Yue Yongping, Li Zhenbo, Harper Scott Q, Davisson Robin L, Chamberlain Jeffrey S, Duan Dongsheng
Department of Molecular Microbiology and Immunology, University of Missouri School of Medicine, Columbia, Mo 65212, USA.
Circulation. 2003 Sep 30;108(13):1626-32. doi: 10.1161/01.CIR.0000089371.11664.27. Epub 2003 Sep 2.
More than 90% of Duchenne muscular dystrophy (DMD) patients develop cardiomyopathy, and many die of cardiac failure. Despite tremendous progress in skeletal muscle gene therapy, few attempts have been made to treat cardiomyopathy. Microdystrophin genes are shown to correct skeletal muscle pathological lesions in the mdx mouse model for DMD. Here, we tested the therapeutic potential of adeno-associated virus (AAV)-mediated microdystrophin gene therapy in the mdx mouse heart.
AAV was delivered to the newborn mdx mouse cardiac cavity. The procedure was rapid and well tolerated. Efficient expression was achieved in the inner and the outer layers of the myocardium. The ubiquitous cytomegalovirus promoter resulted in substantially higher expression than the muscle-specific CK6 promoter. The therapeutic effects of microdystrophin were evaluated at 10 months after infection. Immunostaining demonstrated extensive microdystrophin expression and successful restoration of the dystrophin-glycoprotein complex. Importantly, AAV-mediated microdystrophin expression improved the sarcolemma integrity in the mdx heart.
We established a simple gene transfer method for efficient and persistent transduction of the mdx mouse heart. AAV-mediated microdystrophin expression restored the critical dystrophin-glycoprotein complex and improved sarcolemma integrity of the mdx heart. Our results revealed the promise of AAV-microdystrophin gene therapy for cardiomyopathy in DMD.
超过90%的杜兴氏肌营养不良症(DMD)患者会发展为心肌病,许多患者死于心力衰竭。尽管骨骼肌基因治疗取得了巨大进展,但针对心肌病的治疗尝试却很少。微肌营养不良蛋白基因已被证明可纠正DMD的mdx小鼠模型中的骨骼肌病理损伤。在此,我们测试了腺相关病毒(AAV)介导的微肌营养不良蛋白基因治疗在mdx小鼠心脏中的治疗潜力。
将AAV注入新生mdx小鼠的心腔。该操作迅速且耐受性良好。在心肌的内层和外层均实现了高效表达。普遍存在的巨细胞病毒启动子导致的表达水平明显高于肌肉特异性CK6启动子。在感染后10个月评估微肌营养不良蛋白的治疗效果。免疫染色显示微肌营养不良蛋白广泛表达,肌营养不良蛋白-糖蛋白复合物成功恢复。重要的是,AAV介导的微肌营养不良蛋白表达改善了mdx心脏的肌膜完整性。
我们建立了一种简单的基因转移方法,可对mdx小鼠心脏进行高效且持久的转导。AAV介导的微肌营养不良蛋白表达恢复了关键的肌营养不良蛋白-糖蛋白复合物,并改善了mdx心脏的肌膜完整性。我们的结果揭示了AAV-微肌营养不良蛋白基因治疗DMD心肌病的前景。