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大鼠视网膜中脑源性神经营养因子基因转基因神经干细胞的研究

Study of brain-derived neurotrophic factor gene transgenic neural stem cells in the rat retina.

作者信息

Zhou Xue-mei, Yuan Hui-ping, Wu Dong-lai, Zhou Xin-rong, Sun Da-wei, Li Hong-yi, Shao Zheng-bo

机构信息

Department of Ophthalmology, Second Affiliated Hospital of Harbin Medical University, Heilongjiang, China.

出版信息

Chin Med J (Engl). 2009 Jul 20;122(14):1642-9.

Abstract

BACKGROUND

Neural stem cells (NSCs) transplantation and gene therapy have been widely investigated for treating the cerebullar and myelonic injuries, however, studies on the ophthalmology are rare. The aim of this study was to investigate the migration and differentiation of brain-derived neurotrophic factor (BDNF) gene transgenic NSCs transplanted into the normal rat retinas.

METHODS

NSCs were cultured and purified in vitro and infected with recombinant retrovirus pLXSN-BDNF and pLXSN respectively, to obtain the BDNF overexpressed NSCs (BDNF-NSCs) and control cells (p-NSCs). The expression of BDNF genes in two transgenic NSCs and untreated NSCs were measured by fluorescent quantitative polymerase chain reaction (FQ-PCR) and enzyme-linked immunosorbent assay (ELISA). BDNF-NSCs and NSCs were infected with adeno-associated viruses-enhanced green fluorescent protein (AAV-EGFP) to track them in vivo and served as donor cells for transplantation into the subretinal space of normal rat retinas, phosphated buffer solution (PBS) served as pseudo transplantation for a negative control. Survival, migration, and differentiation of donor cells in host retinas were observed and analyzed with Heidelberg retina angiograph (HRA) and immunohistochemistry, respectively.

RESULTS

NSCs were purified successfully by limiting dilution assay. The expression of BDNF gene in BDNF-NSCs was the highest among three groups both at mRNA level tested by FQ-PCR (P < 0.05) and at protein level measured by ELISA (P < 0.05), which showed that BDNF was overexpressed in BDNF-NSCs. The results of HRA demonstrated that graft cells could survive well and migrate into the host retinas, while the immunohistochemical analysis revealed that transplanted BDNF-NSCs differentiated into neuron more efficiently compared with the control NSCs 2 months after transplantation.

CONCLUSIONS

The seed cells of NSCs highly secreting BDNF were established. BDNF can promote NSCs to migrate and differentiate into neural cells in the normal host retinas.

摘要

背景

神经干细胞(NSCs)移植和基因治疗已被广泛研究用于治疗小脑和脊髓损伤,然而,眼科方面的研究却很少。本研究旨在探讨脑源性神经营养因子(BDNF)基因转基因神经干细胞移植到正常大鼠视网膜后的迁移和分化情况。

方法

在体外培养并纯化神经干细胞,分别用重组逆转录病毒pLXSN-BDNF和pLXSN感染,以获得BDNF过表达神经干细胞(BDNF-NSCs)和对照细胞(p-NSCs)。通过荧光定量聚合酶链反应(FQ-PCR)和酶联免疫吸附测定(ELISA)检测两种转基因神经干细胞和未处理神经干细胞中BDNF基因的表达。用腺相关病毒增强绿色荧光蛋白(AAV-EGFP)感染BDNF-NSCs和神经干细胞以在体内追踪它们,并作为供体细胞移植到正常大鼠视网膜的视网膜下间隙,磷酸盐缓冲溶液(PBS)作为假移植作为阴性对照。分别用海德堡视网膜血管造影仪(HRA)和免疫组织化学观察和分析供体细胞在宿主视网膜中的存活、迁移和分化情况。

结果

通过有限稀释法成功纯化了神经干细胞。在通过FQ-PCR检测的mRNA水平(P<0.05)和通过ELISA测量的蛋白质水平(P<0.05)上,BDNF-NSCs中BDNF基因的表达在三组中最高,这表明BDNF在BDNF-NSCs中过表达。HRA结果表明移植细胞能够很好地存活并迁移到宿主视网膜中,而免疫组织化学分析显示,移植后2个月,与对照神经干细胞相比,移植的BDNF-NSCs更有效地分化为神经元。

结论

建立了高分泌BDNF的神经干细胞种子细胞。BDNF可促进神经干细胞在正常宿主视网膜中迁移并分化为神经细胞。

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