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Referateband: Molecular Understanding of Hearing – How Does This Matter to the Hearing Impaired?

机译:导带:对听力的分子理解-这对听力受损的人有何影响?

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摘要

This review addresses the advances of our molecular understanding of hearing and how this benefits the hearing impaired. Classical biochemical methods usually fall short in contributing to the analysis of the molecular mechanisms of hearing e. g. in the cochlea, the auditory part of the inner ear, due to the scarcity of the cells of interest. Genetics, molecular cell biology, and physiology, on the other hand, have elucidated the intricate molecular and cellular mechanisms that bring about the outstanding performance of the auditory system. Many of those mechanisms are quite unique and specialized to serve the specific needs of hearing. Hence, their defects often spare other organs and lead to specific non-syndromic deafness. High throughput sequencing can reveal causes of sporadic deafness when combined with careful bioinformatics. Molecular approaches are also helpful for understanding more common forms of hearing impairment such as noise-induced hearing impairment. While molecular therapies are not yet clinically available, careful molecular genetic analysis helps to counsel the hearing impaired subjects.
机译:这篇综述探讨了我们对听觉的分子理解的进步,以及这如何使听障人士受益。经典的生化方法通常不足以帮助分析听力的分子机制。 G。在耳蜗,内耳的听觉部分,由于目标细胞的缺乏。另一方面,遗传学,分子细胞生物学和生理学阐明了导致听觉系统出色表现的复杂分子和细胞机制。这些机制中有许多是非常独特的,专门用于满足听力的特定需求。因此,它们的缺陷通常会累及其他器官,并导致特定的非综合征性耳聋。当与仔细的生物信息学结合使用时,高通量测序可以揭示散发性耳聋的原因。分子方法也有助于理解更常见的听力障碍形式,例如噪音引起的听力障碍。尽管分子疗法尚未在临床上可用,但仔细的分子遗传学分析有助于为听力受损的受试者提供咨询。

著录项

  • 期刊名称 Thieme Open Access
  • 作者

    Tobias Moser;

  • 作者单位
  • 年(卷),期 -1(97),Suppl 1
  • 年度 -1
  • 页码 S214–S230
  • 总页数 8
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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