Neural differentiation of human mesenchymal stem cells:: evidence for expression of neural markers and eag K+ channel types

被引:178
作者
Mareschi, Katia
Novara, Monica
Rustichelli, Deborah
Ferrero, Ivana
Guido, Daniela
Carbone, Emilio
Medico, Enzo
Madon, Enrico
Vercelli, Alessandro
Fagioli, Franca
机构
[1] Univ Turin, Dept Pediat, Regina Margherita Childrens Hosp, I-10126 Turin, Italy
[2] Univ Turin, Dept Neurosci, I-10126 Turin, Italy
[3] Univ Turin, Dept Anat Pharmacol & Forens Med, I-10126 Turin, Italy
[4] Univ Turin, Lab Funct Genom, Oncogenom Ctr, IRCC, I-10126 Turin, Italy
关键词
D O I
10.1016/j.exphem.2006.06.020
中图分类号
R5 [内科学];
学科分类号
1002 [临床医学]; 100201 [内科学];
摘要
Objective. Mesenchymal stem cells (MSCs) are multipotent cells that can self-renew, proliferate, and exhibit elevated cellular plasticity. To investigate their possible neural fate, we studied human mesenchymal stem cells (hMSCs) in different cell culture conditions from morphological, immunochemical, gene expression, and physiological points of view. Materials and Methods. We tested hMSCs in three previously reported experimental conditions made of a-modified minimum essential medium (alpha-MEM)/1 mM beta-mercaptoethanol (beta ME), 10 mu M alpha-MEM/retinoic acid (RA) or alpha-MEM/2% dimethylsulfoxide (DMSO) + 200 mu M beta-hydroxyanisole (BHA), respectively, and in a new experimental condition with neural progenitor maintenance medium (NPMM). Results. hMSCs were isolated from bone marrow and expanded for several passages. In beta ME, cells became immunoreactive for neuronal nuclear antigen (NeuN), neuron-specific enolase (NSE), Nestin, and glial fibrillary acidic protein (GFAP). In experimental conditions with RA and DMSO/BHA, hMSCs were NeuN and NSE-positive while in NPMM they were positive for GFAP and NSE. Untreated hMSCs showed a weak mRNA expression for microtubule-associated protein, NSE, and neurofilament protein-medium and GFAP, which strongly increased in NPMM-treated hMSCs. In the electrophysiological study, NPMM-differentiated hMSCs expressed two delayed rectifier K+ currents related to two ether-a-go-go K+ channels (eag1, eag2), which are fundamental for setting the negative resting potentials required for neuronal survival and basal cell activity. The two K+ channels were absent in undifferentiated hMSCs. These data were confirmed by real-time polymerase chain reaction. Conclusion. In our new culture condition, hMSCs acquired new morphological characteristics, neural markers, and electrophysiological properties, which are suggestive of neural differentiation. This might lead to clinical use of hMSCs in neural degenerative diseases. (c) 2006 International Society for Experimental Hematology. Published by Elsevier Inc.
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页码:1563 / 1572
页数:10
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