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使用复合凝聚层进行蛋白质封装:自然能教给我们什么。

Protein Encapsulation Using Complex Coacervates: What Nature Has to Teach Us.

作者信息

Blocher McTigue Whitney C, Perry Sarah L

机构信息

Department of Chemical Engineering, University of Massachusetts Amherst, Amherst, MA, 01003, USA.

出版信息

Small. 2020 Jul;16(27):e1907671. doi: 10.1002/smll.201907671. Epub 2020 May 4.

Abstract

Protein encapsulation is a growing area of interest, particularly in the fields of food science and medicine. The sequestration of protein cargoes is achieved using a variety of methods, each with benefits and drawbacks. One of the most significant challenges associated with protein encapsulation is achieving high loading while maintaining protein viability. This difficulty is exacerbated because many encapsulant systems require the use of organic solvents. By contrast, nature has optimized strategies to compartmentalize and protect proteins inside the cell-a purely aqueous environment. Although the mechanisms whereby aspects of the cytosol is able to stabilize proteins are unknown, the crowded nature of many newly discovered, liquid phase separated "membraneless organelles" that achieve protein compartmentalization suggests that the material environment surrounding the protein may be critical in determining stability. Here, encapsulation strategies based on liquid-liquid phase separation, and complex coacervation in particular, which has many of the key features of the cytoplasm as a material, are reviewed. The literature on protein encapsulation via coacervation is also reviewed and the parameters relevant to creating protein-containing coacervate formulations are discussed. Additionally, potential opportunities associated with the creation of tailored materials to better facilitate protein encapsulation and stabilization are highlighted.

摘要

蛋白质包封是一个日益受到关注的领域,尤其是在食品科学和医学领域。蛋白质载体的隔离可通过多种方法实现,每种方法都有其优缺点。与蛋白质包封相关的最重大挑战之一是在保持蛋白质活性的同时实现高负载量。由于许多包封剂系统需要使用有机溶剂,这一困难更加突出。相比之下,自然界已经优化了在细胞内(一个纯水性环境)对蛋白质进行分隔和保护的策略。尽管胞质溶胶能够稳定蛋白质的具体机制尚不清楚,但许多新发现的实现蛋白质分隔的液相分离“无膜细胞器”的拥挤性质表明,蛋白质周围的物质环境可能对决定其稳定性至关重要。在此,对基于液-液相分离,特别是复合凝聚的包封策略进行综述,复合凝聚具有细胞质作为一种物质的许多关键特征。还综述了通过凝聚进行蛋白质包封的文献,并讨论了与制备含蛋白质凝聚体制剂相关的参数。此外,还强调了与创建定制材料以更好地促进蛋白质包封和稳定化相关的潜在机会。

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