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通过共递送Igf1可增强rAAV/微肌营养不良蛋白载体对营养不良性肌肉的表型改善作用。

Phenotypic improvement of dystrophic muscles by rAAV/microdystrophin vectors is augmented by Igf1 codelivery.

作者信息

Abmayr Simone, Gregorevic Paul, Allen James M, Chamberlain Jeffrey S

机构信息

Department of Neurology, Senator Paul D. Wellstone Muscular Dystrophy Cooperative Research Center, University of Washington School of Medicine, Box 357720, Seattle, WA 98195-7720, USA.

出版信息

Mol Ther. 2005 Sep;12(3):441-50. doi: 10.1016/j.ymthe.2005.04.001.

Abstract

The absence of dystrophin in Duchenne muscular dystrophy (DMD) leads to sarcolemmal instability and enhances the susceptibility of muscle fibers to contraction-induced injury. Various viral vectors have been used to deliver mini- and microdystrophin expression cassettes to muscles of dystrophin-deficient mdx mice, significantly increasing both the morphological and the functional properties of the muscles. However, dystrophin delivery to adult mdx mice has not yielded a complete rescue of the dystrophic phenotype. Here we investigated a novel strategy involving dual gene transfer of recombinant adeno-associated viral vectors expressing either microdystrophin (rAAV-muDys) or a muscle-specific isoform of Igf-1 (rAAV-mIgf-1). Injection of mdx muscles with rAAV-muDys reduced myofiber degeneration and turnover and increased their resistance to mechanical injury, but did not increase muscle mass or force generation. Injection of mdx muscles with rAAV-mIgf-1 led to increased muscle mass, but did not provide protection against mechanical injury or halt myofiber degeneration, leading to loss of the vector over time. In contrast, co-injection of the rAAV-muDys and rAAV-mIgf-1 vectors resulted in increased muscle mass and strength, reduced myofiber degeneration, and increased protection against contraction-induced injury. These results suggest that a dual-gene, combinatorial strategy could enhance the efficacy of gene therapy of DMD.

摘要

杜兴氏肌营养不良症(DMD)中肌营养不良蛋白的缺失会导致肌膜不稳定,并增加肌纤维对收缩诱导损伤的易感性。多种病毒载体已被用于将微型和微型肌营养不良蛋白表达盒递送至缺乏肌营养不良蛋白的mdx小鼠的肌肉中,显著改善了肌肉的形态和功能特性。然而,将肌营养不良蛋白递送至成年mdx小鼠并未完全挽救营养不良表型。在此,我们研究了一种新策略,即双重基因转移,涉及表达微型肌营养不良蛋白(rAAV-muDys)或肌肉特异性异构体Igf-1(rAAV-mIgf-1)的重组腺相关病毒载体。用rAAV-muDys注射mdx小鼠的肌肉可减少肌纤维变性和更新,并增加其对机械损伤的抵抗力,但不会增加肌肉质量或力量产生。用rAAV-mIgf-1注射mdx小鼠的肌肉可增加肌肉质量,但不能提供针对机械损伤的保护或阻止肌纤维变性,导致随着时间的推移载体丢失。相比之下,同时注射rAAV-muDys和rAAV-mIgf-1载体可增加肌肉质量和力量,减少肌纤维变性,并增强对收缩诱导损伤的保护。这些结果表明,双基因组合策略可提高DMD基因治疗的疗效。

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