作者
William Gruenloh, Amal Kambal, Claus Sondergaard, Jeannine McGee, Catherine Nacey, Stefanos Kalomoiris, Karen Pepper, Scott Olson, Fernando Fierro, Jan A Nolta
发表日期
2011/6/1
期刊
Tissue engineering Part A
卷号
17
期号
11-12
页码范围
1517-1525
出版商
Mary Ann Liebert, Inc.
简介
Mesenchymal stem cells (MSCs) have been shown to contribute to the recovery of tissues through homing to injured areas, especially to hypoxic, apoptotic, or inflamed areas and releasing factors that hasten endogenous repair. In some cases genetic engineering of the MSC is desired, since they are excellent delivery vehicles. We have derived MSCs from the human embryonic stem cell (hESC) line H9 (H9-MSCs). They expressed CD105, CD90, CD73, and CD146, and lacked expression of CD45, CD34, CD14, CD31, and HLA-DR, the hESC pluripotency markers SSEA-4 and Tra-1-81, and the hESC early differentiation marker SSEA-1. Marrow-derived MSCs showed a similar phenotype. H9-MSCs did not form teratoma in our initial studies, whereas the parent H9 line did so robustly. H9-MSCs differentiated into bone, cartilage, and adipocytes in vitro, and displayed increased migration under hypoxic conditions …
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