Coll De Peña Adriana, White James D, Mehta Dipti R, Ben Frej Menel, Tripathi Anubhav
Center for Biomedical Engineering, School of Engineering, Brown University, Providence, Rhode Island 02912, United States.
Applied Genomics, Revvity, Hopkinton, Massachusetts 01748, United States.
ACS Omega. 2024 Jan 10;9(3):4027-4036. doi: 10.1021/acsomega.3c09006. eCollection 2024 Jan 23.
Despite recent advances in nucleic acid delivery systems with the success of LNP vehicles, adeno-associated virus (AAV) remains the leading platform for targeted gene delivery due to its low immunogenicity to humans, high transduction efficiency, and range of serotypes with varying tropisms. Depending on the therapeutic goals and serotype used, different production conditions may be more amenable, generating an ever-growing need for rapid yet robust analytical techniques to support the high-quality manufacturing of AAV. A critical bottleneck exists for assessing full capsids where rapid, high-throughput techniques capable of analyzing a range of serotypes are needed. Here, we present a rapid, high-throughput analytical technique, microfluidic electrophoresis, for the assessment of full capsids compatible with AAV1, AAV2, AAV6, AAV8, and AAV9 without the need for assay modifications or optimizations, and AAV5 with some constraints. The method presented in this study uses a mathematical formulation we developed previously with a reference standard to combine the independently obtained capsid protein and single-stranded DNA (ssDNA) profiles to estimate the percentage of full capsids in a sample of unknown concentration. We assessed the ability to use a single serotype (AAV8) as the reference standard regardless of the serotype of the sample being analyzed so long as the melting temperature (Tm) of the capsids is within 12 °C from the Tm of AAV8. Using this method, we are able to characterize samples ±6.1% with an average analytical turnaround time of <5 min/sample, using only 10 μL/sample at a concentration of 2.5 × 10 VG/mL.
尽管随着脂质纳米颗粒(LNP)载体的成功,核酸递送系统最近取得了进展,但腺相关病毒(AAV)由于其对人类的低免疫原性、高转导效率以及具有不同嗜性的血清型范围,仍然是靶向基因递送的主要平台。根据治疗目标和所使用的血清型,不同的生产条件可能更适用,这就产生了对快速且稳健的分析技术的不断增长的需求,以支持AAV的高质量生产。在评估完整衣壳方面存在一个关键瓶颈,即需要能够分析一系列血清型的快速、高通量技术。在这里,我们提出了一种快速、高通量的分析技术——微流控电泳,用于评估与AAV1、AAV2、AAV6、AAV8和AAV9兼容的完整衣壳,无需对检测进行修改或优化,对于AAV5则有一些限制。本研究中提出的方法使用了我们之前开发的一种数学公式,并结合参考标准,将独立获得的衣壳蛋白和单链DNA(ssDNA)图谱相结合,以估计未知浓度样品中完整衣壳的百分比。我们评估了使用单一血清型(AAV8)作为参考标准的能力,无论被分析样品的血清型如何,只要衣壳的解链温度(Tm)与AAV8的Tm相差在12°C以内即可。使用这种方法,我们能够以±6.1%的精度对样品进行表征,平均分析周转时间<5分钟/样品,在浓度为2.5×10病毒基因组/毫升时,每个样品仅需10微升。