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本文引用的文献

1
Pancreatic Extracts in the Treatment of Diabetes Mellitus.胰腺提取物治疗糖尿病
Can Med Assoc J. 1922 Mar;12(3):141-6.
2
Small molecules efficiently direct endodermal differentiation of mouse and human embryonic stem cells.小分子可有效引导小鼠和人类胚胎干细胞向内胚层分化。
Cell Stem Cell. 2009 Apr 3;4(4):348-58. doi: 10.1016/j.stem.2009.01.014.
3
Neurogenin3 is sufficient for transdetermination of hepatic progenitor cells into neo-islets in vivo but not transdifferentiation of hepatocytes.神经生成素3足以使肝祖细胞在体内转决定为新胰岛,但不能使肝细胞转分化。
Dev Cell. 2009 Mar;16(3):358-73. doi: 10.1016/j.devcel.2009.01.012.
4
A small molecule that directs differentiation of human ESCs into the pancreatic lineage.一种指导人类胚胎干细胞分化为胰腺谱系的小分子。
Nat Chem Biol. 2009 Apr;5(4):258-65. doi: 10.1038/nchembio.154. Epub 2009 Mar 15.
5
piggyBac transposition reprograms fibroblasts to induced pluripotent stem cells.piggyBac转座将成纤维细胞重编程为诱导多能干细胞。
Nature. 2009 Apr 9;458(7239):766-70. doi: 10.1038/nature07863. Epub 2009 Mar 1.
6
Virus-free induction of pluripotency and subsequent excision of reprogramming factors.无病毒诱导多能性及随后重编程因子的切除
Nature. 2009 Apr 9;458(7239):771-5. doi: 10.1038/nature07864. Epub 2009 Mar 1.
7
Current status of islet cell transplantation.胰岛细胞移植的现状
J Hepatobiliary Pancreat Surg. 2009;16(2):101-12. doi: 10.1007/s00534-008-0021-2. Epub 2008 Dec 26.
8
Biphasic induction of Pdx1 in mouse and human embryonic stem cells can mimic development of pancreatic beta-cells.在小鼠和人类胚胎干细胞中对Pdx1进行双相诱导可模拟胰腺β细胞的发育。
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9
Carbonic anhydrase II-positive pancreatic cells are progenitors for both endocrine and exocrine pancreas after birth.碳酸酐酶II阳性的胰腺细胞是出生后内分泌和外分泌胰腺的祖细胞。
Proc Natl Acad Sci U S A. 2008 Dec 16;105(50):19915-9. doi: 10.1073/pnas.0805803105. Epub 2008 Dec 3.
10
Developmental biology of the pancreas: a comprehensive review.胰腺的发育生物学:全面综述
Dev Biol. 2009 Feb 1;326(1):4-35. doi: 10.1016/j.ydbio.2008.10.024. Epub 2008 Oct 31.

干细胞向胰腺β细胞的转化:糖尿病细胞治疗的新来源

Stem cells to pancreatic beta-cells: new sources for diabetes cell therapy.

作者信息

Guo Tingxia, Hebrok Matthias

机构信息

Department of Medicine, Diabetes Center, University of California, San Francisco, San Francisco, California 94143, USA.

出版信息

Endocr Rev. 2009 May;30(3):214-27. doi: 10.1210/er.2009-0004. Epub 2009 Apr 23.

DOI:10.1210/er.2009-0004
PMID:19389995
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2726841/
Abstract

The number of patients worldwide suffering from the chronic disease diabetes mellitus is growing at an alarming rate. Insulin-secreting beta-cells in the islet of Langerhans are damaged to different extents in diabetic patients, either through an autoimmune reaction present in type 1 diabetic patients or through inherent changes within beta-cells that affect their function in patients suffering from type 2 diabetes. Cell replacement strategies via islet transplantation offer potential therapeutic options for diabetic patients. However, the discrepancy between the limited number of donor islets and the high number of patients who could benefit from such a treatment reflects the dire need for renewable sources of high-quality beta-cells. Human embryonic stem cells (hESCs) are capable of self-renewal and can differentiate into components of all three germ layers, including all pancreatic lineages. The ability to differentiate hESCs into beta-cells highlights a promising strategy to meet the shortage of beta-cells. Here, we review the different approaches that have been used to direct differentiation of hESCs into pancreatic and beta-cells. We will focus on recent progress in the understanding of signaling pathways and transcription factors during embryonic pancreas development and how this knowledge has helped to improve the methodology for high-efficiency beta-cell differentiation in vitro.

摘要

全球患有慢性疾病糖尿病的患者数量正以惊人的速度增长。在糖尿病患者中,胰岛中分泌胰岛素的β细胞会受到不同程度的损害,这在1型糖尿病患者中是通过自身免疫反应造成的,而在2型糖尿病患者中则是通过β细胞内部影响其功能的固有变化造成的。通过胰岛移植进行细胞替代策略为糖尿病患者提供了潜在的治疗选择。然而,供体胰岛数量有限与可从这种治疗中受益的大量患者之间的差距,反映出对可再生的高质量β细胞来源的迫切需求。人类胚胎干细胞(hESCs)能够自我更新,并可分化为所有三个胚层的组成部分,包括所有胰腺谱系。将hESCs分化为β细胞的能力凸显了一种满足β细胞短缺问题的有前景的策略。在此,我们综述了已用于将hESCs定向分化为胰腺细胞和β细胞的不同方法。我们将重点关注在胚胎胰腺发育过程中对信号通路和转录因子的理解方面的最新进展,以及这些知识如何有助于改进体外高效β细胞分化的方法。