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Hypoxia Promotes the Stemness of Mesangiogenic Progenitor Cells and Prevents Osteogenic but not Angiogenic Differentiation.缺氧促进血管周细胞的干性并阻止其成骨分化但不阻止其血管生成分化。
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本文引用的文献

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Rapid regulatory actions of sex steroids on cell movement through the actin cytoskeleton.性类固醇通过肌动蛋白细胞骨架对细胞运动的快速调节作用。
Steroids. 2008 Oct;73(9-10):895-900. doi: 10.1016/j.steroids.2008.01.011. Epub 2008 Jan 19.
2
Increased proliferation of human synovial mesenchymal stem cells with autologous human serum: comparisons with bone marrow mesenchymal stem cells and with fetal bovine serum.人自体血清促进人滑膜间充质干细胞增殖:与骨髓间充质干细胞及胎牛血清的比较
Arthritis Rheum. 2008 Feb;58(2):501-10. doi: 10.1002/art.23219.
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Mesenchymal stem cell preparations--comparing apples and oranges.间充质干细胞制剂——难以相提并论。
Stem Cell Rev. 2007 Dec;3(4):239-48. doi: 10.1007/s12015-007-9001-1.
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Widespread nonhematopoietic tissue distribution by transplanted human progenitor cells with high aldehyde dehydrogenase activity.具有高醛脱氢酶活性的移植人祖细胞在广泛的非造血组织中分布。
Stem Cells. 2008 Mar;26(3):611-20. doi: 10.1634/stemcells.2007-0429. Epub 2007 Nov 29.
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A hypothesis for an embryonic origin of pluripotent Oct-4(+) stem cells in adult bone marrow and other tissues.关于成体骨髓及其他组织中多能性Oct-4(+)干细胞胚胎起源的一种假说。
Leukemia. 2007 May;21(5):860-7. doi: 10.1038/sj.leu.2404630. Epub 2007 Mar 8.
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Pericytes of human skeletal muscle are myogenic precursors distinct from satellite cells.人类骨骼肌的周细胞是不同于卫星细胞的成肌前体细胞。
Nat Cell Biol. 2007 Mar;9(3):255-67. doi: 10.1038/ncb1542. Epub 2007 Feb 11.
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SSEA-4 identifies mesenchymal stem cells from bone marrow.阶段特异性胚胎抗原-4可识别来自骨髓的间充质干细胞。
Blood. 2007 Feb 15;109(4):1743-51. doi: 10.1182/blood-2005-11-010504. Epub 2006 Oct 24.
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A population of very small embryonic-like (VSEL) CXCR4(+)SSEA-1(+)Oct-4+ stem cells identified in adult bone marrow.在成人骨髓中鉴定出一群非常小的胚胎样(VSEL)CXCR4(+)SSEA-1(+)Oct-4 +干细胞。
Leukemia. 2006 May;20(5):857-69. doi: 10.1038/sj.leu.2404171.
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Regulatory networks in embryo-derived pluripotent stem cells.胚胎来源的多能干细胞中的调控网络。
Nat Rev Mol Cell Biol. 2005 Nov;6(11):872-84. doi: 10.1038/nrm1744.
10
Marrow-isolated adult multilineage inducible (MIAMI) cells, a unique population of postnatal young and old human cells with extensive expansion and differentiation potential.骨髓分离的成人多谱系诱导(MIAMI)细胞,是一群独特的出生后人类年轻和老年细胞,具有广泛的增殖和分化潜能。
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从成人骨髓中鉴定和纯化中胚层祖细胞。

Identification and purification of mesodermal progenitor cells from human adult bone marrow.

作者信息

Petrini Mario, Pacini Simone, Trombi Luisa, Fazzi Rita, Montali Marina, Ikehara Susumu, Abraham Nader G

机构信息

CUCCS-RRMR, Regione Toscana, AOUP, Department of Oncology, University of Pisa, Pisa, Italy.

出版信息

Stem Cells Dev. 2009 Jul-Aug;18(6):857-66. doi: 10.1089/scd.2008.0291.

DOI:10.1089/scd.2008.0291
PMID:18991503
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3085824/
Abstract

Bone marrow-derived mesodermal stem cells may differentiate toward several lines and are easily cultured in vitro. Some putative progenitors of these cells have been described in both humans and mice. Here, we describe a new mesodermal progenitor population [mesodermal progenitors cells (MPCs)] able to differentiate into mesenchymal cells upon appropriate culture conditions. When cultured in presence of autologous serum, these cells are strongly adherent to plastic, resistant to trypsin detachment, and resting. Mesodermal progenitor cells may be pulsed to proliferate and differentiate by substituting autologous serum for human cord blood serum or fetal calf serum. By these methods cells proliferate and differentiate toward mesenchymal cells and thus may further differentiate into osteoblats, chondrocytes, or adipocytes. Moreover MPCs are capable to differentiate in endothelial cells (ECs) showing characteristics similar to microvessel endothelium cells. Mesodermal progenitors cells have a defined phenotype and carry embryonic markers not present in mesenchymal cells. Moreover MPCs strongly express aldehyde dehydrogenase activity, usually present in hematopoietic precursors but absent in mesenchymal cells. When these progenitors are pulsed to differentiate, they lose these markers and acquire the mesenchymal ones. Interestingly, mesenchymal cells may not be induced to back differentiate into MPCs. Our results demonstrate the adult serum role in maintaining pluripotent mesodermal precursors and allow isolation of these cells. After purification, MPCs may be pulsed to proliferate in a very large scale and then induced to differentiate, thus possibly allowing their use in regenerative medicine.

摘要

骨髓来源的中胚层干细胞可向多个谱系分化,且易于在体外培养。在人类和小鼠中均已描述了这些细胞的一些假定祖细胞。在此,我们描述了一种新的中胚层祖细胞群体[中胚层祖细胞(MPCs)],在适当的培养条件下能够分化为间充质细胞。当在自体血清存在下培养时,这些细胞强烈贴附于塑料培养皿,对胰蛋白酶消化具有抗性,且处于静止状态。通过用人脐带血血清或胎牛血清替代自体血清,可促使中胚层祖细胞增殖并分化。通过这些方法,细胞向间充质细胞增殖和分化,进而可能进一步分化为成骨细胞、软骨细胞或脂肪细胞。此外,MPCs能够分化为内皮细胞(ECs),其表现出与微血管内皮细胞相似的特征。中胚层祖细胞具有特定的表型,并携带间充质细胞中不存在的胚胎标志物。此外,MPCs强烈表达醛脱氢酶活性,该活性通常存在于造血前体细胞中,但在间充质细胞中不存在。当这些祖细胞被诱导分化时,它们会失去这些标志物并获得间充质细胞的标志物。有趣的是,间充质细胞不能被诱导逆向分化为MPCs。我们的结果证明了成人血清在维持多能中胚层前体细胞中的作用,并允许分离这些细胞。纯化后,MPCs可被大量诱导增殖,然后再诱导分化,从而有可能使其应用于再生医学。