转导(生物物理学)
腺相关病毒
基因组编辑
生物
遗传增强
翻译(生物学)
基因
清脆的
计算生物学
基因组
衣壳
报告基因
基因传递
转基因
重组DNA
病毒学
载体(分子生物学)
遗传学
基因表达
信使核糖核酸
生物化学
作者
Trevor J. Gonzalez,Katherine Simon,Leo O. Blondel,Marco M. Fanous,Angela Roger,Maribel Santiago Maysonet,Garth Devlin,Timothy J. Smith,Daniel S. Oh,L. Patrick Havlik,Ruth M. Castellanos Rivera,Jorge A. Piedrahita,Mai K. ElMallah,Charles A. Gersbach,Aravind Asokan
标识
DOI:10.1038/s41467-022-33745-4
摘要
Abstract Recombinant adeno-associated viral (AAV) vectors are a promising gene delivery platform, but ongoing clinical trials continue to highlight a relatively narrow therapeutic window. Effective clinical translation is confounded, at least in part, by differences in AAV biology across animal species. Here, we tackle this challenge by sequentially evolving AAV capsid libraries in mice, pigs and macaques. We discover a highly potent, cross-species compatible variant (AAV.cc47) that shows improved attributes benchmarked against AAV serotype 9 as evidenced by robust reporter and therapeutic gene expression, Cre recombination and CRISPR genome editing in normal and diseased mouse models. Enhanced transduction efficiency of AAV.cc47 vectors is further corroborated in macaques and pigs, providing a strong rationale for potential clinical translation into human gene therapies. We envision that ccAAV vectors may not only improve predictive modeling in preclinical studies, but also clinical translatability by broadening the therapeutic window of AAV based gene therapies.
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