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骨髓来源细胞移植促进糖尿病小鼠胰岛修复。

Transplantation of bone marrow derived cells promotes pancreatic islet repair in diabetic mice.

作者信息

Gao Xiaodong, Song Lujun, Shen Kuntang, Wang Hongshan, Niu Weixin, Qin Xinyu

机构信息

Department of General Surgery, Center Laboratory of Surgery, Zhongshan Hospital, Shanghai Medical School, Fudan University, 180, Fenglin Road, Shanghai 200032, People's Republic of China.

出版信息

Biochem Biophys Res Commun. 2008 Jun 20;371(1):132-7. doi: 10.1016/j.bbrc.2008.04.033. Epub 2008 Apr 15.

Abstract

The transplantation of bone marrow (BM) derived cells to initiate pancreatic regeneration is an attractive but as-yet unrealized strategy. Presently, BM derived cells from green fluorescent protein transgenic mice were transplanted into diabetic mice. Repair of diabetic islets was evidenced by reduction of hyperglycemia, increase in number of islets, and altered pancreatic histology. Cells in the pancreata of recipient mice co-expressed BrdU and insulin. Double staining revealed beta cells were in the process of proliferation. BrdU(+) insulin(-) PDX-1(+) cells, Ngn3(+) cells and insulin(+) glucagon(+) cells, which showed stem cells, were also found during beta-cell regeneration. The majority of transplanted cells were mobilized to the islet and ductal regions. In recipient pancreas, transplanted cells simultaneously expressed CD34 but did not express insulin, PDX-1, Ngn3, Nkx2.2, Nkx6.1, Pax4, Pax6, and CD45. It is concluded that BM derived cells especially CD34(+) cells can promote repair of pancreatic islets. Moreover, both proliferation of beta cells and differentiation of pancreatic stem cells contribute to the regeneration of beta cells.

摘要

移植骨髓来源的细胞以启动胰腺再生是一种有吸引力但尚未实现的策略。目前,将来自绿色荧光蛋白转基因小鼠的骨髓来源细胞移植到糖尿病小鼠体内。糖尿病胰岛的修复表现为高血糖降低、胰岛数量增加以及胰腺组织学改变。受体小鼠胰腺中的细胞同时表达BrdU和胰岛素。双重染色显示β细胞处于增殖过程中。在β细胞再生过程中还发现了BrdU(+)胰岛素(-)PDX-1(+)细胞、Ngn3(+)细胞以及胰岛素(+)胰高血糖素(+)细胞,这些细胞表现出干细胞特征。大多数移植细胞被动员到胰岛和导管区域。在受体胰腺中,移植细胞同时表达CD34,但不表达胰岛素、PDX-1、Ngn3、Nkx2.2、Nkx6.1、Pax4、Pax6和CD45。结论是骨髓来源的细胞尤其是CD34(+)细胞可以促进胰岛的修复。此外,β细胞的增殖和胰腺干细胞的分化都有助于β细胞的再生。

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