HUMAN DYSTROPHIN EXPRESSION CORRECTS THE MYOPATHIC PHENOTYPE IN TRANSGENIC MDX MICE

被引:0
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作者
WELLS, DJ
WELLS, KE
WALSH, FS
DAVIES, KE
GOLDSPINK, G
LOVE, DR
CHANTHOMAS, P
DUNCKLEY, MG
PIPER, T
DICKSON, G
机构
[1] UNIV MED & DENT SCH GUYS & ST THOMAS HOSP, GUYS HOSP, DEPT EXPTL PATHOL, LONDON SE1 9RT, England
[2] UNIV LONDON ROYAL VET COLL, DEPT VET BASIC SCI, VET MOLEC & CELLULAR BIOL UNIT, LONDON NW1 0TU, England
[3] JOHN RADCLIFFE HOSP, INST MOLEC MED, MOLEC GENET GRP, OXFORD OX3 9DU, England
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暂无
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Duchenne and the less severe Becker form of muscular dystrophy (DMD,BMD) result from genetic deficiency in the level and/or activity of the protein dystrophin. The recent availability of cDNA based minigenes encoding recombinant dystrophin polypeptides has raised the possibility of somatic gene transfer as a therapeutic approach to treat dystrophin deficiency. In this respect, the mdx mouse provides a useful model of DMD exhibiting features characteristic of both the early myopathic and later fibrotic phases of the human disease. Using a mutated human cDNA, compatible in size with virus-based somatic gene transfer vectors, the pathophysiological consequences of restoring dystrophin expression have been examined in transgenic mdx mice. Transgene expression was correlated with a marked reduction of the skeletal myofibre necrosis and regeneration which is a major feature of the dystrophin-deficient phenotype in young mdx mice. The cDNA construct which is based on a very mild BMD phenotype thus encodes a highly functional dystrophin molecule whose reduced size renders it an attractive candidate for development as a therapeutic gene transfer reagent.
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页码:35 / 40
页数:6
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