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Vascularization mediated by mesenchymalstem cells from bone marrow and adiposetissue: a comparison 被引量:1
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作者 karoline pill Sandra Hofmann +1 位作者 Heinz Redl Wolfgang Holnthoner 《Cell Regeneration》 2015年第1期106-115,共10页
Tissue-engineered constructs are promising to overcome shortage of organ donors and to reconstruct at least partsof injured or diseased tissues or organs. However, oxygen and nutrient supply are limiting factors in ma... Tissue-engineered constructs are promising to overcome shortage of organ donors and to reconstruct at least partsof injured or diseased tissues or organs. However, oxygen and nutrient supply are limiting factors in many tissues,especially after implantation into the host. Therefore, the development of a vascular system prior to implantationappears crucial. To develop a functional vascular system, different cell types that interact with each other need tobe co-cultured to simulate a physiological environment in vitro. This review provides an overview and a comparison ofthe current knowledge of co-cultures of human endothelial cells (ECs) with human adipose tissue-derived stem/stromal cells (ASCs) or bone marrow-mesenchymal stem cells (BMSCs) in three dimensional (3D) hydrogel matrices.Mesenchymal stem cells (MSCs), BMSCs or ASCs, have been shown to enhance vascular tube formation of ECs and toprovide a stabilizing function in addition to growth factor delivery and permeability control for ECs. Althoughphenotypically similar, MSCs from different tissues promote tubulogenesis through distinct mechanisms. In this report,we describe differences and similarities regarding molecular interactions in order to investigate which of these two celltypes displays more favorable characteristics to be used in clinical applications. Our comparative study shows that ASCsas well as BMSCs are both promising cell types to induce vascularization with ECs in vitro and consequently arepromising candidates to support in vivo vascularization. 展开更多
关键词 VASCULARIZATION Endothelial cells Mesenchymal stem cells CO-CULTURE Molecular mechanisms
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