Rapid and efficient reprogramming of human fetal and adult blood CD34+ cells into mesenchymal stem cells with a single factor

被引:0
|
作者
Xianmei Meng
Rui-Jun Su
David J Baylink
Amanda Neises
Jason B Kiroyan
Wayne Yuk-Wai Lee
Kimberly J Payne
Daila S Gridley
Jun Wang
K-H William Lau
Gang Li
Xiao-Bing Zhang
机构
[1] Loma Linda University,Division of Regenerative Medicine MC1528B, Department of Medicine
[2] Loma Linda University,Division of Anatomy
[3] Center for Health Disparities and Molecular Medicine,Department of Orthopaedics and Traumatology
[4] Loma Linda University,Department of Radiation Medicine
[5] Stem Cells and Regeneration Program,Department of Pathology
[6] School of Biomedical Sciences,undefined
[7] Li Ka Shing Institute of Health Sciences,undefined
[8] The Chinese University of Hong Kong,undefined
[9] Prince of Wales Hospital,undefined
[10] Loma Linda University,undefined
[11] Loma Linda University,undefined
[12] Musculoskeletal Disease Center,undefined
[13] Jerry L Pettis Memorial VA Medical Center,undefined
来源
Cell Research | 2013年 / 23卷
关键词
mesenchymal stem cells; hematopoietic cells; direct reprogramming; CD34; cells;
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学科分类号
摘要
The direct conversion of skin cells into somatic stem cells has opened new therapeutic possibilities in regenerative medicine. Here, we show that human induced mesenchymal stem cells (iMSCs) can be efficiently generated from cord blood (CB)- or adult peripheral blood (PB)-CD34+ cells by direct reprogramming with a single factor, OCT4. In the presence of a GSK3 inhibitor, 16% of the OCT4-transduced CD34+ cells are converted into iMSCs within 2 weeks. Efficient direct reprogramming is achieved with both episomal vector-mediated transient OCT4 expression and lentiviral vector-mediated OCT4 transduction. The iMSCs express MSC markers, resemble bone marrow (BM)-MSCs in morphology, and possess in vitro multilineage differentiation capacity, yet have a greater proliferative capacity compared with BM-MSCs. Similar to BM-MSCs, the implanted iMSCs form bone and connective tissues, and are non-tumorigenic in mice. However, BM-MSCs do not, whereas iMSCs do form muscle fibers, indicating a potential functional advantage of iMSCs. In addition, we observed that a high level of OCT4 expression is required for the initial reprogramming and the optimal iMSC self-renewal, while a reduction of OCT4 expression is required for multilineage differentiation. Our method will contribute to the generation of patient-specific iMSCs, which could have applications in regenerative medicine. This discovery may also facilitate the development of strategies for direct conversion of blood cells into other types of cells of clinical importance.
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页码:658 / 672
页数:14
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