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Inner ear manifestations in CHARGE: abnormalities treatments animal models and progress toward treatments in auditory and vestibular structures

机译:CHARGE中的内耳表现:异常治疗动物模型以及听觉和前庭结构的治疗进展

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摘要

The inner ear contains the sensory organs for hearing and balance. Both hearing and balance are commonly affected in individuals with CHARGE syndrome (CS), an autosomal dominant condition caused by heterozygous pathogenic variants in the CHD7 gene. Semicircular canal dysplasia or aplasia is the single most prevalent feature in individuals with CHARGE leading to deficient gross motor skills and ambulation. Identification of CHD7 as the major gene affected in CHARGE has enabled acceleration of research in this field. Great progress has been made in understanding the role of CHD7 in the development and function of the inner ear, as well as in related organs such as the middle ear and auditory and vestibular neural pathways. The goals of current research on CHD7 and CS are to (a) improve our understanding of the pathology caused by CHD7 pathogenic variants and (b) to provide better tools for prognosis and treatment. Current studies utilize cells and whole animals, from flies to mammals. The mouse is an excellent model for exploring mechanisms of Chd7 function in the ear, given the evolutionary conservation of ear structure, function, Chd7 expression, and similarity of mutant phenotypes between mice and humans. Newly recognized developmental functions for mouse Chd7 are shedding light on how abnormalities in CHD7 might lead to CS symptoms in humans. Here we review known human inner ear phenotypes associated with CHD7 pathogenic variants and CS, summarize progress toward diagnosis and treatment of inner ear-related pathologies, and explore new avenues for treatment based on basic science discoveries.
机译:内耳包含感觉器官,以保持听力和平衡。患有CHARGE综合征(CS)的个体通常会影响听力和平衡能力,CHARGE综合征是由CHD7基因的杂合致病性变异引起的常染色体显性疾病。半圆形管发育不良或发育不全是CHARGE患者中最普遍的单一特征,可导致总体运动技能和活动能力不足。鉴定CHD7为CHARGE中受影响的主要基因使该领域的研究加速。在了解CHD7在内耳以及中耳,听觉和前庭神经通路等相关器官的发育和功能中的作用方面已经取得了巨大进展。当前对CHD7和CS的研究的目的是(a)增进我们对CHD7致病性变异引起的病理学的了解,以及(b)提供更好的预后和治疗工具。当前的研究利用细胞和整个动物,从苍蝇到哺乳动物。鉴于耳朵结构,功能,Chd7表达的进化保守性和小鼠与人之间突变表型的相似性,小鼠是探索Chd7在耳中功能机制的极佳模型。新发现的小鼠Chd7发育功能正在阐明CHD7异常如何导致人类CS症状。在这里,我们审查与CHD7致病变异和CS相关的已知人类内耳表型,总结内耳相关病理的诊断和治疗进展,并根据基础科学发现探索新的治疗途径。

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