College of Food Science and Engineering, Yangzhou University, Yangzhou 225127, China.
State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural University, Hefei 230036, China.
Int J Biol Macromol. 2024 Mar;260(Pt 2):129568. doi: 10.1016/j.ijbiomac.2024.129568. Epub 2024 Jan 20.
In this study, chitosan (CS) was conjugated with epicatechin gallate (ECG) to prepare CS-ECG conjugates with different substitution degrees (5.18 %, 6.36 % and 7.74 %). Then, antioxidant packaging films were fabricated by blending CS and CS-ECG conjugates. The impact of CS-ECG conjugates' substitution degree on the functionality of CS/CS-ECG films was determined. CS-ECG conjugates showed UV absorption at 275 nm, proton signal at 6.85 ppm and infrared absorption at 1533 cm, assigning to the conjugated ECG. As compared with CS, CS-ECG conjugates exhibited less crystalline state but higher antioxidant activity. The structural characterization of CS/CS-ECG films showed CS and CS-ECG conjugates formed hydrogen bonds. CS/CS-ECG films displayed 26.35 %-29.23 % water solubility, 85.61°-86.96° water contact angle, 3.11-3.41 × 10 g m s Pa water vapor permeability, 0.29-0.34 cm mm m day atm oxygen permeability, 31.54-36.20 MPa tensile strength, 50.12 %-56.40 % elongation at break, as well as potent antioxidant activity and oil oxidation inhibitory ability. Notably, the film containing CS-ECG conjugate with 7.74 % substitution degree had the strongest barrier ability, mechanical property, antioxidant activity and oil oxidation inhibitory ability. Results suggested the substitution degree of CS-ECG conjugates was positively correlated with the barrier, mechanical and antioxidant properties of CS/CS-ECG films.
在这项研究中,壳聚糖(CS)与表儿茶素没食子酸酯(ECG)偶联,制备了取代度分别为 5.18%、6.36%和 7.74%的 CS-ECG 轭合物。然后,通过混合 CS 和 CS-ECG 轭合物制备了抗氧化包装膜。测定了 CS-ECG 轭合物取代度对 CS/CS-ECG 薄膜功能的影响。CS-ECG 轭合物在 275nm 处有紫外吸收峰,6.85ppm 处有质子信号峰,1533cm 处有红外吸收峰,归因于共轭的 ECG。与 CS 相比,CS-ECG 轭合物呈现出较少的结晶状态但具有更高的抗氧化活性。CS/CS-ECG 膜的结构表征表明 CS 和 CS-ECG 轭合物形成氢键。CS/CS-ECG 膜具有 26.35%-29.23%的水溶性、85.61°-86.96°的水接触角、3.11-3.41×10 g m s Pa 的水蒸气透过率、0.29-0.34 cm mm m day atm 的氧气透过率、31.54-36.20 MPa 的拉伸强度、50.12%-56.40%的断裂伸长率以及强大的抗氧化活性和抑制油脂氧化能力。值得注意的是,含有取代度为 7.74%的 CS-ECG 轭合物的薄膜具有最强的阻隔能力、机械性能、抗氧化活性和抑制油脂氧化能力。结果表明,CS-ECG 轭合物的取代度与 CS/CS-ECG 薄膜的阻隔性、机械性能和抗氧化性能呈正相关。