Zhang Youfeng, Gu Jialing, Fu Yijie, Shi Wangxu, Wang Xintong, Su Yujie, Wang Xiaosan, Wang Xiaowen
Collaborative Innovation Center of Food Safety and Quality Control in Jiangsu Province, National Engineering Research Center for Functional Food, School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, PR China; Department of Flavor Chemistry, Institute of Food Science and Biotechnology, University of Hohenheim, 70599 Stuttgart, Germany.
Collaborative Innovation Center of Food Safety and Quality Control in Jiangsu Province, National Engineering Research Center for Functional Food, School of Food Science and Technology, Jiangnan University, Wuxi, Jiangsu 214122, PR China.
Int J Biol Macromol. 2025 Jan;286:138310. doi: 10.1016/j.ijbiomac.2024.138310. Epub 2024 Dec 3.
Phytosterol esters (PEs) are favored for their good solubility, high bioavailability, and various health benefits. Mesoporous silica (MS) nanocarriers were synthesized and utilized to immobilize free lipase AYS "Amano" (from Candida rugosa) for further preparing PEs. The optimal immobilization conditions were an initial enzyme content of 160 mg/mL, pH of 7.0, temperature of 30 °C, and adsorption time of 6 h, resulting in a protein loading of 42.3 mg/g and an immobilization efficiency of 73.4 %. Compared to commercial carriers, MS carriers demonstrated superior immobilization efficiency and phytosterol conversion rates when soybean oil was used as the PEs source for the transesterification. The phytosterol conversion rate reached 97.7 % in a solvent system with optimal reaction conditions. After 30 days of storage, the immobilized lipase retained 55.7 % of its activity, and it had 63.0 % retention activity after 10 reuse cycles. This study significantly enhanced the lipase's phytosterols conversion and reusability, supporting sustainable and efficient industrial production of PEs.
植物甾醇酯(PEs)因其良好的溶解性、高生物利用度和多种健康益处而受到青睐。合成了介孔二氧化硅(MS)纳米载体,并用于固定化游离脂肪酶AYS“天野”(来自皱褶假丝酵母),以进一步制备植物甾醇酯。最佳固定化条件为初始酶含量160 mg/mL、pH值7.0、温度30℃和吸附时间6小时,蛋白质负载量为42.3 mg/g,固定化效率为73.4%。与商业载体相比,当使用大豆油作为酯交换反应制备植物甾醇酯的原料时,MS载体表现出更高的固定化效率和植物甾醇转化率。在最佳反应条件的溶剂体系中,植物甾醇转化率达到97.7%。储存30天后,固定化脂肪酶保留了55.7%的活性,在重复使用10个循环后仍保留63.0%的活性。本研究显著提高了脂肪酶对植物甾醇的转化率和可重复使用性,为植物甾醇酯的可持续高效工业化生产提供了支持。