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Repair of the degenerate retina by photoreceptor transplantation

机译:通过感光细胞移植修复退化的视网膜

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摘要

Despite different aetiologies, age-related macular degeneration and most inherited retinal disorders culminate in the same final common pathway, the loss of photoreceptors. There are few treatments and none reverse the loss of vision. Photoreceptor replacement by transplantation is proposed as a broad treatment strategy applicable to all degenerations. Recently, we demonstrated restoration of vision following rod-photoreceptor transplantation into a mouse model of stationary night-blindness, raising the critical question of whether photoreceptor replacement is equally effective in different types and stages of degeneration. We present a comprehensive assessment of rod-photoreceptor transplantation across six murine models of inherited photoreceptor degeneration. Transplantation is feasible in all models examined but disease type has a major impact on outcome, as assessed both by the morphology and number of integrated rod-photoreceptors. Integration can increase {Prph2~(+/△307)), decrease (Crb1~(rd8/rd8) Gnat1~(-/-), Rho~(-/-)), or remain constant (PDE6β~(rd1/rd1),Prph2~(rd2/rd2)) with disease progression, depending upon the gene defect, with no correlation with severity. Robust integration is possible even in late-stage disease. Glial scarring and outer limiting membrane integrity, features that change with degeneration, significantly affect transplanted photoreceptor integration. Combined breakdown of these barriers markedly increases integration in a model with an intact outer limiting membrane, strong gliotic response, and otherwise poor transplantation outcome (Rho~(-/-)), leading to an eightfold increase in integration and restoration of visual function. Thus, it is possible to achieve robust integration across a broad range of inherited retinopathies. Moreover, transplantation outcome can be improved by administering appropriate, tailored manipulations of the recipient environment.
机译:尽管病因不同,但与年龄相关的黄斑变性和大多数遗传性视网膜疾病最终以相同的最终共同途径,即光感受器的丧失而达到顶峰。很少有治疗方法,并且没有一种可以逆转视力丧失。提出通过移植代替感光体作为适用于所有变性的广泛治疗策略。最近,我们证明了将杆状感光体移植到静止性夜盲症小鼠模型后视力得以恢复,从而提出了一个关键问题,即在不同类型和阶段的变性中,感光体置换是否同样有效。我们目前对继承的感光细胞变性的六个鼠模型进行杆感光细胞移植的全面评估。移植在所有检查的模型中都是可行的,但是疾病的类型对结局有重大影响,如通过整合的棒状感光器的形态和数量来评估。积分可以增加{Prph2〜(+ /△307)),减小积分(Crb1〜(rd8 / rd8)Gnat1〜(-/-),Rho〜(-/-))或保持恒定(PDE6β〜(rd1 / rd1) ),Prph2〜(rd2 / rd2))随疾病进展而变,取决于基因缺陷,与严重程度无关。即使在晚期疾病中,也可能进行强大的整合。胶质瘢痕形成和外部限制膜的完整性,随着变性而改变的特征,显着影响移植的感光细胞的整合。这些障碍的综合破坏显着增加了具有完整外部限制膜,强烈的神经胶质细胞反应以及不良的移植结果(Rho〜(-/-))的模型的整合,从而导致整合和视觉功能恢复增加了八倍。因此,有可能在广泛的遗传性视网膜病中实现稳固的整合。此外,可以通过对受体环境进行适当的定制操作来改善移植结果。

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  • 作者单位

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

    Developmental Biology Unit, University College London Institute of Child Health, London WC1N 1EH, United Kingdom;

    Developmental Biology Unit, University College London Institute of Child Health, London WC1N 1EH, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom,Molecular Immunology Unit, University College London Institute of Child Health, London WC1N 1EH, United Kingdom;

    Department of Genetics, University College London Institute of Ophthalmology, London EC1V 9EL, United Kingdom;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    gliosis; retinal degeneration; stem cells;

    机译:神经胶质视网膜变性干细胞;
  • 入库时间 2022-08-18 00:39:51

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