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柠檬醛在环糊精包合物的快速溶解无聚合物电纺纳米纤维中的高效包封:柠檬醛具有高热稳定性、更长的保质期和增强的水溶性。

Efficient Encapsulation of Citral in Fast-Dissolving Polymer-Free Electrospun Nanofibers of Cyclodextrin Inclusion Complexes: High Thermal Stability, Longer Shelf-Life, and Enhanced Water Solubility of Citral.

作者信息

Aytac Zeynep, Celebioglu Asli, Yildiz Zehra Irem, Uyar Tamer

机构信息

Institute of Materials Science & Nanotechnology, UNAM-National Nanotechnology Research Center, Bilkent University, Ankara 06800, Turkey.

出版信息

Nanomaterials (Basel). 2018 Oct 6;8(10):793. doi: 10.3390/nano8100793.

Abstract

Here, we report a facile production of citral/cyclodextrin (CD) inclusion complex (IC) nanofibers (NFs) from three types of CDs (hydroxypropyl-beta-cyclodextrin (HPβCD), hydroxypropyl-gamma-cyclodextrin (HPγCD), and methylated-beta-cyclodextrin (MβCD)) by an electrospinning technique without the need of any polymeric carrier matrix. Self-standing nanofibrous webs of citral/CD-IC nanofibers (citral/CD-IC-NF) with uniform fiber morphology have been successfully electrospun from aqueous solutions of citral/CD-IC. Thanks to the inclusion complex formed with CDs, the efficient preservation of citral (up to 80%) in citral/CD-IC-NFs was observed. In addition, the citral/CD-IC-NFs have shown ~50% preservation of citral for 15 days at room temperature even though citral has a highly volatile nature. The enhanced thermal stability of citral (100⁻300°C) in citral/CD-IC-NFs compared to pure citral (~50⁻165°C) has been observed. Moreover, citral/CD-IC-NFs tended to disintegrate in water very quickly. To summarize, citral was efficiently encapsulated in citral/CD-IC-NFs, and these citral/CD-IC-NFs have been shown to be fast dissolving. In citral/CD-IC-NFs, citral/CD-ICs have enhanced water solubility of citral along with high-temperature stability and a longer shelf-life.

摘要

在此,我们报道了一种通过静电纺丝技术,由三种类型的环糊精(羟丙基-β-环糊精(HPβCD)、羟丙基-γ-环糊精(HPγCD)和甲基化-β-环糊精(MβCD))轻松制备柠檬醛/环糊精(CD)包合物(IC)纳米纤维(NFs)的方法,无需任何聚合物载体基质。具有均匀纤维形态的柠檬醛/CD-IC纳米纤维(柠檬醛/CD-IC-NF)的自立纳米纤维网已成功地从柠檬醛/CD-IC的水溶液中静电纺丝而成。由于与环糊精形成了包合物,在柠檬醛/CD-IC-NFs中观察到柠檬醛的有效保存率高达约80%。此外,尽管柠檬醛具有高度挥发性,但柠檬醛/CD-IC-NFs在室温下15天内仍能保存约50%的柠檬醛。与纯柠檬醛(约50⁻165°C)相比,在柠檬醛/CD-IC-NFs中观察到柠檬醛的热稳定性增强(约100⁻300°C)。此外,柠檬醛/CD-IC-NFs在水中往往会很快分解。总之,柠檬醛被有效地封装在柠檬醛/CD-IC-NFs中,并且这些柠檬醛/CD-IC-NFs已被证明具有快速溶解性。在柠檬醛/CD-IC-NFs中,柠檬醛/CD-ICs提高了柠檬醛的水溶性,同时具有高温稳定性和更长的保质期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cd4/6215197/a672751cfacd/nanomaterials-08-00793-g001.jpg

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