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治疗听力损失与Usher综合征3型的希望

听力损失与Usher综合征III型治疗的希望
Hope For Treatment Of Hearing Loss With Usher Syndrome III

A new study published in the July 11 issue of the Journal of Neuroscience details the development of the first mouse model engineered to carry the most common mutation in Usher syndrome III causative gene (Clarin-1) in North America. Further, the research team from Case Western Reserve University School of Medicine used this new model to understand why mutation in Clarin-1 leads to hearing loss.

Usher Syndrome is an incurable genetic disease and it is the most common cause of the dual sensory deficits of deafness and blindness. It affects an estimated 50,000 Americans and many more worldwide. Clinically it is subdivided into types I-III based on the degree of deafness and the presence of balance disorder and each type is associated with distinct genes. While the progression of the disease is different with each type, all patients ultimately arrive at the same consequence. The focus of this study is Usher type III. More than a dozen genetic mutations are associated with Usher III, with 'N48K' mutation in Clarin-1 being the most prevalent mutation in Usher III patients in North America. Since N48K mutation originated in Europe, results of this study will be of significance to a subset of Usher III patients in Europe as well.

"With the prospective of designing and exploring therapies for Usher III patients with N48K mutation, this is a significant preclinical finding," says Kumar Alagramam, PhD, associate professor of otolaryngology head & neck surgery, genetics, and neurosciences and senior author of the manuscript. "This key understanding of how deafness occurs in Usher III is based on three years of collaborative work."

This new study reports on the first mouse model that mimicked the N48K mutation in Usher III patients. The genetically engineered mouse developed hearing loss similar to clinical presentations observed in Usher III patients with N48K mutation. This model allowed researchers to understand the pathophysiology in fine detail, as there is no non-invasive way to evaluate soft tissue pathology in the human inner ear.

The new study explains why the mutation in the N48K mutation in Clarin-1 leads to hearing loss - mislocalization of mutant protein in mechanosensory hair cells of the inner ear. Using this new Usher III model, researchers can now explore prospective therapeutics to rescue mutant protein localization and hearing. If successful, this approach could serve as a model to treat Usher I and II associated with missense mutation.

In 2009, Alagramam et al reported on the first mouse model of Usher III. The first mouse model was gene knockout mutation and most recent mouse model is a missense mutation, the first model of its kind for Usher III.
百度翻译

一项新的研究发表在七月十一日发行的杂志上的神经信息开发了第一个小鼠模型进行工程的最常见的致病基因突变的亚瑟综合征Ⅲ(号角- 1)在北美国。此外,研究小组从凯斯西储大学医学院使用这种新的模型来理解为什么突变号角- 1导致听力损失。

亚瑟综合征是一种不可治愈的遗传性疾病,它是最常见的原因的双赤字感觉神经性耳聋失明。它的影响大约有50000美国人和许多更多的世界各地。临床上分为类型一至三的基础上一定程度的耳聋和存在平衡障碍及各类型是与不同的基因。虽然进展的疾病是不同的每种类型,所有患者最终得出相同的结果。本研究的重点是亚瑟型三。十几个基因突变与迎来第三,' n48k突变号角- 1是最普遍突变迎来第三患者在北美国。自n48k突变起源于欧洲,本研究结果将有意义的一个子集,迎来第三患者在欧洲以及。

“与前瞻性的设计探索治疗迎来第三例n48k突变,这是一个重要的临床发现,”库马尔说alagramam,博士,副教授,耳鼻喉科头颈外科和神经科学,遗传学,和高级作者的手稿。”这一关键,了解如何耳聋发生在迎来第三是根据三年的协作工作。”

这一新的研究报告了第一个小鼠模型模仿n48k突变迎来第三例。转基因小鼠听力损失类似的临床表现观察迎来第三例n48k突变。该模型允许研究人员了解病理生理学的细节,因为没有非侵入性的方式来评估软组织病理学在人类内耳。

这项新的研究解释了为什么突变的n48k突变号角- 1导致听力损失,突变蛋白在mechanosensory内耳毛细胞。利用这一新迎来第三模型,研究人员现在可以探索前瞻性治疗救援突变蛋白定位和听力。如果成功,这种方法可以作为一种模式来对待我和第二与错义突变。

2009,alagramam等人报告了第一个小鼠模型迎来三。第一个小鼠模型的基因敲除突变和最新的小鼠模型是一个错义突变,第一个模型这种迎来三。
为啥老是这几个基因 为啥老是老鼠实验
在我看来 也米什么进展啊
是啊,真是焦白了我的头发…………
谢谢分享!!!
还是遥遥无期啊
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