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同基因骨髓移植可减轻与小鼠VII型黏多糖贮积症相关的听力损失。

Syngeneic bone marrow transplantation reduces the hearing loss associated with murine mucopolysaccharidosis type VII.

作者信息

Sands M S, Erway L C, Vogler C, Sly W S, Birkenmeier E H

机构信息

Department of Internal Medicine, Washington University School of Medicine, St. Louis, MO 63110, USA.

出版信息

Blood. 1995 Sep 1;86(5):2033-40.

PMID:7655032
Abstract

MPS VII mice are deficient in beta-glucuronidase and share many clinical, biochemical, and pathologic characteristics with human mucopolysaccharidosis type VII (MPS VII). We have shown that syngeneic bone marrow transplantation (BMT) prolongs survival and reduces lysosomal storage in many organs of the MPS VII mouse. In this report, we quantify the hearing loss and determine the impact of syngeneic BMT on the development of deafness and the associated pathology in the MPS VII mouse. Eleven weeks after syngeneic BMT performed at birth, treated MPS VII mice had normal auditory-evoked brainstem responses (ABR), whereas untreated MPS VII mice had ABR thresholds 43 dB higher than normal. Treated MPS VII mice had beta-glucuronidase-positive cells in the temporal bone and in the subepithelial connective tissue of the external auditory canal. There was less thickening of the tympanic membrane and middle ear mucosa and decreased distortion of the ossicles and the cochlear bone. Although transplanted MPS VII mice had increased ABR thresholds by 33 weeks of age, four of the six had thresholds 12 to 32 dB lower than untreated mutants. These data indicate that syngeneic BMT in newborn MPS VII mice prevents early hearing loss and, in some animals, results in long-term improved auditory function.

摘要

黏多糖贮积症VII型(MPS VII)小鼠缺乏β-葡萄糖醛酸酶,与人黏多糖贮积症VII型(MPS VII)具有许多临床、生化和病理特征。我们已经表明,同基因骨髓移植(BMT)可延长MPS VII小鼠的生存期,并减少其许多器官中的溶酶体贮积。在本报告中,我们对听力损失进行了量化,并确定了同基因BMT对MPS VII小鼠耳聋发展及相关病理的影响。出生时进行同基因BMT 11周后,接受治疗的MPS VII小鼠听觉诱发电位脑干反应(ABR)正常,而未接受治疗的MPS VII小鼠ABR阈值比正常高43 dB。接受治疗的MPS VII小鼠颞骨和外耳道上皮下结缔组织中有β-葡萄糖醛酸酶阳性细胞。鼓膜和中耳黏膜增厚减轻,听小骨和耳蜗骨的变形减少。尽管移植的MPS VII小鼠在33周龄时ABR阈值升高,但6只中有4只的阈值比未治疗的突变体低12至32 dB。这些数据表明,新生MPS VII小鼠进行同基因BMT可预防早期听力损失,并且在一些动物中可导致长期听觉功能改善。

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