IGF-1 enhances cell proliferation and survival during early differentiation of mesenchymal stem cells to neural progenitor-like cells

被引:110
作者
Huat, Tee Jong [1 ,5 ]
Khan, Amir Ali [2 ,5 ]
Pati, Soumya [3 ,5 ]
Mustafa, Zulkifli [5 ]
Abdullah, Jafri Malin [4 ,5 ,6 ]
Jaafar, Hasnan [1 ]
机构
[1] Univ Sains Malaysia, Jalan Hosp Univ Sains Malaysia, Sch Med Sci, Dept Pathol, Kota Baharu, Kelantan, Malaysia
[2] Univ Sharjah, Coll Sci, Dept Appl Biol, Sharjah 27272, U Arab Emirates
[3] Texas Childrens Hosp, Baylor Coll Med, Jan & Dan Duncan Neurol Res Inst, Dept Paediat Neurol, Houston, TX USA
[4] Univ Sains Malaysia, Jalan Hosp Univ Sains Malaysia, Ctr Neurosci Serv & Res, Kota Baharu, kelantan, Malaysia
[5] Univ Sains Malaysia, Jalan Hosp Univ Sains Malaysia, Sch Med, Dept Neurosci, Kota Baharu, kelantan, Malaysia
[6] Univ Sains Malaysia, Jalan Hosp Univ Sains Malaysia, Kota Baharu, kelantan, Malaysia
关键词
Mesenchymal stem cells; Neural progenitor-like cells; Insulin-like growth factor 1; Proliferation; Cell death; HUMAN BONE-MARROW; STROMAL CELLS; ISCHEMIC-STROKE; NEURONAL CELLS; CORD; TRANSPLANTATION; PATHWAY; GROWTH; TISSUE; SWITCH;
D O I
10.1186/1471-2202-15-91
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: There has been increasing interest recently in the plasticity of mesenchymal stem cells (MSCs) and their potential to differentiate into neural lineages. To unravel the roles and effects of different growth factors in the differentiation of MSCs into neural lineages, we have differentiated MSCs into neural lineages using different combinations of growth factors. Based on previous studies of the roles of insulin-like growth factor 1 (IGF-1) in neural stem cell isolation in the laboratory, we hypothesized that IGF-1 can enhance proliferation and reduce apoptosis in neural progenitor-like cells (NPCs) during differentiation of MSCs into NCPs. We induced MSCs differentiation under four different combinations of growth factors: (A) EGF + bFGF, (B) EGF + bFGF + IGF-1, (C) EGF + bFGF + LIF, (D) EGF + bFGF + BDNF, and (E) without growth factors, as a negative control. The neurospheres formed were characterized by immunofluorescence staining against nestin, and the expression was measured by flow cytometry. Cell proliferation and apoptosis were also studied by MTS and Annexin V assay, respectively, at three different time intervals (24 hr, 3 days, and 5 days). The neurospheres formed in the four groups were then terminally differentiated into neuron and glial cells. Results: The four derived NPCs showed a significantly higher expression of nestin than was shown by the negative control. Among the groups treated with growth factors, NPCs treated with IGF-1 showed the highest expression of nestin. Furthermore, NPCs derived using IGF-1 exhibited the highest cell proliferation and cell survival among the treated groups. The NPCs derived from IGF-1 treatment also resulted in a better yield after the terminal differentiation into neurons and glial cells than that of the other treated groups. Conclusions: Our results suggested that IGF-1 has a crucial role in the differentiation of MSCs into neuronal lineage by enhancing the proliferation and reducing the apoptosis in the NPCs. This information will be beneficial in the long run for improving both cell-based and cell-free therapy for neurodegenerative diseases.
引用
收藏
页数:13
相关论文
共 28 条
[1]   IGF-1 activates hEAG k+ channels through an akt-dependent signaling pathway in breast cancer cells:: Role in cell proliferation [J].
