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诺里病听觉感觉缺陷的发生时间对治疗干预有影响。

The timing of auditory sensory deficits in Norrie disease has implications for therapeutic intervention.

机构信息

UCL Great Ormond Street Institute of Child Health, University College London, and NIHR Great Ormond Street Hospital Biomedical Research Centre, London, United Kingdom.

Wolfson Centre for Age-Related Diseases, King's College London, London, United Kingdom.

出版信息

JCI Insight. 2022 Feb 8;7(3):e148586. doi: 10.1172/jci.insight.148586.

Abstract

Norrie disease is caused by mutation of the NDP gene, presenting as congenital blindness followed by later onset of hearing loss. Protecting patients from hearing loss is critical for maintaining their quality of life. This study aimed to understand the onset of pathology in cochlear structure and function. By investigating patients and juvenile Ndp-mutant mice, we elucidated the sequence of onset of physiological changes (in auditory brainstem responses, distortion product otoacoustic emissions, endocochlear potential, blood-labyrinth barrier integrity) and determined the cellular, histological, and ultrastructural events leading to hearing loss. We found that cochlear vascular pathology occurs earlier than previously reported and precedes sensorineural hearing loss. The work defines a disease mechanism whereby early malformation of the cochlear microvasculature precedes loss of vessel integrity and decline of endocochlear potential, leading to hearing loss and hair cell death while sparing spiral ganglion cells. This provides essential information on events defining the optimal therapeutic window and indicates that early intervention is needed. In an era of advancing gene therapy and small-molecule technologies, this study establishes Ndp-mutant mice as a platform to test such interventions and has important implications for understanding the progression of hearing loss in Norrie disease.

摘要

诺里病是由 NDP 基因突变引起的,表现为先天性失明,随后出现听力损失。保护患者免受听力损失对于维持其生活质量至关重要。本研究旨在了解耳蜗结构和功能病理学的发病机制。通过对患者和幼年 Ndp 突变小鼠进行研究,我们阐明了生理变化(听脑干反应、畸变产物耳声发射、内淋巴液电位、血迷路屏障完整性)的发病顺序,并确定了导致听力损失的细胞、组织学和超微结构事件。我们发现耳蜗血管病理学的发生比以前报道的更早,并且先于感觉神经性听力损失。这项工作定义了一种疾病机制,即耳蜗微血管的早期畸形先于血管完整性的丧失和内淋巴液电位的下降,导致听力损失和毛细胞死亡,而螺旋神经节细胞则幸免。这为确定最佳治疗窗的事件提供了重要信息,并表明需要早期干预。在基因治疗和小分子技术不断发展的时代,本研究将 Ndp 突变小鼠确立为测试此类干预措施的平台,对理解诺里病听力损失的进展具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33df/8855802/874e3201f7f9/jciinsight-7-148586-g180.jpg

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