In vitro comparative analysis of human dental stem cells from a single donor and its neuronal differentiation potential evaluated by electrophysiology

间充质干细胞 CD90型 SOX2 内斯汀 生物 牙囊 细胞生物学 干细胞 同源盒蛋白纳米 牙髓干细胞 牙乳头 川地34 细胞分化 诱导多能干细胞 病理 牙髓(牙) 胚胎干细胞 神经干细胞 成牙本质细胞 医学 基因 生物化学
作者
Imran Ullah,Raghavendra Baregundi Subbarao,Eun‐Jin Kim,Dinesh Bharti,Si‐Jung Jang,Jisung Park,Sharath Belame Shivakumar,Sung‐Lim Lee,Dawon Kang,June‐Ho Byun,Bong-Wook Park,Gyu‐Jin Rho
出处
期刊:Life Sciences [Elsevier]
卷期号:154: 39-51 被引量:62
标识
DOI:10.1016/j.lfs.2016.04.026
摘要

The aim of this study was to find out a mesenchymal stem cells (MSCs) source from human dental tissues of the same donor (follicle, papilla and pulp), which exhibits higher neurogenic differentiation potential in vitro.MSCs were isolated from dental tissues (follicle, papilla and pulp) by digestion method. All MSCs were analyzed for pluripotent makers by western blot, cell surface markers by flow cytometry, adipo- and osteocytes markers by RT-qPCR. The neuronal differentiated MSCs were characterized for neuronal specific markers by RT-qPCR and immunofluorescence. Functional neuronal properties were analyzed by electrophysiology and synaptic markers expression.All MSCs expressed pluripotent markers (Oct4, Sox2 and Nanog) and were found positive for mesenymal markers (CD44, CD90, CD105) while negative for hematopoietic markers (CD34 and CD45). Furthermore, MSCs were successfully differentiated into adipocytes, osteocytes and trans-differentiated into neuronal cells. Among them, dental pulp derived MSCs exhibits higher neurogenic differentiation potential, in term of expression of neuronal specific markers at both gene and protein level, and having higher Na(+) and K(+) current with the expression of synaptic markers.The three types of dental MSCs from a single donor broadly possessed similar cellular properties and can differentiate into neuronal cells; however, pulp derived MSCs showed higher neurogenic potential than the follicle and papilla, suggesting their use in future stem cells therapy for the treatment of neurodegenerative disorders.
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