中国神经再生研究(英文版) ›› 2012, Vol. 7 ›› Issue (19): 1463-1468.

• 原著:神经损伤修复保护与再生 • 上一篇    下一篇

Wnt3a expression during the differentiation of adipose-derived stem cells into cholinergic  neurons

  

  • 收稿日期:2012-02-15 修回日期:2012-05-13 出版日期:2012-07-05 发布日期:2012-07-05

Wnt3a expression during the differentiation of adipose-derived stem cells into cholinergic  neurons

Bin Liu, Chunying Deng, Yuqin Zhang, Jinxia Zhang   

  1. First Department of Neurology, Hospital Affiliated to Hebei United University, Tangshan 063000, Hebei Province, China
  • Received:2012-02-15 Revised:2012-05-13 Online:2012-07-05 Published:2012-07-05
  • Contact: Bin Liu, First Department of Neurology, Hospital Affiliated to Hebei United University, Tangshan 063000, Hebei Province, China liubintsh@126.com
  • About author:Bin Liu★, Master, Chief physician, Professor, First Department of Neurology, Hospital Affiliated to Hebei United University, Tangshan 063000, Hebei Province, China

Abstract:

The present study analyzed changes in Wnt3a expression during differentiation of adipose-derived stem cells into cholinergic neurons. Immunocytochemistry and immunofluorescence revealed significantly increased nestin, neuron-specific enolase, microtubule-associated protein 2, and choline acetyltransferase expression in adipose-derived stem cells isolated from Sprague-Dawley rats and cultured in vitro in neural-induced medium. These expressions increased with prolonged induction time. Real-time reverse transcription-PCR and western blot assay results demonstrated significantly increased choline acetyltransferase and Wnt3a protein and mRNA expressions, respectively, in adipose-derived stem cells following induction. Choline acetyltransferase expression positively correlated with Wnt3a protein and mRNA expressions. These results demonstrated that neural-induced medium induced differentiation of adipose-derived stem cells into cholinergic neuronal-like cells, with subsequent increased Wnt3a expression.

Key words: adipose-derived stem cells, cholinergic neurons, Wnt3a, induction, differentiation, neural stem cells, neural regeneration