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由天然和合成鞘脂形成高轴比微结构。

Formation of high-axial-ratio-microstructures from natural and synthetic sphingolipids.

作者信息

Goldstein A S, Lukyanov A N, Carlson P A, Yager P, Gelb M H

机构信息

Department of Chemistry, University of Washington, Seattle 98195-1700, USA.

出版信息

Chem Phys Lipids. 1997 Aug 8;88(1):21-36. doi: 10.1016/s0009-3084(97)00042-x.

Abstract

Amphiphiles that form high-axial-ratio-microstructures (HARMs) are being considered as novel materials for controlled release of drugs and other biologically functional molecules. HARMs consisting of tubules, ribbons, solid rods and helices are formed from sphingolipids by addition of water to a solution of amphiphile in DMF. Single molecular species of galactocerebroside (GalCer) containing long unsaturated fatty acid chains or natural GalCer containing mixed-length, non-hydroxy fatty acids (NFA-GalCer) or alpha-hydroxy fatty acids (HFA-GalCer) form cylindrical structures. In contrast, single molecular species of GalCer containing long saturated fatty acids form ribbons and helices. GalCer HARMs are typically under 100 nm in diameter and have lengths of several microns. The importance of the amide of GalCer for HARM formation was evaluated using psychosine, which forms solid fibers, whereas sphingosine and an analog of GalCer in which the amide is reduced to a secondary amine form amorphous aggregates. Single molecular species of ceramide containing long unsaturated fatty acid chains form cylindrical structures, whereas those with long saturated fatty acids form ribbons and helices. Short chain saturated ceramide also forms cylindrical structures. GalCer analogs with N-acetyl-glycine in place of the galactose form fibers whereas those with N-acetyl-proline yield amorphous material. The N-acetyl-proline-containing amphiphile can de doped into pure GalCer or NFA-GalCer without perturbing tubule formation.

摘要

能够形成高轴比微结构(HARM)的两亲分子正被视作用于药物及其他生物功能分子控释的新型材料。由鞘脂通过向两亲分子在二甲基甲酰胺(DMF)中的溶液加水形成的HARM包括微管、带、实心棒和螺旋结构。含有长不饱和脂肪酸链的半乳糖脑苷脂(GalCer)单分子种类或含有混合长度非羟基脂肪酸(NFA-GalCer)或α-羟基脂肪酸(HFA-GalCer)的天然GalCer形成圆柱状结构。相比之下,含有长饱和脂肪酸的GalCer单分子种类形成带和螺旋结构。GalCer HARM的直径通常在100纳米以下,长度为几微米。使用形成固体纤维的精神病态素评估了GalCer的酰胺对于HARM形成的重要性,而鞘氨醇和酰胺还原为仲胺形式的GalCer类似物形成无定形聚集体。含有长不饱和脂肪酸链的神经酰胺单分子种类形成圆柱状结构,而含有长饱和脂肪酸的神经酰胺单分子种类形成带和螺旋结构。短链饱和神经酰胺也形成圆柱状结构。用N-乙酰甘氨酸取代半乳糖的GalCer类似物形成纤维,而用N-乙酰脯氨酸取代半乳糖的GalCer类似物产生无定形物质。含N-乙酰脯氨酸的两亲分子可以去掺杂到纯GalCer或NFA-GalCer中而不干扰微管的形成。

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