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小鼠VII型黏多糖贮积症的耳部病理学。听力损失的形态学关联。

Pathology of the ear in murine mucopolysaccharidosis type VII. Morphologic correlates of hearing loss.

作者信息

Berry C L, Vogler C, Galvin N J, Birkenmeier E H, Sly W S

机构信息

Department of Pathology, Saint Louis University School of Medicine, Missouri.

出版信息

Lab Invest. 1994 Sep;71(3):438-45.

PMID:7933993
Abstract

BACKGROUND

Patients with mucopolysaccharidosis commonly have hearing impairment but the morphologic alterations in the ear caused by these lysosomal storage diseases are incompletely defined.

EXPERIMENTAL DESIGN

We studied a murine model of mucopolysaccharidosis VII with clinical features, including conductive hearing loss and biochemical, and pathologic features similar to those seen in human mucopolysaccharidoses. Gross morphology, radiography, light and electron microscopy were used to define the pathologic alterations in the ear that correlate with auditory dysfunction in mucopolysaccharidosis VII.

RESULTS

Cerumen occluded the external auditory canal and there was a severe otitis media. The bone encasing the middle and inner ear was sclerotic and opaque and the temporal bone and the ossicles and their joints contained cells distended by enlarged lysosomes. Hair cell damage and multifocal lysosomal distention in endoneural fibroblasts and spiral ganglion neurons characterized the mucopolysaccharidosis VII cochlea.

CONCLUSIONS

The external auditory canal obstruction, otitis media, and ossicle articular alterations in mucopolysaccharidosis VII mice cause a conductive hearing loss. The hair cell damage and neuronal storage may contribute to sensorineural deafness. This model allows investigation of the pathophysiology of auditory dysfunction in mucopolysaccharidosis and the effects of therapies on hearing loss.

摘要

背景

黏多糖贮积症患者通常存在听力障碍,但这些溶酶体贮积病引起的耳部形态学改变尚未完全明确。

实验设计

我们研究了黏多糖贮积症VII型的小鼠模型,其具有包括传导性听力损失在内的临床特征,以及与人类黏多糖贮积症相似的生化和病理特征。通过大体形态学、放射学、光镜和电镜来确定与黏多糖贮积症VII型听觉功能障碍相关的耳部病理改变。

结果

耵聍堵塞外耳道,且存在严重的中耳炎。包裹中耳和内耳的骨质硬化且不透明,颞骨、听小骨及其关节含有因溶酶体增大而膨胀的细胞。黏多糖贮积症VII型耳蜗的特征为毛细胞损伤以及神经内膜成纤维细胞和螺旋神经节神经元的多灶性溶酶体膨胀。

结论

黏多糖贮积症VII型小鼠的外耳道阻塞、中耳炎和听小骨关节改变导致传导性听力损失。毛细胞损伤和神经元贮积可能导致感音神经性耳聋。该模型有助于研究黏多糖贮积症听觉功能障碍的病理生理学以及治疗对听力损失的影响。

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