;359(9):977-9. doi: 10.1056/NEJMc0802893.
6
Histone deacetylase inhibitors modify pancreatic cell fate determination and amplify endocrine progenitors.组蛋白去乙酰化酶抑制剂可改变胰腺细胞命运的决定并扩增内分泌祖细胞。
Mol Cell Biol. 2008 Oct;28(20):6373-83. doi: 10.1128/MCB.00413-08. Epub 2008 Aug 18.
7
In vitro proliferation of cells derived from adult human beta-cells revealed by cell-lineage tracing.通过细胞谱系追踪揭示成人人类β细胞来源细胞的体外增殖
Diabetes. 2008 Jun;57(6):1575-83. doi: 10.2337/db07-1283. Epub 2008 Mar 3.
8
Islet amyloid in type 2 diabetes, and the toxic oligomer hypothesis.2型糖尿病中的胰岛淀粉样变与毒性寡聚体假说。
Endocr Rev. 2008 May;29(3):303-16. doi: 10.1210/er.2007-0037. Epub 2008 Feb 26.
9
Pancreatic endoderm derived from human embryonic stem cells generates glucose-responsive insulin-secreting cells in vivo.源自人类胚胎干细胞的胰腺内胚层在体内生成对葡萄糖有反应的胰岛素分泌细胞。
Nat Biotechnol. 2008 Apr;26(4):443-52. doi: 10.1038/nbt1393. Epub 2008 Feb 20.
10
Proliferation of sorted human and rat beta cells.分选后的人及大鼠β细胞的增殖
Diabetologia. 2008 Jan;51(1):91-100. doi: 10.1007/s00125-007-0855-1. Epub 2007 Nov 10.

一种具有葡萄糖诱导胰岛素分泌功能的基因工程人胰腺β细胞系。

A genetically engineered human pancreatic β cell line exhibiting glucose-inducible insulin secretion.

机构信息

Université Pierre et Marie Curie-Paris 6, Biotechnology and Biotherapy Team, Centre de Recherche de l’Institut du Cerveau et de la Moelle épinière (CRICM), UMRS 975, Paris, France.

出版信息

J Clin Invest. 2011 Sep;121(9):3589-97. doi: 10.1172/JCI58447. Epub 2011 Aug 25.

DOI:10.1172/JCI58447
PMID:21865645
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3163974/
Abstract

Despite intense efforts over the past 30 years, human pancreatic β cell lines have not been available. Here, we describe a robust technology for producing a functional human β cell line using targeted oncogenesis in human fetal tissue. Human fetal pancreatic buds were transduced with a lentiviral vector that expressed SV40LT under the control of the insulin promoter. The transduced buds were then grafted into SCID mice so that they could develop into mature pancreatic tissue. Upon differentiation, the newly formed SV40LT-expressing β cells proliferated and formed insulinomas. The resulting β cells were then transduced with human telomerase reverse transcriptase (hTERT), grafted into other SCID mice, and finally expanded in vitro to generate cell lines. One of these cell lines, EndoC-βH1, expressed many β cell-specific markers without any substantial expression of markers of other pancreatic cell types. The cells secreted insulin when stimulated by glucose or other insulin secretagogues, and cell transplantation reversed chemically induced diabetes in mice. These cells represent a unique tool for large-scale drug discovery and provide a preclinical model for cell replacement therapy in diabetes. This technology could be generalized to generate other human cell lines when the cell type-specific promoter is available.

摘要

尽管过去 30 年来已经付出了巨大努力,但仍未能获得人类胰腺β细胞系。在此,我们描述了一种使用靶向致癌作用在人胎儿组织中产生功能性人类β细胞系的强大技术。用人 SV40LT 的启动子控制的慢病毒载体转导人胎儿胰腺芽。然后将转导的芽移植到 SCID 小鼠中,以便它们可以发育成成熟的胰腺组织。分化后,新形成的 SV40LT 表达的β细胞增殖并形成胰岛素瘤。然后将这些β细胞用人类端粒酶逆转录酶(hTERT)转导,移植到其他 SCID 小鼠中,最后在体外扩增以产生细胞系。这些细胞系之一 EndoC-βH1 表达了许多β细胞特异性标志物,而没有其他胰腺细胞类型标志物的大量表达。当受到葡萄糖或其他胰岛素分泌激动剂的刺激时,细胞会分泌胰岛素,细胞移植可逆转小鼠的化学诱导性糖尿病。这些细胞代表了大规模药物发现的独特工具,并为糖尿病细胞替代治疗提供了临床前模型。当存在细胞类型特异性启动子时,该技术可推广用于生成其他人类细胞系。