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Nanomorphological Diversity of Self-Assembled Cyclopeptisomes Investigated via Thermodynamic and Kinetic Controls

机译:通过热力学和动力学控制研究自组装环肽异构体的纳米形态多样性。

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The physicochemical and biological characteristics of vesicles are dependent on the type of self-assembly building blocks and methods of preparation. In this report, we designed a vesicle-forming linear and cyclic peptide building blocks and investigated the effect of molecular topology and thermodynamic and kinetic controls on the stability and morphological features of the self-assembled vesicles. Comparison of topological effect on self-assembly revealed that the strong association of the aromatic hydrophobic segments is observed only in the cyclic peptide, which is most likely the results of constrained structure along with the restriction in the molecular degree of freedom. Consequently, the formation of stable vesicles could be observed only with the cyclic peptide. Further investigation with cyclic peptide building blocks revealed that depending on the control methods, vesicles with a variety of structural features, such as polygonal, wrinkled, round, round patched, and round-fused vesicles, could be fabricated. Our results demonstrate that existing vesicle structures constitute only a fraction of the possible structural diversity and that macrocyclic peptides can provide a wealth of opportunities in vesicle engineering.
机译:囊泡的理化和生物学特性取决于自组装构件的类型和制备方法。在本报告中,我们设计了形成囊泡的线性和环状肽结构单元,并研究了分子拓扑结构以及热力学和动力学控制对自组装囊泡的稳定性和形态特征的影响。比较拓扑效应对自组装的影响,发现仅在环肽中观察到芳族疏水链段的强缔合,这很可能是结构受限以及分子自由度受到限制的结果。因此,仅用环状肽才能观察到稳定的囊泡的形成。对环肽结构单元的进一步研究表明,根据控制方法的不同,可以制造具有多种结构特征的囊泡,例如多边形,褶皱,圆形,圆形补丁和圆形融合的囊泡。我们的结果表明,现有的囊泡结构仅构成可能的结构多样性的一小部分,大环肽可以在囊泡工程中提供大量的机会。

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