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Emergence of highly-ordered hierarchical nanoscale aggregates on electrostatic binding of self-assembled multivalent (SAMul) cationic micelles with polyanionic heparin

机译:自组装多价(SAMul)阳离子胶束与聚阴离子肝素的静电结合时,高度有序的分层纳米级聚集体的出现

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摘要

We report three surfactants, with cationic N,N-di-(3-aminopropyl)-N-methylamine (DAPMA) head groups and aliphatic chains connected via an amide linkage, and investigate their ability to self-assemble and bind polyanionic heparin – a process of potential clinical importance in coagulation control. Modifying the hydrophobic chain length tunes the self-assembly event, with C16-DAPMA having the lowest critical micelle concentration and also being the optimal heparin binder. Remarkably highly structured hierarchical nanoscale aggregates are formed on binding between the spherical cationic micelles and linear polyanionic heparin. C14-DAPMA and C16-DAPMA yield organized polycrystalline assemblies as observed by transmission electron microscopy (TEM), predicted in solution by mesoscale simulations andudcharacterized by small-angle X-ray scattering (SAXS). This confirms that the micelles remain intact during the hierarchical assembly process and become packed in a face-centered cubic manner. The nanoscale assembly formed by C16-DAPMA showed the highest degree of order. Importantly, these studies indicate the impact of hydrophobic modification on self-assembly and heparin binding, demonstrate remarkably high stability of these self-assembled micelles even when forming strong electrostatic interactions with heparin, and provide structural insights into nanoscale hierarchical electrostatic assemblies.
机译:我们报告了三种表面活性剂,它们具有阳离子N,N-二-(3-氨基丙基)-N-甲胺(DAPMA)头基和通过酰胺键连接的脂族链,并研究了它们自组装和结合聚阴离子肝素的能力–在凝血控制中具有潜在临床重要性的过程。改变疏水链的长度可调节自组装过程,其中C16-DAPMA具有最低的临界胶束浓度,同时也是最佳的肝素结合剂。球形阳离子胶束与线性聚阴离子肝素之间的结合形成了高度结构化的分层纳米级聚集体。 C14-DAPMA和C16-DAPMA通过透射电子显微镜(TEM)观察,在溶液中通过中尺度模拟预测并通过小角度X射线散射(SAXS)表征,产生了有组织的多晶组件。这证实了胶束在分级组装过程中保持完整,并以面心为中心的立方方式堆积。由C16-DAPMA形成的纳米级组件显示出最高的有序度。重要的是,这些研究表明疏水修饰对自组装和肝素结合的影响,证明了这些自组装胶束的显着高稳定性,即使与肝素形成强的静电相互作用,也为纳米级分层静电组装提供了结构上的见识。

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