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通过动脉内注射肌肉特异性1型重组腺相关病毒载体对α-肌聚糖缺乏症进行表型校正。

Phenotypic correction of alpha-sarcoglycan deficiency by intra-arterial injection of a muscle-specific serotype 1 rAAV vector.

作者信息

Fougerousse Francoise, Bartoli Marc, Poupiot Jérôme, Arandel Ludovic, Durand Muriel, Guerchet Nicolas, Gicquel Evelyne, Danos Olivier, Richard Isabelle

机构信息

Généthon, CNRS UMR8115, 1 rue de l'Internationale, Evry, France.

出版信息

Mol Ther. 2007 Jan;15(1):53-61. doi: 10.1038/sj.mt.6300022.

Abstract

alpha-Sarcoglycanopathy (limb-girdle muscular dystrophy type 2D, LGMD2D) is a recessive muscular disorder caused by deficiency in alpha-sarcoglycan, a transmembrane protein part of the dystrophin-associated complex. To date, no treatment exists for this disease. We constructed recombinant pseudotype-1 adeno-associated virus (rAAV) vectors expressing the human alpha-sarcoglycan cDNA from a ubiquitous or a muscle-specific promoter. Evidence of specific immune response leading to disappearance of the vector was observed with the ubiquitous promoter. In contrast, efficient and sustained transgene expression with correct sarcolemmal localization and without evident toxicity was obtained with the muscle-specific promoter after intra-arterial injection into the limbs of an LGMD2D murine model. Transgene expression resulted in restoration of the sarcoglycan complex, histological improvement, membrane stabilization, and correction of pseudohypertrophy. More importantly, alpha-sarcoglycan transfer produced full rescue of the contractile force deficits and stretch sensibility and led to an increase of the global activity of the animals when both posterior limbs are injected. Our results establish the feasibility for AAV-mediated alpha-sarcoglycan gene transfer as a therapeutic approach.

摘要

α-肌聚糖病(肢带型肌营养不良2D型,LGMD2D)是一种隐性肌肉疾病,由α-肌聚糖缺乏引起,α-肌聚糖是肌营养不良蛋白相关复合物的跨膜蛋白部分。迄今为止,尚无针对该疾病的治疗方法。我们构建了重组假型1腺相关病毒(rAAV)载体,其从普遍存在的或肌肉特异性启动子表达人α-肌聚糖cDNA。在普遍存在的启动子的情况下,观察到导致载体消失的特异性免疫反应的证据。相比之下,在向LGMD2D小鼠模型的肢体进行动脉内注射后,使用肌肉特异性启动子获得了高效且持续的转基因表达,具有正确的肌膜定位且无明显毒性。转基因表达导致肌聚糖复合物的恢复、组织学改善、膜稳定以及假肥大的纠正。更重要的是,当双侧后肢都进行注射时,α-肌聚糖转移完全挽救了收缩力缺陷和伸展敏感性,并导致动物整体活动增加。我们的结果确立了AAV介导的α-肌聚糖基因转移作为一种治疗方法的可行性。

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