Pericyte plasticity - comparative investigation of the angiogenic and multilineage potential of pericytes from different human tissues.
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A. Scherberich | U. Menzel | S. Verrier | R. Osinga | J. Bara | C. Sprecher | M. Alini | M. Herrmann | J. M. Jalowiec | Christoph M. Sprecher | JM Jalowiec | Arnaud Scherberich | Mauro Alini
[1] R. Sammons,et al. An In Vitro Comparison of the Incorporation, Growth, and Chondrogenic Potential of Human Bone Marrow versus Adipose Tissue Mesenchymal Stem Cells in Clinically Relevant Cell Scaffolds Used for Cartilage Repair , 2015, Cartilage.
[2] M. Alini,et al. Endothelial Progenitor Cell Fraction Contained in Bone Marrow-Derived Mesenchymal Stem Cell Populations Impairs Osteogenic Differentiation , 2015, BioMed research international.
[3] Mauro Alini,et al. CD34/CD133 enriched bone marrow progenitor cells promote neovascularization of tissue engineered constructs in vivo. , 2014, Stem cell research.
[4] G. Xiang,et al. Human Myocardial Pericytes: Multipotent Mesodermal Precursors Exhibiting Cardiac Specificity , 2014, Stem cells.
[5] R. G. Richards,et al. Direct Cell-Cell Contact between Mesenchymal Stem Cells and Endothelial Progenitor Cells Induces a Pericyte-Like Phenotype In Vitro , 2014, BioMed research international.
[6] R. Adams,et al. Ephrin-B2 controls PDGFRβ internalization and signaling , 2013, Genes & development.
[7] M. Alini,et al. 3D scaffolds co-seeded with human endothelial progenitor and mesenchymal stem cells: evidence of prevascularisation within 7 days. , 2013, European cells & materials.
[8] R. Brekken,et al. Recruitment and retention: factors that affect pericyte migration , 2013, Cellular and Molecular Life Sciences.
[9] Mihaela Crisan,et al. Identification of perivascular mesenchymal stromal/stem cells by flow cytometry , 2013, Cytometry. Part A : the journal of the International Society for Analytical Cytology.
[10] Xiyun Yan,et al. CD146, a multi-functional molecule beyond adhesion. , 2013, Cancer letters.
[11] M. Raghunath,et al. Not all MSCs can act as pericytes: functional in vitro assays to distinguish pericytes from other mesenchymal stem cells in angiogenesis. , 2013, Stem cells and development.
[12] K. Tobita,et al. Human Pericytes for Ischemic Heart Repair , 2013, Stem cells.
[13] M. Corselli,et al. Perivascular cells for regenerative medicine , 2012, Journal of cellular and molecular medicine.
[14] Fulin Chen,et al. Engineering vascularized bone graft with osteogenic and angiogenic lineage differentiated bone marrow mesenchymal stem cells. , 2012, Artificial organs.
[15] Robert Pless,et al. Capillary and arteriolar pericytes attract innate leukocytes exiting through venules and 'instruct' them with pattern-recognition and motility programs , 2012, Nature Immunology.
[16] G. Finkenzeller,et al. Human endothelial progenitor cells induce extracellular signal-regulated kinase-dependent differentiation of mesenchymal stem cells into smooth muscle cells upon cocultivation. , 2012, Tissue engineering. Part A.
[17] I. Marzi,et al. Endothelial Progenitor Cells Improve Directly and Indirectly Early Vascularization of Mesenchymal Stem Cell-Driven Bone Regeneration in a Critical Bone Defect in Rats , 2012, Cell transplantation.
[18] Le Chang,et al. Perivascular Stem Cells: A Prospectively Purified Mesenchymal Stem Cell Population for Bone Tissue Engineering , 2012, Stem cells translational medicine.
[19] Tom T. Chen,et al. CCN2/Connective Tissue Growth Factor Is Essential for Pericyte Adhesion and Endothelial Basement Membrane Formation during Angiogenesis , 2012, PloS one.
[20] A. Aldahmash,et al. Comparative investigation of the differentiation capability of bone-marrow- and adipose-derived mesenchymal stem cells by qualitative and quantitative analysis , 2012, Cell and Tissue Research.
[21] M. Ehinger,et al. CD146 expression on primary nonhematopoietic bone marrow stem cells is correlated with in situ localization. , 2011, Blood.
[22] Ben D. MacArthur,et al. Mesenchymal and haematopoietic stem cells form a unique bone marrow niche , 2010, Nature.
[23] Farshid Guilak,et al. Isolation of adipose-derived stem cells and their induction to a chondrogenic phenotype , 2010, Nature Protocols.
[24] Elizabeth G Loboa,et al. Comparative review of growth factors for induction of three-dimensional in vitro chondrogenesis in human mesenchymal stem cells isolated from bone marrow and adipose tissue. , 2010, Tissue engineering. Part B, Reviews.
[25] Jian Dong,et al. The repair of large segmental bone defects in the rabbit with vascularized tissue engineered bone. , 2010, Biomaterials.
[26] R. Gutiérrez,et al. Pericytes. Morphofunction, interactions and pathology in a quiescent and activated mesenchymal cell niche. , 2009, Histology and histopathology.
[27] R. Reis,et al. Contribution of outgrowth endothelial cells from human peripheral blood on in vivo vascularization of bone tissue engineered constructs based on starch polycaprolactone scaffolds. , 2009, Biomaterials.
[28] A. Caplan. Why are MSCs therapeutic? New data: new insight , 2009, The Journal of pathology.
[29] S. Badylak,et al. A perivascular origin for mesenchymal stem cells in multiple human organs. , 2008, Cell stem cell.
[30] N. Nardi,et al. In Search of the In Vivo Identity of Mesenchymal Stem Cells , 2008, Stem cells.
[31] Paul H Wooley,et al. Promotion of osteogenesis in tissue‐engineered bone by pre‐seeding endothelial progenitor cells‐derived endothelial cells , 2008, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[32] M. Zago,et al. Multipotent mesenchymal stromal cells obtained from diverse human tissues share functional properties and gene-expression profile with CD146+ perivascular cells and fibroblasts. , 2008, Experimental hematology.
[33] Ivan Martin,et al. Three‐Dimensional Perfusion Culture of Human Adipose Tissue‐Derived Endothelial and Osteoblastic Progenitors Generates Osteogenic Constructs with Intrinsic Vascularization Capacity , 2007, Stem cells.
[34] W. Richter,et al. Reduced chondrogenic potential of adipose tissue derived stromal cells correlates with an altered TGFβ receptor and BMP profile and is overcome by BMP‐6 , 2007, Journal of cellular physiology.
[35] F. Guilak,et al. Potent induction of chondrocytic differentiation of human adipose-derived adult stem cells by bone morphogenetic protein 6. , 2006, Arthritis and rheumatism.
[36] C. Betsholtz,et al. Endothelial/Pericyte Interactions , 2005, Circulation research.
[37] P. Helmbold,et al. Human dermal pericytes express 3G5 ganglioside – A new approach for microvessel histology in the skin , 2001, Journal of cutaneous pathology.
[38] I. Martin,et al. Fibroblast growth factor-2 supports ex vivo expansion and maintenance of osteogenic precursors from human bone marrow. , 1997, Endocrinology.
[39] N. Morel,et al. Pericyte physiology , 1993, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[40] N. Huang,et al. Activation of the Wnt/planar cell polarity pathway is required for pericyte recruitment during pulmonary angiogenesis. , 2015, The American journal of pathology.