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一种具有催化活性的脂肽的自组装及其在立方液晶中的包入

Self-Assembly of a Catalytically Active Lipopeptide and Its Incorporation into Cubosomes.

作者信息

Castelletto Valeria, Edwards-Gayle Charlotte J C, Hamley Ian W, Pelin Juliane N B D, Alves Wendel A, Aguilar Andrea M, Seitsonen Jani, Ruokolainen Janne

机构信息

Department of Chemistry, University of Reading, Reading RG6 6AD, United Kingdom.

Centro de Ciências Naturais e Humanas, Federal do ABC, Santo André 09210-580, Brazil.

出版信息

ACS Appl Bio Mater. 2019 Aug 19;2(8):3639-3647. doi: 10.1021/acsabm.9b00489. Epub 2019 Jul 3.

Abstract

The self-assembly and biocatalytic activity of the proline-functionalized lipopeptide PRW-NH-C are examined and compared to that of the related PRW-O-C lipopeptide, which differs in having an ester linker between the lipid chain and tripeptide headgroup instead of an amide linker. Lipopeptide PRW-NH-C self-assembles into spherical micelles above a critical aggregation concentration, similar to the behavior of PRW-O-C reported previously [B. M. Soares et al. , 2017, 19, 1181-1189]. However, PRW-NH-C shows an improved catalytic activity in a model aldol reaction. In addition, we explore the incorporation of the biocatalytic lipopeptide into lipid cubosomes. SAXS shows that increasing lipopeptide concentration leads to an expansion of the monoolein cubosome lattice spacing and a loss of long-range cubic order as the lipopeptide is encapsulated in the cubosomes. At higher loadings of lipopeptide, reduced cubosome formation is observed at the expense of vesicle formation. Our results show that the peptide-lipid chain linker does not influence self-assembly but does impart an improved biocatalytic activity. Furthermore, we show that lipopeptides can be incorporated into lipid cubosomes, leading to restructuring into vesicles at high loadings. These findings point the way toward the future development of bioactive lipopeptide assemblies and slow release cubosome-based delivery systems.

摘要

研究了脯氨酸功能化脂肽PRW-NH-C的自组装和生物催化活性,并将其与相关的PRW-O-C脂肽进行比较,后者的不同之处在于脂质链和三肽头基之间有一个酯连接键,而不是酰胺连接键。脂肽PRW-NH-C在临界聚集浓度以上自组装成球形胶束,这与之前报道的PRW-O-C的行为相似[B. M. 索阿雷斯等人,2017年,19,1181 - 1189]。然而,PRW-NH-C在模型羟醛反应中表现出更高的催化活性。此外,我们探索了将生物催化脂肽掺入脂质立方液晶纳米粒中。小角X射线散射表明,随着脂肽被包裹在立方液晶纳米粒中,脂肽浓度的增加会导致单油酸甘油酯立方液晶纳米粒晶格间距的扩大和长程立方有序性的丧失。在较高的脂肽负载量下,观察到立方液晶纳米粒形成减少,以囊泡形成为代价。我们的结果表明,肽-脂质链连接键不影响自组装,但确实赋予了更高的生物催化活性。此外,我们表明脂肽可以掺入脂质立方液晶纳米粒中,在高负载量下会重组为囊泡。这些发现为生物活性脂肽组装体和基于立方液晶纳米粒的缓释递送系统的未来发展指明了方向。

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