首页> 外文期刊>Journal of food engineering >Menthol/cyclodextrin inclusion complex nanofibers: Enhanced water- solubility and high-temperature stability of menthol
【24h】

Menthol/cyclodextrin inclusion complex nanofibers: Enhanced water- solubility and high-temperature stability of menthol

机译:薄荷醇/环糊精包合物纳米纤维:薄荷醇的水溶性和高温稳定性增强

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Cyclodextrins are capable of forming non-covalent host-guest inclusion complexation with variety of molecules in order to enhance water-solubility and thermal stability of such hydrophobic and volatile molecules. Menthol, an efficient antibacterial and flavour/fragrance agent, is used in various applications like food, pharmacy, cosmetics, however, its low water-solubility and high volatility somewhat limit its application. In this study, menthol/cyclodextrin-inclusion complex (menthol/CD-IC) was formed in highly concentrated aqueous solution by using hydroxypropyl-beta-cyclodextrin (HP beta CD) and hydroxypropyl-gamma-cyclodextrin (HP gamma CD). The phase solubility studies and computational modeling studies revealed that menthol and these two CDs (HP beta CD and HP gamma CD) formed stable inclusion complexes with the optimal molar ratio of 1:1 (menthol:CD) and inclusion complex formation enhanced the water solubility of menthol. The electrospinning of nanofibers (NFs) from highly concentrated aqueous solutions (160%, w/v) of menthol/CD-IC was successfully performed without using additional fiber forming polymer and bead-free and uniform menthol/CD-IC NFs in the form of self-standing and flexible nanofibrous webs were produced. The initial molar ratio (1:1, menthol:CD) of the menthol/CD-IC in the solutions was mostly preserved in the menthol/CD-IC NFs (above 0.70:1.00, menthol:CD). The water solubility of menthol was enhanced and menthol/CD-IC NFs have shown fast-dissolving character. The slow-release of menthol was achieved for menthol/CD-IC NFs, and the evaporation of menthol was shifted to much higher temperature (up to 275 degrees C) for menthol/CD-IC NFs which proved the high temperature stability for menthol due to inclusion complexation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:环糊精能够与多种分子形成非共价的主-客体包涵体络合物,以增强此类疏水性和挥发性分子的水溶性和热稳定性。薄荷醇是一种有效的抗菌和增香剂/香料,用于食品,制药,化妆品等各种应用中,但是其低水溶性和高挥发性在一定程度上限制了其应用。在这项研究中,薄荷醇/环糊精包合物(薄荷醇/ CD-IC)是通过使用羟丙基-β-环糊精(HPβCD)和羟丙基-γ-环糊精(HPγCD)在高度浓缩的水溶液中形成的。相溶解度研究和计算模型研究表明,薄荷醇和这两种CD(HPβCD和HPγCD)形成稳定的包合物,最佳摩尔比为1:1(薄荷醇:CD),包合物的形成增强了水溶性薄荷脑从薄荷醇/ CD-IC的高浓度水溶液(160%,w / v)中成功纺出纳米纤维(NFs),而无需使用其他成纤聚合物和无珠粒且均匀的薄荷醇/ CD-IC NFs形式产生了自立的和柔性的纳米纤维网。溶液中薄荷醇/ CD-IC的初始摩尔比(1:1,薄荷醇:CD)大部分保留在薄荷醇/ CD-IC NFs中(高于0.70:1.00,薄荷醇:CD)。薄荷醇的水溶性增强,并且薄荷醇/ CD-IC NFs显示出快速溶解的特性。薄荷醇/ CD-IC NFs实现了薄荷醇的缓慢释放,薄荷醇/ CD-IC NFs的薄荷醇蒸发转移到了更高的温度(最高275摄氏度),这证明了薄荷醇的高温稳定性是由于包容络合物。 (C)2017 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号