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遗传性黄斑营养不良的遗传基础及其对干细胞治疗的影响。

Genetic basis of inherited macular dystrophies and implications for stem cell therapy.

机构信息

Institute of Human Genetics, Newcastle University, International Centre for Life, Newcastle Upon Tyne NE1 3BZ, United Kingdom.

出版信息

Stem Cells. 2009 Nov;27(11):2833-45. doi: 10.1002/stem.159.

Abstract

Untreatable hereditary macular dystrophy (HMD) presents a major burden to society in terms of the resulting patient disability and the cost to the healthcare provision system. HMD results in central vision loss in humans sufficiently severe for blind registration, and key issues in the development of therapeutic strategies to target these conditions are greater understanding of the causes of photoreceptor loss and the development of restorative procedures. More effective and precise analytical techniques coupled to the development of transgenic models of disease have led to a prolific growth in the identification and our understanding of the genetic mutations that underly HMD. Recent successes in driving differentiation of pluripotent cells towards specific somatic lineages have led to the development of more efficient protocols that can yield enriched populations of a desired phenotype. Retinal pigmented epithelial cells and photoreceptors derived from these are some of the most promising cells that may soon be used in the treatment of specific HMD, especially since rapid developments in the field of induced pluripotency have now set the stage for the production of patient-derived stem cells that overcome the ethical and methodological issues surrounding the use of embryonic derivatives. In this review we highlight a selection of HMD which appear suitable candidates for combinatorial restorative therapy, focusing specifically on where those photoreceptor loss occurs. This technology, along with increased genetic screening, opens up an entirely new pathway to restore vision in patients affected by HMD.

摘要

无法治疗的遗传性黄斑营养不良(HMD)给社会带来了巨大的负担,因为它导致了患者的残疾和医疗保健系统的成本增加。HMD 导致人类的中心视力丧失严重到足以进行盲登记,针对这些情况开发治疗策略的关键问题是更好地了解光感受器丧失的原因,并开发恢复性程序。更有效的和精确的分析技术结合疾病的转基因模型的发展,导致了对 HMD 遗传突变的识别和我们的理解的大量增长。最近在促使多能细胞向特定体细胞谱系分化方面取得的成功,导致了更有效的方案的发展,可以产生所需表型的富集群体。从这些细胞中衍生出的视网膜色素上皮细胞和光感受器是最有前途的细胞之一,它们可能很快就会被用于治疗特定的 HMD,尤其是因为诱导多能性领域的快速发展现在为生产克服了围绕使用胚胎衍生产品的伦理和方法学问题的患者来源的干细胞奠定了基础。在这篇综述中,我们重点介绍了一些似乎适合组合修复治疗的 HMD,特别是那些光感受器丧失发生的地方。这项技术,以及基因筛查的增加,为受 HMD 影响的患者恢复视力开辟了一条全新的途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b240/2962903/d3725c06bf61/stem0027-2833-f1.jpg

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