"Petru Poni" Institute of Macromolecular Chemistry, Department of Functional Polymers, Grigore Ghica Voda Alley 41A, Iasi 700487, Romania.
"Grigore T. Popa" University of Medicine and Pharmacy, Universitatii Street 16, Iasi 700115, Romania.
Int J Biol Macromol. 2021 Aug 1;184:898-908. doi: 10.1016/j.ijbiomac.2021.06.068. Epub 2021 Jun 19.
Herein, we entrapped Thymus vulgaris essential oil (EO) within the physically cross-linked sponge-like architecture of cryogels by ice template-assisted freeze-drying. Their 3D cryogenically-structured network was built through hydrogen bonding formed by blending two naturally-derived polysaccharides, chitosan and dextrin. The embedment of EOs within the cryogel matrix generates porous films with an increased elasticity that allows their fast shape recovery after full compression. Thus, the swollen EOs-loaded cryogel films exhibited an elastic modulus of 3.00 MPa, which is more than 40 times higher than that of polysaccharide films without EOs (an elastic modulus of only 0.07 MPa). In addition, the encapsulation of bioactive compounds endows the bio-based films with both antioxidant and antifungal properties, showing a radical scavenging activity of 65% and a zone inhibition diameter of 40 mm for Candida parapsilosis fungi. Our results recommend the entrapment of EOs into bio-based cryogel carriers as a straightforward approach to provide 'green' polysaccharide-based films having both improved physicochemical properties and remarkable antifungal activity.
在此,我们通过冰模板辅助冷冻干燥法将百里香精油(EO)包埋在冷冻凝胶的物理交联海绵状结构中。通过混合两种天然衍生多糖壳聚糖和糊精形成氢键,构建了它们的 3D 低温结构网络。EOs 在冷冻凝胶基质中的嵌入产生了具有更高弹性的多孔薄膜,允许它们在完全压缩后快速恢复形状。因此,膨胀的负载 EO 的冷冻凝胶薄膜表现出 3.00 MPa 的弹性模量,比没有 EOs 的多糖薄膜(仅 0.07 MPa 的弹性模量)高 40 多倍。此外,生物活性化合物的包封使基于生物的薄膜具有抗氧化和抗真菌特性,对 Candida parapsilosis 真菌的自由基清除活性为 65%,抑菌直径为 40mm。我们的结果表明,将 EOs 包埋在基于生物的冷冻凝胶载体中是一种简单的方法,可以提供具有改善的物理化学性质和显著抗真菌活性的“绿色”多糖基薄膜。