Department of Chemistry and Industrial Chemistry, University of Genoa, Via Dodecaneso 31, Genoa, 16146, Italy.
Institute of Chemistry and Processes for Energy, Environment and Health (ICPEES), CNRS UMR 7515, ECPM - University of Strasbourg, 25 Rue Becquerel, Strasbourg, 67087, France.
Carbohydr Polym. 2021 Jul 15;264:118042. doi: 10.1016/j.carbpol.2021.118042. Epub 2021 Apr 8.
The present review discusses the use of cyclodextrins and their derivatives to prepare electrospun nanofibers with specific features. Cyclodextrins, owing to their unique capability to form inclusion complexes with hydrophobic and volatile molecules, can indeed facilitate the encapsulation of bioactive compounds in electrospun nanofibers allowing fast-dissolving products for food, biomedical, and pharmaceutical purposes, filtering materials for wastewater and air purification, as well as a variety of other technological applications. Additionally, cyclodextrins can improve the processability of naturally occurring biopolymers helping the fabrication of "green" materials with a strong industrial relevance. Hence, this review provides a comprehensive state-of-the-art of different cyclodextrins-based nanofibers including those made of pure cyclodextrins, of polycyclodextrins, and those made of natural biopolymer functionalized with cyclodextrins. To this end, the advantages and disadvantages of such approaches and their possible applications are investigated along with the current limitations in the exploitation of electrospinning at the industrial level.
本文综述了环糊精及其衍生物在制备具有特定性能的静电纺纳米纤维中的应用。环糊精具有独特的包合疏水性和挥发性分子的能力,可将生物活性化合物包封在静电纺纳米纤维中,从而得到用于食品、生物医学和制药目的的速溶产品、用于废水和空气净化的过滤材料以及各种其他技术应用。此外,环糊精还可以改善天然生物聚合物的加工性能,有助于制备具有强工业相关性的“绿色”材料。因此,本文综述了不同的环糊精基纳米纤维,包括纯环糊精、多环糊精以及用环糊精功能化的天然生物聚合物制成的纳米纤维。为此,研究了这些方法的优缺点及其可能的应用,并探讨了在工业水平上利用静电纺丝所面临的当前限制。