首页> 外文期刊>Journal of Agricultural and Food Chemistry >Molecular Encapsulation of Cinnamaldehyde within Cyclodextrin Inclusion Complex Electrospun Nanofibers: Fast-Dissolution, Enhanced Water Solubility, High Temperature Stability, and Antibacterial Activity of Cinnamaldehyde
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Molecular Encapsulation of Cinnamaldehyde within Cyclodextrin Inclusion Complex Electrospun Nanofibers: Fast-Dissolution, Enhanced Water Solubility, High Temperature Stability, and Antibacterial Activity of Cinnamaldehyde

机译:环糊精含量复合电纺纳米纤维中肉桂醛的分子包封:快速溶解,增强水溶性,高温稳定性,高温稳定性和肉桂醛的抗菌活性

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摘要

The electrospinning of nanofibers (NFs) of cinnamaldehyde inclusion complexes (ICs) with two different hydroxypropylated cyclodextrins (CDs), hydroxypropyl-beta-cyclodextrin (HP-beta-CD) and hydroxypropyl-beta-cyclodextrin (HP-beta-CD), was successfully performed in order to produce cinnamaldehyde/CD-IC NFs without using an additional polymer matrix. The inclusion complexation between cinnamaldehyde and hydroxypropylated CDs was studied by computational molecular modeling, and the results suggested that HP-beta-CD and HP-gamma-CD can be inclusion complexed with cinnamaldehyde at 1:1 and 2:1 (cinnamaldehyde/CD) molar ratios. Additionally, molecular modeling and phase solubility studies showed that water solubility of cinnamaldehyde dramatically increases with cyclodextrin inclusion complex (CD-IC) formation. The HP-beta-CD has shown slightly stronger binding with cinnamaldehyde when compared to HP-gamma-CD for cinnamaldehyde/CD-IC. Although cinnamaldehyde is a highly volatile compound, it was effectively preserved with high loading by the cinnamaldehyde/CD-IC NFs. It was also observed that cinnamaldehyde has shown much higher temperature stability in cinnamaldehyde/CD-IC NFs compared to uncomplexed cinnamaldehyde because of the inclusion complexation state of cinnamaldehyde within the hydroxypropylated CD cavity. Moreover, cinnamaldehyde still has kept its antibacterial activity in cinnamaldehyde/CD-IC NF samples when tested against Escherichia coli. In addition, cinnamaldehyde/CD-IC NF mats were fast-dissolving in water, even though pure cinnamaldehyde has a water-insoluble nature. In brief, self-standing nanofibrous mats of electrospun cinnamaldehyde/CD-IC NFs are potentially applicable in food, oral-care, healthcare, and pharmaceutics because of their fast-dissolving character, enhanced water solubility, stability at elevated temperature, and promising antibacterial activity.
机译:用两种不同的羟丙基化环糊精(CDS),羟丙基 - β-环糊精(HP-Beta-CD)和羟丙基 - β-环糊精(HP-Beta-CD)含有两种不同的羟基丙基包容物(IC)的纳米纤维(IC)的静脉刺激成功进行以在不使用额外的聚合物基质的情况下生产肉桂醛/ CD-IC NF。通过计算分子建模研究了肉桂醛和羟丙基化CDS之间的包含络合,结果表明,HP-Beta-Cd和HP-Gamma-Cd可以包含在1:1和2:1的肉桂醛络合(肉桂醛/ CD)。摩尔比。另外,分子建模和相溶解度研究表明,肉桂醛的水溶性随着环糊精包合物(CD-IC)的形成而显着增加。与肉桂醛/ CD-IC的HP-Gamma-Cd相比,HP-Beta-Cd与肉桂醛略微较强。虽然肉桂醛是一种高挥发性的化合物,但它通过肉桂醛/ CD-IC NFS有效地保存了高载荷。还观察到,由于羟丙基化的CD腔内的肉桂醛的包容性络合状态,肉桂醛在肉桂醛/ CD-IC NF中显示了更高的温度稳定性。此外,当对大肠杆菌进行测试时,Cinnamaldehyde在肉桂醛/ CD-IC NF样品中仍然保持抗菌活性。此外,肉桂醛/ CD-IC NF垫在水中是快速溶解的,即使纯肉桂醛具有水不溶性性质。简而言之,ElectromatOM肉桂醛/ CD-IC NFS的自身营养的纳米纤维垫可能适用于食品,口腔护理,医疗保健和药学,因为它们的快速溶解性,增强的水溶性,升高的温度稳定性,并且有前途的抗菌剂活动。

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