Liu Yan-Wei, Li Qing-Hao, Li Shi-Yu, Huang Guo-Qing, Xiao Jun-Xia
College of Food Science and Engineering, Qingdao Agricultural University, Qingdao 266109, China; College of Food Science and Engineering, Shandong Agricultural University, Taian 271018, China.
College of Food Science and Engineering, Qingdao Agricultural University, Qingdao 266109, China.
Int J Biol Macromol. 2023 Apr 1;233:123599. doi: 10.1016/j.ijbiomac.2023.123599. Epub 2023 Feb 10.
To prompt the application of the chitosan (CS)-Aspergillus oryzae lipase (AOL) complex in the construction of novel biphasic catalysis medium, its Pickering emulsion stabilization ability as well as adsorption behavior in the oil-water interface were investigated and the stability of resultant emulsion was evaluated. The results indicated that the CS-AOL complex assembled in mass ratio 1:5 was an effective Pickering stabilizer and up to 90 % AOL could be retained in the emulsion interface. Quartz crystal microbalance with dissipation monitoring suggested that the CS-AOL complex spontaneously absorbed to oil-water interface; absorption dynamics analysis revealed that the adsorption was driven by diffusion accompanied by rapid structural rearrangement; while interfacial dilatational rheology demonstrated the formation of an elastic film in the oil-water interface. The Pickering emulsions were pseudoplastic and that in oil fraction 0.6 exhibited the elastic behavior in contrast to the viscous behavior in oil fractions 0.2 and 0.4. The Pickering emulsion exhibited excellent stability against storage for up to 28 d, pHs 2.0-12.0, heating at 25-90 °C, and up to 500 mmol/L NaCl, and the corresponding interfacial AOL retentions exceeded 80 % during exposure to these conditions. Hence, the CS-AOL complex could be used as a stabilizer to construct Pickering emulsion-based biphasic catalysis systems.
为推动壳聚糖(CS)-米曲霉脂肪酶(AOL)复合物在新型双相催化介质构建中的应用,研究了其在油水界面的Pickering乳液稳定能力及吸附行为,并评估了所得乳液的稳定性。结果表明,质量比为1:5组装的CS-AOL复合物是一种有效的Pickering稳定剂,高达90%的AOL可保留在乳液界面。带耗散监测的石英晶体微天平表明,CS-AOL复合物能自发吸附到油水界面;吸附动力学分析显示,吸附由扩散驱动并伴有快速的结构重排;而界面扩张流变学表明在油水界面形成了弹性膜。Pickering乳液为假塑性,油相分数为0.6时表现出弹性行为,与油相分数为0.2和0.4时的粘性行为形成对比。Pickering乳液在长达28天的储存、pH值2.0 - 12.0、25 - 90℃加热以及高达500 mmol/L NaCl的条件下表现出优异的稳定性,在这些条件下相应的界面AOL保留率超过80%。因此,CS-AOL复合物可作为稳定剂用于构建基于Pickering乳液的双相催化体系。