Ion Chromatography and Sample Preparation, Thermo Fisher Scientific, Sunnyvale, CA, United States.
Department of Chemistry, Yale University, New Haven, CT, United States.
Front Immunol. 2021 Apr 1;12:657795. doi: 10.3389/fimmu.2021.657795. eCollection 2021.
Progress in recombinant AAV gene therapy product and process development has advanced our understanding of the basic biology of this critical delivery vector. The discovery of rAAV capsid post-translational modifications (PTMs) has spurred interest in the field for detailed rAAV-specific methods for vector lot characterization by mass spectrometry given the unique challenges presented by this viral macromolecular complex. Recent concerns regarding immunogenic responses to systemically administered rAAV at high doses has highlighted the need for investigators to catalog and track potentially immunogenic vector lot components including capsid PTMs and PTMs on host cell protein impurities. Here we present a simple step-by-step guide for academic rAAV laboratories and Chemistry, Manufacturing and Control (CMC) groups in industry to perform an in-house or outsourced bottom-up mass spectrometry workflow to characterize capsid PTMs and process impurities.
腺相关病毒(AAV)基因治疗产品和工艺的开发取得了进展,加深了我们对这种关键递药载体的基础生物学的理解。AAV 衣壳翻译后修饰(PTM)的发现激发了人们的兴趣,希望通过质谱法为载体批次鉴定开发特定于 AAV 的详细方法,因为这种病毒大分子复合物带来了独特的挑战。最近,人们对高剂量系统性给予的重组 AAV 产生免疫原性反应的担忧,突出表明研究人员需要对潜在的免疫原性载体批次成分进行编目和跟踪,包括衣壳 PTM 以及宿主细胞蛋白杂质上的 PTM。在这里,我们为学术 AAV 实验室和行业中的化学、制造和控制(CMC)小组提供了一个简单的分步指南,以执行内部或外包的自下而上的质谱工作流程,对衣壳 PTM 和工艺杂质进行表征。