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首页> 外文期刊>Food & Function >Polymer-free nanofibers from vanillin/cyclodextrin inclusion complexes: high thermal stability, enhanced solubility and antioxidant property
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Polymer-free nanofibers from vanillin/cyclodextrin inclusion complexes: high thermal stability, enhanced solubility and antioxidant property

机译:香草醛/环糊精包合物的无聚合物纳米纤维:高热稳定性,增强的溶解性和抗氧化性能

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Vanillin/cyclodextrin inclusion complex nanofibers (vanillin/CD-IC NFs) were successfully obtained from three modified CD types (HP beta CD, HP gamma CD and M beta CD) in three different solvent systems (water, DMF and DMAc) via an electrospinning technique without using a carrier polymeric matrix. Vanillin/CD-IC NFs with uniform and bead-free fiber morphology were successfully produced and their free-standing nanofibrous webs were obtained. The polymer-free CD/vanillin-IC-NFs allow us to accomplish a much higher vanillin loading (similar to 12%, w/w) when compared to electrospun polymeric nanofibers containing CD/vanillin-IC (similar to 5%, w/w). Vanillin has a volatile nature yet, after electrospinning, a significant amount of vanillin was preserved due to complex formation depending on the CD types. Maximum preservation of vanillin was observed for vanillin/M beta CD-IC NFs which is up to similar to 85% w/w, besides, a considerable amount of vanillin (similar to 75% w/w) was also preserved for vanillin/HP beta CD-IC NFs and vanillin/HP gamma CD-IC NFs. Phase solubility studies suggested a 1:1 molar complexation tendency between guest vanillin and host CD molecules. Molecular modelling studies and experimental findings revealed that vanillin : CD complexation was strongest for M beta CD when compared to HP beta CD and HP gamma CD in vanillin/CD-IC NFs. For vanillin/CD-IC NFs, water solubility and the antioxidant property of vanillin was improved significantly owing to inclusion complexation. In brief, polymer-free vanillin/CD-IC NFs are capable of incorporating a much higher loading of vanillin and effectively preserve volatile vanillin. Hence, encapsulation of volatile active agents such as flavor, fragrance and essential oils in electrospun polymer-free CD-IC NFs may have potential for food related applications by integrating the particularly large surface area of NFs with the non-toxic nature of CD and inclusion complexation benefits, such as high temperature stability, improved water solubility and an enhanced antioxidant property, etc.
机译:香兰素/环糊精包合复合物纳米纤维(香兰素/ CD-IC NFs)是通过静电纺丝从三种不同的溶剂类型(水,DMF和DMAc)中从三种改性的CD(HPβCD,HPγCD和MβCD)成功获得的。技术,不使用载体聚合物基质。成功生产出具有均匀且无珠粒纤维形态的Vanillin / CD-IC NF,并获得了它们的独立纳米纤维网。与含CD /香兰素-IC的电纺聚合物纳米纤维(约5%,w / w)相比,不含聚合物的CD /香兰素-IC-NFs使我们能够实现更高的香兰素负载量(约12%,w / w)。 w)。香兰素具有挥发性,然而,在静电纺丝后,由于CD类型的复杂形成,保留了大量的香兰素。香兰素/ M beta CD-IC NFs的香兰素最大保存量达到了约85%w / w,此外,香兰素/ HP还保留了大量香兰素(约75%w / w) βCD-IC NF和香草醛/ HPγCD-IC NF。相溶解度研究表明客体香兰素和宿主CD分子之间的摩尔比为1:1。分子模型研究和实验结果表明,与香草醛/ CD-IC NFs中的HPβCD和HPγCD相比,MβCD的香草醛:CD络合物最强。对于香兰素/ CD-IC NFs,由于包合物的结合,香兰素的水溶性和抗氧化性能得到了显着改善。简而言之,不含聚合物的香兰素/ CD-IC NF能够掺入更高含量的香兰素,并有效保存挥发性香兰素。因此,通过将特别大的NFs表面积与CD的无毒性质结合在一起,将无纺布的CD-IC NFs中的挥发性活性剂(如香料,香精和精油)封装在与食品相关的应用中具有潜在的应用前景络合的好处,例如高温稳定性,改善的水溶性和增强的抗氧化性能等。

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