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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Fabrication of egg shell-like nanovesicles from a thiocoumarin-based epsilon-amino ester: a potential carrier
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Fabrication of egg shell-like nanovesicles from a thiocoumarin-based epsilon-amino ester: a potential carrier

机译:从基于硫脲的ε-氨基酯制造蛋壳样纳米粒子:潜在载体

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摘要

Nanoscale egg shell-like drug delivery systems from methyl 6-amino-2-oxo-2H-thiochromene-3-carboxylate, a thiocoumarin-based epsilon-amino ester, have been investigated as potential candidates for drug delivery vehicles. X-ray crystallography reveals that the epsilon-amino ester adopts a planar structure and self-associates to form a four-membered ring-like porous architecture through multiple N-H...O and C-H...S intermolecular hydrogen bonding interactions. At higher order packing, the e-amino ester forms an anti parallel sheet-like structure by intermolecular hydrogen bonding as well as face-to-face pi-pi stacking interactions. Field emission scanning electron microscopy (FE-SEM)revealed that the e-amino ester exhibits an egg shell-like porous nanovesicle morphology. These egg shell-like nanovesicles have been used as a potential carrier for the bacteriostatic antibiotic sulfamethoxazole. The spectroscopic studies as well as the growth inhibition of E. coli exhibit that the epsilon-amino ester-sulfamethoxazole formulation leads to pH responsive sustained release of the drug. This report highlights the utility of designer amino acid-drug supramolecular combinations.
机译:纳米级蛋壳样药物递送系统来自甲基6-氨基-2-氧代-2H-硫代丙酮-3-羧酸盐,一种基于硫脲的ε-氨基酯,已被研究作为药物递送载体的潜在候选者。 X射线晶体学显示,ε-氨基酯采用平面结构和自相关性,通过多个N-H ... o和C-H ... S分子间氢键相互作用形成四元环状多孔结构。在较高的填充时,E-氨基酯通过分子间氢键和面对面的PI-PI堆叠相互作用形成抗平行片状结构。场发射扫描电子显微镜(Fe-SEM)显示E-氨基酯表现出蛋壳样多孔纳米粒子形态。这些蛋壳样纳米粒子已被用作抑菌抗生素磺胺甲恶唑的潜在载体。光谱研究以及大肠杆菌的生长抑制表现出ε-氨基酯 - 磺胺甲氧唑制剂导致药物的pH值响应持续释放。本报告突出了设计者氨基酸 - 药物超分子组合的效用。

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