首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Autologous transplantation of genetically modified iris pigment epithelial cells: A promising concept for the treatment of age-related macular degeneration and other disorders of the eye
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Autologous transplantation of genetically modified iris pigment epithelial cells: A promising concept for the treatment of age-related macular degeneration and other disorders of the eye

机译:基因修饰的虹膜色素上皮细胞的自体移植:治疗年龄相关性黄斑变性和其他眼部疾病的有前途的概念

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摘要

Age-related macular degeneration (ARMD) is the leading cause for visual impairment and blindness in the elder population. Laser photocoagulation, photodynamic therapy and excision of neovascular membranes have met with limited success. Submacular transplantation of autologous iris pigment epithelial (IPE) cells has been proposed to replace the damaged retinal pigment epithelium following surgical removal of the membranes. We tested our hypothesis that the subretinal transplantation of genetically modified autologous IPE cells expressing biological therapeutics might be a promising strategy for the treatment of ARMD and other retinal disorders. Pigment epithelium-derived factor (PEDF) has strong antiangiogenic and neuroprotective activities in the eye. Subretinal transplantation of PEDF expressing IPE cells inhibited pathological choroidal neovascularization in rat models of laser-induced rupture of Bruch's membrane and of oxygen induced ischemic retinopathy. PEDF expressing IPE transplants also increased the survival and preserved rhodopsin expression of photoreceptor cells in the RCS rat, a model of retinal degeneration. These findings suggest a promising concept for the treatment of ARMD and other retinal disorders.
机译:与年龄有关的黄斑变性(ARMD)是老年人视觉障碍和失明的主要原因。激光光凝,光动力疗法和新血管膜切除术取得的成功有限。已经提出自体虹膜色素上皮细胞(IPE)的黄斑移植可以在手术切除膜后代替受损的视网膜色素上皮。我们检验了我们的假设,即表达生物疗法的基因修饰的自体IPE细胞的视网膜下移植可能是治疗ARMD和其他视网膜疾病的有前途的策略。色素上皮衍生因子(PEDF)在眼中具有强大的抗血管生成和神经保护活性。在激光诱导的布鲁赫膜破裂和氧诱导的缺血性视网膜病变的大鼠模型中,表达PEDF的IPE细胞的视网膜下移植可抑制病理性脉络膜新生血管形成。表达PEDF的IPE移植还增加了RCS大鼠(视网膜变性的模型)中感光细胞的存活和视紫红质表达。这些发现提示了治疗ARMD和其他视网膜疾病的有前途的概念。

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