Borowiec, Anne-Sophie ;
Hague, Frederic ;
Harir, Noria ;
Guenin, Stephanie ;
Guerineau, Franois ;
Gouilleux, Fabrice ;
Roudbaraki, Morad ;
Lassoued, Kaiss ;
Ouadid-Ahidouch, Halima .
JOURNAL OF CELLULAR PHYSIOLOGY, 2007, 212 (03) :690-701
[2]   MicroRNA-34a modulates genes involved in cellular motility and oxidative phosphorylation in neural precursors derived from human umbilical cord mesenchymal stem cells [J].
Chang, Shing-Jyh ;
Weng, Shun-Long ;
Hsieh, Jui-Yu ;
Wang, Tao-Yeuan ;
Chang, Margaret Dah-Tsyr ;
Wang, Hsei-Wei .
BMC MEDICAL GENOMICS, 2011, 4
[3]   IGF-1 gene-modified muscle-derived stem cells are resistant to oxidative stress via enhanced activation of IGF-1R/PI3K/AKT signaling and secretion of VEGF [J].
Chen, Chunjing ;
Xu, Ying ;
Song, Yanfeng .
MOLECULAR AND CELLULAR BIOCHEMISTRY, 2014, 386 (1-2) :167-175
[4]   Mesenchymal stem cells: A promising candidate in regenerative medicine [J].
Chen, Ye ;
Shao, Jian-Zhong ;
Xiang, Li-Xin ;
Dong, Xue-Jun ;
Zhang, Guo-Rong .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2008, 40 (05) :815-820
[5]   Formation of neurons by non-neural adult stem cells: Potential mechanism implicates an artifact of growth in culture [J].
Croft, Adam P. ;
Przyborski, Stefan A. .
STEM CELLS, 2006, 24 (08) :1841-1851
[6]   Mesenchymal stem cells expressing neural antigens instruct a neurogenic cell fate on neural stem cells [J].
Croft, Adam P. ;
Przyborski, Stefan A. .
EXPERIMENTAL NEUROLOGY, 2009, 216 (02) :329-341
[7]   Specific induction of neuronal cells from bone marrow stromal cells and application for autologous transplantation [J].
Dezawa, M ;
Kanno, H ;
Hoshino, M ;
Cho, H ;
Matsumoto, N ;
Itokazu, Y ;
Tajima, N ;
Yamada, H ;
Sawada, H ;
Ishikawa, H ;
Mimura, T ;
Kitada, M ;
Suzuki, Y ;
Ide, C .
JOURNAL OF CLINICAL INVESTIGATION, 2004, 113 (12) :1701-1710
[8]   Androgenetic embryonic stem cells form neural progenitor cells in vivo and in vitro [J].
Dinger, Timo C. ;
Eckardt, Sigrid ;
Choi, Soon Won ;
Camarero, Guadelupe ;
Kurosaka, Satoshi ;
Hornich, Vroni ;
Mclaughlin, K. John ;
Mueller, Albrecht M. .
STEM CELLS, 2008, 26 (06) :1474-1483
[9]   TNF-α respecifies human mesenchymal stem cells to a neural fate and promotes migration toward experimental glioma [J].
Egea, V. ;
von Baumgarten, L. ;
Schichor, C. ;
Berninger, B. ;
Popp, T. ;
Neth, P. ;
Goldbrunner, R. ;
Kienast, Y. ;
Winkler, F. ;
Jochum, M. ;
Ries, C. .
CELL DEATH AND DIFFERENTIATION, 2011, 18 (05) :853-863
[10]   "Ether-a-go-go" proliferation of iPSC-derived mesenchymal stem cells. Focus on "Regulation of cell proliferation of human induced pluripotent stem cell-derived mesenchymal stem cells via ether-a-go-go 1 (hEAG1) potassium channel" [J].
Firth, Amy L. ;
Yuan, Jason X. -J. .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2012, 303 (02) :C113-C114