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    题名 作者 年代 出处 被引量
1Human Mesenchymal Stem Cells Display Reduced Expression of CD105 after Culture in Serum-Free Medium显示文摘Peter Mark Mandy Kleinsorge Ralf Gaebel Cornelia A. Lux Anita Toelk Erik Pittermann Robert David Gustav Steinhoff Nan Ma Bruno Peault 2013Stem Cells International2013,,:1
2Stem and progenitor cells in skeletal muscle development, maintenance, and therapy显示文摘PEAULT B RUDNICKI M TORRENTE Y 2007Mol Ther2007,15,5:1
3High Harvest Yield, High Expansion, and Phenotype Stability of CD146 Mesenchymal Stromal Cells from Whole Primitive Human Umbilical Cord Tissue显示文摘Rebecca C. Schugar Steven M. Chirieleison Kristin E. Wescoe Benjamin T. Schmidt Yuko Askew Jordan J. Nance Joshua M. Evron Bruno Peault Bridget M. Deasy Brynn Levy 2009Journal of Biomedicine and Biotechnology2009,,:1
4Stem and progenitor cells in skeletal muscle development, maintenance, and therapy显示文摘Peault B Rudnicki M Torrente Y 2007Mol Ther2007,15,5:1
5Hematopoietic stem cell mergence in the human embryo and fetus显示文摘 TAVIAN M 2003Ann N Y Acad Sci2003,996,:1
6Stem and progenitor cells in skeletal muscle development,maintenance,and therapy显示文摘Peault B Rudnicki M Torrente Y 2007Mol Ther2007,15,:1
7Comparison of skeletal and soft tissue pericytes identifies CXCR4+ bone forming mural cells in human tissues显示文摘Human osteogenic progenitors are not precisely defined,being primarily studied as heterogeneous multipotent cell populations and termed mesenchymal stem cells(MSCs).Notably,select human pericytes can develop into bone-forming osteoblasts.Here,we sought to define the differentiation potential of CD146 f human pericytes from skeletal and soft tissue sources,with the underlying goal of defining cell surface markers that typify an osteoblastogenic pericyte.CD146+CD31~CD45_pericytes were derived by fluorescence-activated cell sorting from human periosteum,adipose,or dermal tissue.Periosteal CD146+CD31—CD45 cells retained canonical features of pericytes/MSC.Periosteal pericytes demonstrated a striking tendency to undergo osteoblastogenesis in vitro and skeletogenesis in vivo,while soft tissue pericytes did not readily.Transcriptome analysis revealed higher CXCR4 signaling among periosteal pericytes in comparison to their soft tissue counterparts,and CXCR4 chemical inhibition abrogated ectopic ossification by periosteal pericytes.Conversely,enrichment of CXCR4+pericytes or stromal cells identified an osteoblastic/non-adipocytic precursor cell.In sum,human skeletal and soft tissue pericytes differ in their basal abilities to form bone.Diversity exists in soft tissue pericytes,however,and CXCR4+pericytes represent an osteoblastogenic,non-adipocytic cell precursor.Indeed,enrichment for CXCR4-expressing stromal cells is a potential new tactic for skeletal tissue engineering.Jiajia Xu Dongqing Li Ching-Yun Hsu Ye Tian Leititia Zhang Yiyun Wang Robert J.Tower Leslie Chang Carolyn A.Meyers Yongxing Gao Kristen Broderick Carol Morris Jody E.Hooper Sridhar Nimmagadda Bruno Peault Aaron W.James 2020Bone Research2020,8,3:1
8Human Mesenchymal Stem Cells Display Reduced Expression of CD105 after Culture in Serum-Free Medium显示文摘Peter Mark Mandy Kleinsorge Ralf Gaebel Cornelia A. Lux Anita Toelk Erik Pittermann Robert David Gustav Steinhoff Nan Ma Bruno Peault 2013Stem Cells International2013,,:1
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