低压电子显微镜:AAV表征的新兴工具。

IF 3.7 3区 医学 Q2 CHEMISTRY, MEDICINAL
Kevin D. Ausman , Neal Whitaker , Madhumitha Balasubramanian , Bashkim Kokona , Austin Vogt , Sambit R. Kar
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引用次数: 0

摘要

透射电子显微镜已成为一个标准的表征工具,腺相关病毒为基础的基因治疗产品。然而,由于成本和专业知识的要求,许多公司无法实现内部传统的透射电子显微镜系统。最近开发的低压电子显微镜可以满足许多需要的腺相关病毒表征的一小部分成本。讨论了应用实例,包括空/满分析,破碎/不完整衣壳鉴定,以及聚集体/高分子量物种表征。我们的低压电镜空/满分析符合工业上广泛使用的正交法。此外,利用传统的透射电子显微镜和低压电子显微镜对破碎/不完整衣壳的形态进行分析,揭示了涉及开放边缘相互钝化的不完整衣壳聚集的合理机制。建立了一种低压电子显微镜对AAV制剂的综合分析方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low voltage electron microscopy: An emerging tool for AAV characterization
Transmission electron microscopy has become a standard characterization tool for adeno-associated virus-based gene therapy products. However, cost and expertise requirements place in-house traditional transmission electron microscope systems out of reach for many companies in the field. Recently developed low voltage electron microscopes can fulfill many of the needs for adeno-associated virus characterization at a fraction of the cost. Example applications are discussed, including empty/full analysis, broken/incomplete capsid identification, and aggregate/high-molecular-weight species characterization. Our low voltage electron microscopy empty/full analysis agrees with orthogonal methods widely used in industry. Furthermore, analysis of broken/incomplete capsid morphologies using traditional transmission electron microscopy and low voltage electron microscopy shed light on a plausible mechanism for incomplete capsid aggregation that involves mutual passivation of open edges. A comprehensive analysis of AAV preparations using low voltage electron microscopy has been established.
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来源期刊
CiteScore
7.30
自引率
13.20%
发文量
367
审稿时长
33 days
期刊介绍: The Journal of Pharmaceutical Sciences will publish original research papers, original research notes, invited topical reviews (including Minireviews), and editorial commentary and news. The area of focus shall be concepts in basic pharmaceutical science and such topics as chemical processing of pharmaceuticals, including crystallization, lyophilization, chemical stability of drugs, pharmacokinetics, biopharmaceutics, pharmacodynamics, pro-drug developments, metabolic disposition of bioactive agents, dosage form design, protein-peptide chemistry and biotechnology specifically as these relate to pharmaceutical technology, and targeted drug delivery.
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