Jingyi Tang, Haibin Liao, Xueqin Fu, Yonghong Xie, Zhengrong Zou, Zaizhi Liu
Methyleugenol microcapsules were successfully fabricated using soybean protein isolate and sodium alginate as wall materials through ultrasonic assisted microencapsulation method. A real yield of 95.45 ± 2.55% and an encapsulation efficiency of 76.95 ± 3.03% were achieved under the optimum conditions derived from Plackett-Burman and Box-Behnken designs. Physicochemical characterization confirmed effective methyleugenol encapsulation, with the microcapsules exhibiting irregular morphology, uniform particle size distribution, and distinctive wrinkled surface textures. Thermogravimetric curve indicated that the thermal stability of methyleugenol was obviously enhanced by the microencapsulation process. After microencapsulation, the antifungal activity of methyleugenol was greatly improved, with its microcapsules exhibiting comparable efficacy to nystatin against Fusarium avenaceum, demonstrating the minimum inhibitory concentration (MIC) of 0.10 mg/mL and 0.07 mg/mL, respectively. These findings provide a scientific basis for exploring the potential applications of ME microcapsules in food preservation and related industrial sectors.