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首页> 外文期刊>Current opinion in neurology >Usher syndrome (sensorineural deafness and retinitis pigmentosa): Pathogenesis, molecular diagnosis and therapeutic approaches
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Usher syndrome (sensorineural deafness and retinitis pigmentosa): Pathogenesis, molecular diagnosis and therapeutic approaches

机译:Usher综合征(感音神经性耳聋和色素性视网膜炎):发病机制,分子诊断和治疗方法

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Purpose of review: Usher syndrome (USH) is the most prevalent cause of hereditary deafness-blindness in humans. In this review, we pinpoint new insights regarding the molecular mechanisms defective in this syndrome, its molecular diagnosis and prospective therapies. Recent findings: Animal models wherein USH proteins were targeted at different maturation stages of the auditory hair cells have been engineered, shedding new light on the development and functioning of the hair bundle, the sound receptive structure. Improved protocols and guidelines for early molecular diagnosis of USH (USH genotyping microarrays, otochips and complete Sanger sequencing of the 366 coding exons of identified USH genes) have been developed. Approaches to alleviate or cure hearing and visual impairments have been initiated, leading to various degrees of functional rescuing. Summary: Whereas the mechanisms underlying hearing impairment in USH patients are being unraveled, showing in particular that USH1 proteins are involved in the shaping of the hair bundle and the functioning of the mechanoelectrical transduction machinery, the mechanisms underlying the retinal defects are still unclear. Efforts to improve clinical diagnosis have been successful. Yet, despite some encouraging results, further development of therapeutic approaches is necessary to ultimately treat this dual sensory defect.
机译:审查目的:Usher综合征(USH)是人类遗传性失聪-失明的最普遍原因。在这篇综述中,我们针对该综合征的分子机制,分子诊断和前瞻性疗法提出了新的见解。最近的发现:已经设计了其中USH蛋白针对听觉毛细胞成熟阶段的动物模型,从而为发束的发展和功能(声音的接受结构)提供了新的思路。已开发出用于USH早期分子诊断的改进方案和指南(USH基因分型微阵列,耳模芯片和已鉴定USH基因的366个编码外显子的完整Sanger测序)。已经开始减轻或治愈听力和视力障碍的方法,导致不同程度的功能抢救。简介:尽管USH患者听力障碍的潜在机制尚未阐明,特别是表明USH1蛋白与发束的形成和机电转导机制的功能有关,但视网膜缺陷的潜在机制仍不清楚。改善临床诊断的努力已经成功。然而,尽管取得了令人鼓舞的结果,但仍需要进一步发展治疗方法以最终治疗这种双重感觉缺陷。

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