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两亲分子自组装成囊泡和纤维:使用光谱和显微镜技术研究结构和动力学。

Self-Assembly of Amphiphiles into Vesicles and Fibrils: Investigation of Structure and Dynamics Using Spectroscopy and Microscopy Techniques.

机构信息

Department of Chemistry , Indian Institute of Technology , Kharagpur 721302 , WB India.

出版信息

Langmuir. 2018 Oct 2;34(39):11637-11654. doi: 10.1021/acs.langmuir.7b04355. Epub 2018 Apr 6.

Abstract

Amphiphiles are a class of molecules which are known to assemble into a variety of nanostructures. The understanding and applications of self-assembled systems are based on what has been learned from biology. Among the vast number of self-assemblies, in this article, we have described the formation, characterization, and dynamics of two important biologically inspired assemblies: vesicles and fibrils. Vesicles, which can be classified into several categories depending on the sizes and components, are of great interest due to their potential applications in drug delivery and as nanoscale reactors. The structure and dynamics of vesicles can also mimic the complex geometry of the cell membrane. On the other hand, the self-assembly of proteins, peptides, and even single amino acids leads to a number of degenerative disorders. Thus, a complete understanding of these self-assembled systems is necessary. In this article, we discuss recent work on vesicular aggregates composed of phospholipids, fatty acids, and ionic as well as nonionic surfactants and single amino acid-based fibrils such as phenylalanine and tyrosine. Beside the characterization, we also emphasize the excited-state dynamics inside the aggregates for a proper understanding of the organization, reactivity, and heterogeneity of the aggregates.

摘要

两亲分子是一类众所周知的能够组装成各种纳米结构的分子。自组装系统的理解和应用是基于从生物学中获得的知识。在众多的自组装中,本文描述了两种重要的生物启发组装体:囊泡和纤维的形成、特性和动力学。囊泡可以根据大小和成分分为几类,由于它们在药物输送和纳米级反应器中的潜在应用而备受关注。囊泡的结构和动力学也可以模拟细胞膜的复杂几何形状。另一方面,蛋白质、肽甚至单个氨基酸的自组装会导致许多退行性疾病。因此,对这些自组装系统的全面理解是必要的。本文讨论了由磷脂、脂肪酸以及离子和非离子表面活性剂以及由苯丙氨酸和酪氨酸等单个氨基酸组成的囊泡状聚集体的最新研究工作。除了特性之外,我们还强调了聚集体内部的激发态动力学,以正确理解聚集体的组织、反应性和异质性。

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