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超大蛋白质颗粒的工艺开发和产品配方中的特性表征与稳定性研究

Characterization and stabilization in process development and product formulation for super large proteinaceous particles.

作者信息

Yang Yanli, Su Zhiguo, Ma Guanghui, Zhang Songping

机构信息

State Key Laboratory of Biochemical Engineering Institute of Process Engineering Chinese Academy of Sciences Beijing P. R. China.

出版信息

Eng Life Sci. 2020 Jul 19;20(11):451-465. doi: 10.1002/elsc.202000033. eCollection 2020 Nov.

Abstract

Super large proteinaceous particles (SLPPs) such as virus, virus like particles, and extracellular vesicles have successful and promising applications in vaccination, gene therapy, and cancer treatment. The unstable nature, the complex particulate structure and composition are challenges for their manufacturing and applications. Rational design of the processing should be built on the basis of fully understanding the characteristics of these bio-particles. This review highlights useful analytical techniques for characterization and stabilization of SLPPs in the process development and product formulations, including high performance size exclusion chromatography, multi-angle laser light scattering, asymmetrical flow field-flow fractionation, nanoparticle tracking analysis, CZE, differential scanning calorimetry, differential scanning fluorescence, isothermal titration calorimetry , and dual polarization interferometry. These advanced analytical techniques will be helpful in obtaining deep insight into the mechanism related to denaturation of SLPPs, and more importantly, in seeking solutions to preserve their biological functions against deactivation or denaturation. Combination of different physicochemical techniques, and correlation with in vitro or in vivo biological activity analyses, are considered to be the future trend of development in order to guarantee a high quality, safety, and efficacy of SLPPs.

摘要

超大型蛋白质颗粒(SLPPs),如病毒、病毒样颗粒和细胞外囊泡,在疫苗接种、基因治疗和癌症治疗方面有着成功且前景广阔的应用。其不稳定的性质、复杂的颗粒结构和组成对它们的制造及应用构成了挑战。合理的工艺设计应建立在充分了解这些生物颗粒特性的基础之上。本综述重点介绍了在工艺开发和产品配方中用于表征和稳定SLPPs的有用分析技术,包括高效尺寸排阻色谱法、多角度激光散射法、不对称流场流分级法、纳米颗粒跟踪分析、毛细管区带电泳、差示扫描量热法、差示扫描荧光法、等温滴定量热法和双偏振干涉法。这些先进的分析技术将有助于深入了解与SLPPs变性相关的机制,更重要的是,有助于寻找解决方案以保护它们的生物学功能不被失活或变性。不同物理化学技术的结合,以及与体外或体内生物活性分析的相关性,被认为是未来的发展趋势,以便确保SLPPs的高质量、安全性和有效性。

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