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酰基-β-丙氨酸醇的结构、热致相行为和与膜的相互作用。应激对抗性 N-酰基乙醇胺的同系物。

Structure, thermotropic phase behavior and membrane interaction of N-acyl-β-alaninols. Homologs of stress-combating N-acylethanolamines.

机构信息

School of Chemistry, University of Hyderabad, Hyderabad, 500 046, India.

School of Chemistry, University of Hyderabad, Hyderabad, 500 046, India.

出版信息

Chem Phys Lipids. 2021 May;236:105056. doi: 10.1016/j.chemphyslip.2021.105056. Epub 2021 Feb 22.

Abstract

β-Alaninol and its derivatives were reported to exhibit interesting biological and pharmacological activities and showed potential application in formulating drug delivery vehicles. In the present study, we report the synthesis and characterization of N-acyl-β-alaninols (NABAOHs) bearing saturated acyl chains (n = 8-20) with respect to thermotropic phase behavior, supramolecular organization and interaction with diacylphosphatidylcholine, a major membrane lipid. Results obtained from DSC and powder XRD studies revealed that the transition temperatures (T), transition enthalpies (ΔH), transition entropies (ΔS) and d-spacings of NABAOHs show odd-even alteration. A linear dependence was observed in the values of ΔH and ΔS on the acyl chain length, independently for even and odd acyl chains in both dry and hydrated states; further, the even chainlength molecules exhibited higher values than the odd chainlength series. The crystals structures of N-lauroyl-β-alaninol and N-palmitoyl-β-alaninol, solved in monoclinic system in the P21/c space group, show that the NABAOHs adopt a tilted bilayer structure. A number of NH⋯O, O-H⋯O, and C-H⋯O hydrogen bonds between the hydroxyl and amide moieties of the head groups of NABAOH molecules belonging to adjacent and opposite layers stabilize the overall supramolecular organization of the self-assembled bilayer system. DSC studies on the interaction of N-myristoyl-β-alaninol (NMBAOH) with dimyristoylphosphatidylcholine (DMPC) indicate that these two lipids mix well up to 45 mol% NMBAOH, whereas phase separation was observed at higher contents of NMBAOH. Transmission electron microscopic studies reveal that mixtures containing 20-50 mol% NMBAOH form stable ULVs of 90-150 nm diameter, suitable for use in drug delivery applications.

摘要

β-丙氨醇及其衍生物具有有趣的生物和药理学活性,并显示出在药物传递载体配方方面的应用潜力。在本研究中,我们报告了具有饱和酰基链(n=8-20)的 N-酰基-β-丙氨醇(NABAOH)的合成和特性,研究了其热致相行为、超分子组织以及与二酰基磷脂酰胆碱(一种主要的膜脂)的相互作用。DSC 和粉末 XRD 研究结果表明,NABAOH 的转变温度(T)、转变焓(ΔH)、转变熵(ΔS)和 d-间距均呈现奇偶交替变化。在干燥和水合状态下,偶数和奇数酰链的ΔH 和ΔS 值均呈线性依赖于酰链长度;此外,偶数链长分子的数值高于奇数链长系列。N-月桂酰-β-丙氨醇和 N-棕榈酰-β-丙氨醇的晶体结构在单斜晶系 P21/c 空间群中解析,表明 NABAOH 采用倾斜双层结构。属于相邻和相对层的 NABAOH 分子的头基的羟基和酰胺部分之间存在许多 NH⋯O、O-H⋯O 和 C-H⋯O 氢键,这些氢键稳定了自组装双层体系的整体超分子组织。N-肉豆蔻酰-β-丙氨醇(NMBAOH)与二肉豆蔻酰磷脂酰胆碱(DMPC)相互作用的 DSC 研究表明,这两种脂质在高达 45 mol% NMBAOH 的比例下混合良好,而在更高比例的 NMBAOH 下观察到相分离。透射电子显微镜研究表明,含有 20-50 mol% NMBAOH 的混合物形成直径为 90-150nm 的稳定 ULV,适合用于药物传递应用。

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