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来自耳蜗施万细胞的Wnt1在大鼠螺旋神经节神经元变性模型中增强移植神经干细胞的神经元分化。

Wnt1 from cochlear schwann cells enhances neuronal differentiation of transplanted neural stem cells in a rat spiral ganglion neuron degeneration model.

作者信息

He Ya, Zhang Peng-Zhi, Sun Dong, Mi Wen-Juan, Zhang Xin-Yi, Cui Yong, Jiang Xing-Wang, Mao Xiao-Bo, Qiu Jian-Hua

机构信息

Department of Otolaryngology-Head and Neck Surgery, Xijing Hospital, Fourth Military Medical University, Xi'an, China.

出版信息

Cell Transplant. 2014 Apr;23(6):747-60. doi: 10.3727/096368913X669761. Epub 2013 Jun 27.

Abstract

Although neural stem cell (NSC) transplantation is widely expected to become a therapy for nervous system degenerative diseases and injuries, the low neuronal differentiation rate of NSCs transplanted into the inner ear is a major obstacle for the successful treatment of spiral ganglion neuron (SGN) degeneration. In this study, we validated whether the local microenvironment influences the neuronal differentiation of transplanted NSCs in the inner ear. Using a rat SGN degeneration model, we demonstrated that transplanted NSCs were more likely to differentiate into microtubule-associated protein 2 (MAP2)-positive neurons in SGN-degenerated cochleae than in control cochleae. Using real-time quantitative PCR and an immunofluorescence assay, we also proved that the expression of Wnt1 (a ligand of Wnt signaling) increases significantly in Schwann cells in the SGN-degenerated cochlea. We further verified that NSC cultures express receptors and signaling components for Wnts. Based on these expression patterns, we hypothesized that Schwann cell-derived Wnt1 and Wnt signaling might be involved in the regulation of the neuronal differentiation of transplanted NSCs. We verified our hypothesis in vitro using a coculture system. We transduced a lentiviral vector expressing Wnt1 into cochlear Schwann cell cultures and cocultured them with NSC cultures. The coculture with Wnt1-expressing Schwann cells resulted in a significant increase in the percentage of NSCs that differentiated into MAP2-positive neurons, whereas this differentiation-enhancing effect was prevented by Dkk1 (an inhibitor of the Wnt signaling pathway). These results suggested that Wnt1 derived from cochlear Schwann cells enhanced the neuronal differentiation of transplanted NSCs through Wnt signaling pathway activation. Alterations of the microenvironment deserve detailed investigation because they may help us to conceive effective strategies to overcome the barrier of the low differentiation rate of transplanted NSCs.

摘要

尽管神经干细胞(NSC)移植被广泛期待成为治疗神经系统退行性疾病和损伤的一种疗法,但移植到内耳的神经干细胞神经元分化率低是成功治疗螺旋神经节神经元(SGN)退变的一个主要障碍。在本研究中,我们验证了局部微环境是否会影响内耳中移植的神经干细胞的神经元分化。利用大鼠SGN退变模型,我们证明移植的神经干细胞在SGN退变的耳蜗中比在对照耳蜗中更有可能分化为微管相关蛋白2(MAP2)阳性神经元。通过实时定量PCR和免疫荧光测定,我们还证明Wnt1(Wnt信号的一种配体)在SGN退变耳蜗的雪旺细胞中的表达显著增加。我们进一步验证了神经干细胞培养物表达Wnt的受体和信号成分。基于这些表达模式,我们推测雪旺细胞衍生的Wnt1和Wnt信号可能参与调控移植的神经干细胞的神经元分化。我们使用共培养系统在体外验证了我们的假设。我们将表达Wnt1的慢病毒载体转导到耳蜗雪旺细胞培养物中,并将它们与神经干细胞培养物共培养。与表达Wnt1的雪旺细胞共培养导致分化为MAP2阳性神经元的神经干细胞百分比显著增加,而这种分化增强作用被Dkk1(Wnt信号通路的一种抑制剂)所阻断。这些结果表明,耳蜗雪旺细胞衍生的Wnt1通过激活Wnt信号通路增强了移植的神经干细胞的神经元分化。微环境变化值得详细研究,因为它们可能有助于我们构思有效的策略来克服移植的神经干细胞低分化率这一障碍。

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