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Tracking RPE transplants labeled by retroviral gene transfer with green fluorescent protein.

机译:使用绿色荧光蛋白追踪由逆转录病毒基因转移标记的RPE移植。

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PURPOSE: To determine whether human retinal pigment epithelium (RPE) can be modified by retroviral-mediated gene transfer and to monitor the human RPE cells in the subretinal space of living rabbits with scanning laser ophthalmoscopy (SLO). METHODS: Cultured human fetal retinal pigment epithelium (HFRPE) was exposed to green fluorescent protein (GFP)-transducing retroviral vectors, Moloney murine leukemia virus, and lentivirus. The cultured cells were followed by fluorescence microscopy. Suspensions of GFP-expressing HFRPE were transplanted into the subretinal space of pigmented rabbits, and the transplant sites were examined by SLO for fluorescence, including fluorescein and indocyanine green angiography. The rabbits were euthanatized at different times after transplantation, and the retinas were studied histologically. RESULTS: Retroviral gene transfer can introduce a foreign gene such as GFP into cultured HFRPE. Gene expression is maintained in cultured RPE for at least 3 months. The lentiviral vector transduced both nondividing and dividing cells; the Moloney vector only transduced the latter. GFP-expressing cells can be followed in the living retina. Their changes reflect the rejection response followed histologically. CONCLUSIONS: Cultured HFRPE could be transduced to express GFP for long periods of time by retroviral gene transfer. GFP allowed retinal transplants and gene expression to be monitored in vivo. These results provide a model for potential ex vivo gene therapy in the subretinal space.
机译:目的:确定是否可以通过逆转录病毒介导的基因转移来修饰人视网膜色素上皮(RPE),并通过扫描激光检眼镜(SLO)监测活体兔视网膜下空间中的人RPE细胞。方法:将培养的人胎儿视网膜色素上皮(HFRPE)暴露于绿色荧光蛋白(GFP)逆转录病毒载体,莫洛尼鼠白血病病毒和慢病毒。通过荧光显微镜观察培养的细胞。将表达GFP的HFRPE悬浮液移植到有色兔子的视网膜下空间,并通过SLO检查移植部位的荧光,包括荧光素和吲哚菁绿血管造影。在移植后的不同时间对兔子实施安乐死,并对视网膜进行组织学研究。结果:逆转录病毒基因转移可以将外源基因如GFP引入培养的HFRPE中。基因表达在培养的RPE中保持至少3个月。慢病毒载体转导了非分裂细胞和分裂细胞; Moloney向量仅转导了后者。表达GFP的细胞可以在活的视网膜中被追踪。它们的变化反映了组织学上遵循的排斥反应。结论:通过逆转录病毒基因转移可以长期培养培养的HFRPE以表达GFP。 GFP允许在体内监测视网膜移植和基因表达。这些结果为视网膜下空间中潜在的离体基因治疗提供了模型。

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