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Defects in middle ear cavitation cause conductive hearing loss in the Tcof1 mutant mouse.

机译:中耳空化的缺陷会导致Tcof1突变型小鼠传导性听力损失。

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摘要

Conductive hearing loss (CHL) is one of the most common forms of human deafness. Despite this observation, a surprising gap in our understanding of the mechanisms underlying CHL remains, particularly with respect to the molecular mechanisms underlying middle ear development and disease. Treacher Collins syndrome (TCS) is an autosomal dominant disorder of facial development that results from mutations in the gene TCOF1. CHL is a common feature of TCS but the causes of the hearing defect have not been studied. In this study, we have utilized Tcof1 mutant mice to dissect the developmental mechanisms underlying CHL. Our results demonstrate that effective cavitation of the middle ear is intimately linked to growth of the auditory bulla, the neural crest cell-derived structure that encapsulates all middle ear components, and that defects in these processes have a profoundly detrimental effect on hearing. This research provides important insights into a poorly characterized cause of human deafness, and provides the first mouse model for the study of middle ear cavity defects, while also being of direct relevance to a human genetic disorder.
机译:传导性听力损失(CHL)是人类耳聋的最常见形式之一。尽管有这种观察,但在我们对CHL潜在机制的理解上仍然存在令人惊讶的空白,特别是在中耳发育和疾病的分子机制方面。 Treacher Collins综合征(TCS)是面部发育的常染色体显性遗传疾病,由基因TCOF1的突变引起。 CHL是TCS的共同特征,但尚未研究听力障碍的原因。在这项研究中,我们已经利用Tcof1突变小鼠解剖了CHL的发育机制。我们的结果表明,中耳的有效空化与听觉大疱的生长密切相关,后者是神经the细胞衍生的结构,囊括了中耳的所有成分,并且这些过程中的缺陷会对听力产生深远的不利影响。这项研究提供了对人类耳聋特征欠佳的重要见解,并为研究中耳腔缺陷提供了第一个小鼠模型,同时也与人类遗传疾病直接相关。

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