Keywords
> MYOBASE > RESEARCH > genetic research > methods in genetics > genetic engineering > gene transfer > genetic vectors > viral vectors > adenoassociated vectors
adenoassociated vectorsSynonymsadeno-associated virus vector ;vecteur adéno-associé ;vecteur AAV ;adenoassociated vectors ;AAV adeno-associated vectors |
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Mendell JR, Author ; Rodino-Klapac LR | 2016Comment on: Evidence-based path to newborn screening for Duchenne muscular dystrophy. [Ann Neurol. 2012]Article
Article
Heckmann MB, Author ; Bauer R ; Jungmann A ; Winter L ; Rapti K ; Strucksberg KH ; Clemen CS ; Li Z ; Schröder R ; Katus HA ; Muller OJ | 2016Article
Peccate C, Author ; Mollard A ; Le Hir M ; Julien L ; McClorey G ; Jarmin S ; Le Heron A ; Dickson G ; Benkhelifa Ziyyat S ; Pietri Rouxel F ; Wood MJ ; Voit T ; Lorain S | 2016Article
Powis RA, Author ; Karyka E ; Boyd P ; Come J ; Jones RA ; Zheng Y ; Szunyogova E ; Groen EJ ; Hunter G ; Thomson D ; Wishart TM ; Becker CG ; Parson SH ; Martinat C ; Azzouz M ; Gillingwater TH | 2016Article
Armbruster N, Author ; Lattanzi A ; Jeavons M ; Van Wittenberghe L ; Gjata B ; Marais T ; Martin S ; Vignaud A ; Voit T ; Mavilio F ; Barkats M ; Buj Bello A | 2016Article
Ronzitti G, Author ; Bortolussi G ; van Dijk R ; Collaud F ; Charles S ; Leborgne C ; Vidal P ; Martin S ; Gjata B ; Sola MS ; Van Wittenberghe L ; Vignaud A ; Veron P ; Bosma PJ ; Muro AF ; Mingozzi F | 2016Article
Vandendriessche T, Author ; Chuah MK | 2016Comment on: - CRISPR-mediated Genome Editing Restores Dystrophin Expression and Function in mdx Mice. Mol Ther. 2016 Mar;24(3):564-9. - Postnatal genome editing partially restores dystrophin expression in a mouse model of muscular dystrophy.[...]Article
Pourshafie N, Author ; Lee PR ; Chen KL ; Harmison GG ; Bott LC ; Katsuno M ; Sobue G ; Burnett BG ; Fischbeck KH ; Rinaldi C | 2016Article
Shababi M, Author ; Feng Z ; Villalon E ; Sibigtroth CM ; Osman EY ; Miller MR ; Williams-Simon PA ; Lombardi A ; Sass TH ; Atkinson AK ; Garcia ML ; Ko CP ; Lorson CL | 2016Article
Wood H, Author | 2016Comment on: Multiplex CRISPR/Cas9-based genome editing for correction of dystrophin mutations that cause Duchenne muscular dystrophy. [Nat Commun. 2015]Article
Long C, Author ; Amoasii L ; Mireault AA ; McAnally JR ; Li H ; Sanchez-Ortiz E ; Bhattacharryya S ; Shelton JM ; Bassel Duby R ; Olson EN | 2016Comment in: Genetic engineering: In vivo genome editing - growing in strength. [Nat Rev Genet. 2016] CRISPR/Cas9 Flexes Its Muscles: In Vivo Somatic Gene Editing for Muscular Dystrophy. [Mol Ther. 2016]Article
Tabebordbar M, Author ; Zhu K ; Cheng JKW ; Chew WL ; Widrick JJ ; Yan WX ; Maesner C ; Wu EY ; Xiao R ; Ran FA ; Cong L ; Zhang F ; Vandenberghe LH ; Church GM ; Wagers AJ | 2016Comment in: Genetic engineering: In vivo genome editing - growing in strength. [Nat Rev Genet. 2016] CRISPR/Cas9 Flexes Its Muscles: In Vivo Somatic Gene Editing for Muscular Dystrophy. [Mol Ther. 2016]Article
Nelson CE, Author ; Hakim CH ; Ousterout DG ; Thakore PI ; Moreb EA ; Rivera RM ; Madhavan S ; Pan X ; Ran FA ; Yan WX ; Asokan A ; Zhang F ; Duan D ; Gersbach CA | 2016Comment in: Cautious welcome for gene editing of Duchenne muscular dystrophy in animal model. [BMJ. 2016] Genetic engineering: In vivo genome editing - growing in strength. [Nat Rev Genet. 2016] Exon Snipping in Duchenne Muscular [...]Article
Kemaladewi DU, Author ; Cohn RD | 2016Comment on: In vivo genome editing improves muscle function in a mouse model of Duchenne muscular dystrophy. [Science. 2016]