Aytac Zeynep, Yildiz Zehra Irem, Kayaci-Senirmak Fatma, San Keskin Nalan Oya, Kusku Semran Ipek, Durgun Engin, Tekinay Turgay, Uyar Tamer
Institute of Materials Science & Nanotechnology, Bilkent University , Ankara 06800, Turkey.
UNAM-National Nanotechnology Research Center, Bilkent University , Ankara 06800, Turkey.
J Agric Food Chem. 2016 Oct 5;64(39):7325-7334. doi: 10.1021/acs.jafc.6b02632. Epub 2016 Sep 21.
We have proposed a new strategy for preparing free-standing nanofibrous webs from an inclusion complex (IC) of a well-known flavor/fragrance compound (limonene) with three modified cyclodextrins (HPβCD, MβCD, and HPγCD) via electrospinning (CD/limonene-IC-NFs) without using a polymeric matrix. The experimental and computational modeling studies proved that the stoichiometry of the complexes was 1:1 for CD/limonene systems. MβCD/limonene-IC-NF released much more limonene at 37, 50, and 75 °C than HPβCD/limonene-IC-NF and HPγCD/limonene-IC-NF because of the greater amount of preserved limonene. Moreover, MβCD/limonene-IC-NF has released only 25% (w/w) of its limonene, whereas HPβCD/limonene-IC-NF and HPγCD/limonene-IC-NF released 51 and 88% (w/w) of their limonene in 100 days, respectively. CD/limonene-IC-NFs exhibited high antibacterial activity against E. coli and S. aureus. The water solubility of limonene increased significantly and CD/limonene-IC-NFs were dissolved in water in a few seconds. In brief, CD/limonene-IC-NFs with fast-dissolving character enhanced the thermal stability and prolonged the shelf life along with antibacterial properties could be quite applicable in food and oral care applications.
我们提出了一种新策略,通过静电纺丝法(CD/柠檬烯-IC-NFs),由一种知名香料/香精化合物(柠檬烯)与三种改性环糊精(HPβCD、MβCD和HPγCD)形成的包合物(IC)制备独立的纳米纤维网,而无需使用聚合物基质。实验和计算建模研究证明,CD/柠檬烯体系中络合物的化学计量比为1:1。由于保留的柠檬烯量更多,MβCD/柠檬烯-IC-NF在37、50和75°C时释放的柠檬烯比HPβCD/柠檬烯-IC-NF和HPγCD/柠檬烯-IC-NF多得多。此外,MβCD/柠檬烯-IC-NF仅释放了其柠檬烯的25%(w/w),而HPβCD/柠檬烯-IC-NF和HPγCD/柠檬烯-IC-NF在100天内分别释放了其柠檬烯的51%和88%(w/w)。CD/柠檬烯-IC-NFs对大肠杆菌和金黄色葡萄球菌表现出高抗菌活性。柠檬烯的水溶性显著增加,CD/柠檬烯-IC-NFs在几秒钟内即可溶于水。简而言之,具有快速溶解特性的CD/柠檬烯-IC-NFs增强了热稳定性,延长了保质期,同时其抗菌性能在食品和口腔护理应用中可能非常适用。