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本文引用的文献

1
Insulinotropic hormone glucagon-like peptide-1 differentiation of human pancreatic islet-derived progenitor cells into insulin-producing cells.促胰岛素激素胰高血糖素样肽-1将人胰岛来源的祖细胞分化为胰岛素分泌细胞。
Endocrinology. 2002 Aug;143(8):3152-61. doi: 10.1210/endo.143.8.8973.
2
Pluripotency of mesenchymal stem cells derived from adult marrow.源自成人骨髓的间充质干细胞的多能性。
Nature. 2002 Jul 4;418(6893):41-9. doi: 10.1038/nature00870. Epub 2002 Jun 20.
3
In vitro trans-differentiation of adult hepatic stem cells into pancreatic endocrine hormone-producing cells.成体肝干细胞在体外转分化为产生胰腺内分泌激素的细胞。
Proc Natl Acad Sci U S A. 2002 Jun 11;99(12):8078-83. doi: 10.1073/pnas.122210699. Epub 2002 Jun 4.
4
beta-cell neogenesis during prolonged hyperglycemia in rats.大鼠长期高血糖期间的β细胞新生
Diabetes. 2002 Jun;51(6):1834-41. doi: 10.2337/diabetes.51.6.1834.
5
Multipotent adult progenitor cells from bone marrow differentiate into functional hepatocyte-like cells.来自骨髓的多能成体祖细胞分化为功能性肝细胞样细胞。
J Clin Invest. 2002 May;109(10):1291-302. doi: 10.1172/JCI15182.
6
Direct evidence for the pancreatic lineage: NGN3+ cells are islet progenitors and are distinct from duct progenitors.胰腺谱系的直接证据:NGN3+细胞是胰岛祖细胞,与导管祖细胞不同。
Development. 2002 May;129(10):2447-57. doi: 10.1242/dev.129.10.2447.
7
Toward a new paradigm of cell plasticity.迈向细胞可塑性的新范式。
Leukemia. 2002 Apr;16(4):542-8. doi: 10.1038/sj.leu.2402445.
8
Changing potency by spontaneous fusion.通过自发融合改变效力。
Nature. 2002 Apr 4;416(6880):545-8. doi: 10.1038/nature729. Epub 2002 Mar 13.
9
Bone marrow cells adopt the phenotype of other cells by spontaneous cell fusion.骨髓细胞通过自发细胞融合获得其他细胞的表型。
Nature. 2002 Apr 4;416(6880):542-5. doi: 10.1038/nature730. Epub 2002 Mar 13.
10
Diabetes mellitus-cell transplantation and gene therapy approaches.糖尿病——细胞移植与基因治疗方法
Curr Mol Med. 2001 May;1(2):273-86. doi: 10.2174/1566524013363951.

从骨髓中体内衍生出具有葡萄糖反应能力的胰腺内分泌细胞,且无细胞融合迹象。

In vivo derivation of glucose-competent pancreatic endocrine cells from bone marrow without evidence of cell fusion.

作者信息

Ianus Andreea, Holz George G, Theise Neil D, Hussain Mehboob A

机构信息

Department of Pathology, New York University School of Medicine, New York, New York 10016, USA.

出版信息

J Clin Invest. 2003 Mar;111(6):843-50. doi: 10.1172/JCI16502.

DOI:10.1172/JCI16502
PMID:12639990
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC153767/
Abstract

Bone marrow harbors cells that have the capacity to differentiate into cells of nonhematopoietic tissues of neuronal, endothelial, epithelial, and muscular phenotype. Here we demonstrate that bone marrow-derived cells populate pancreatic islets of Langerhans. Bone marrow cells from male mice that express, using a CRE-LoxP system, an enhanced green fluorescent protein (EGFP) if the insulin gene is actively transcribed were transplanted into lethally irradiated recipient female mice. Four to six weeks after transplantation, recipient mice revealed Y chromosome and EGFP double-positive cells in their pancreatic islets. Neither bone marrow cells nor circulating peripheral blood nucleated cells of donor or recipient mice had any detectable EGFP. EGFP-positive cells purified from islets express insulin, glucose transporter 2 (GLUT2), and transcription factors typically found in pancreatic beta cells. Furthermore, in vitro these bone marrow-derived cells exhibit - as do pancreatic beta cells - glucose-dependent and incretin-enhanced insulin secretion. These results indicate that bone marrow harbors cells that have the capacity to differentiate into functionally competent pancreatic endocrine beta cells and that represent a source for cell-based treatment of diabetes mellitus. The results generated with the CRE-LoxP system also suggest that in vivo cell fusion is an unlikely explanation for the "transdifferentiation" of bone marrow-derived cells into differentiated cell phenotypes.

摘要

骨髓中含有能够分化为具有神经元、内皮、上皮和肌肉表型的非造血组织细胞的细胞。在此,我们证明骨髓来源的细胞能够在胰岛中聚集。利用CRE-LoxP系统,如果胰岛素基因被激活转录,雄性小鼠的骨髓细胞就会表达增强型绿色荧光蛋白(EGFP),将这些骨髓细胞移植到接受致死剂量照射的雌性受体小鼠体内。移植后4至6周,受体小鼠的胰岛中出现了Y染色体和EGFP双阳性细胞。供体或受体小鼠的骨髓细胞和循环外周血有核细胞均未检测到任何EGFP。从胰岛中纯化出的EGFP阳性细胞表达胰岛素、葡萄糖转运蛋白2(GLUT2)以及通常在胰腺β细胞中发现的转录因子。此外,在体外,这些骨髓来源的细胞与胰腺β细胞一样,表现出葡萄糖依赖性和肠促胰岛素增强的胰岛素分泌。这些结果表明,骨髓中含有能够分化为功能正常的胰腺内分泌β细胞的细胞,并且这些细胞可作为糖尿病细胞治疗的来源。利用CRE-LoxP系统得到的结果还表明,体内细胞融合不太可能是骨髓来源的细胞“转分化”为分化细胞表型的原因。