数字农科院2.0

Hollow Mesoporous Carbon-Based Enzyme Nanoreactor for the Confined and Interfacial Biocatalytic Synthesis of Phytosterol Esters

文献类型: 外文期刊

作者: Zhang, Shan;Hou, Huaqing;Zhao, Baozhu;Zhou, Qi;Tang, Rongfeng;Chen, Lin;Mao, Jin;Deng, Qianchun;Zheng, Lei;Shi, Jie

作者机构:

关键词: hollow mesoporous cube carbon;interfacial enzyme;biphase catalysis;confined catalysis;immobilized enzyme

期刊名称: JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY

ISSN: 0021-8561

年卷期: 2023 年

页码:

收录情况: SCIE(2023版) ; ; EI(2023版)

摘要: Rationally designing carriers to obtain efficient and stable immobilized enzymes for the production of food raw materials is always a challenge. In this work, hollow cube carbon (HMC) as a carrier of Candida rugosa lipase (CRL) was prepared to construct a Pickering interfacial biocatalysis system, which was applied to biphasic biocatalysis. For comparison, the nonporous carbon (HC) and porous MoS2 (HMoS2) were also designed. On these grounds, p-NPP and linolenic acid were selected as the representative substrates for hydrolysis and esterification reactions. Under the optimal conditions, the protein loading amount, specific activity, and expressed activity of CRL immobilized on HMC (HMC@CRL) were 167.2 mg g(-1), 5.41 U mg(-1), and 32.34 U/ mg protein, respectively. In the oil-water biphase, the relative hydrolytic activity of HMC@CRL was higher than that of HC@ CRL, HMoS2@CRL, and CRL by 50, 68, and 80%, respectively, as well as itself in one phase. Compared to other reports (1.13%), HMC@CRL demonstrated a satisfactory hydrolysis rate (3.02%) and was the fastest among all other biocatalysts in the biphase. Moreover, compared with the free CRL in one-phase system, the Pickering interfacial biphasic biocatalyst, HMC@CRL, exhibited a higher esterification rate (85%, 2.7-fold enhancement). Therefore, the HMC@CRL nanoreactors had more optimal performance in the field of biomanufacturing and food industry.

分类号:

  • 相关文献

[1]Hollow Hierarchical Porous and Antihydrolytic Spherical Zeolitic Imidazolate Frameworks for Enzyme Encapsulation and Biocatalysis. Zhao, Baozhu,Yang, Haowen,Mao, Jin,Zhou, Qi,Deng, Qianchun,Zheng, Lei,Shi, Jie. 2024

[2]Ultrasound-assisted intensification of Pickering interfacial biocatalysis preparation of vitamin A aliphatic esters. Yufei Zhang,Yundong Lai,Mingming Zheng. 2024

[3]Broadly adapted and efficient enzymatic transesterification production of medium and long-chain triglycerides via coconut oil and long-chain triacylglycerols. Chuang Yang,Yufei Zhang,Yuanzhi Xu,Yibin Zhou,Shiyi Li,Mingming Zheng. 2025

[4]Enzymatic synthesis of antioxidant peptides with controllable and adjustable molecular weights using magnetically recyclable immobilized Alcalase. Junhua Di,Yang Li,Yi Zhang,Kheng Lim Goh,Mingming Zheng. 2025

[5]Enhanced Pickering interfacial biocatalysis in phosphatidylserine synthesis via phospholipase D immobilization with optimized bifunctional strategy. Huihui Liu,Yihan Liu,Zhongmu Han,Yufei Zhang,Mingming Zheng. 2025

[6]Hollow Double-Layered Mesoporous Silica as an Enzyme Immobilization Platform: Enhancing Biocatalytic Efficiency in Docosahexaenoic Acid Phosphatidylcholine-Phosphatidylcholine. Li, Xuefeng,Wei, Jun,Zhang, Yufei,Xu, Yuanzhi,Yuan, Wenlong,Mei, Lin,Yu, Shengjiao,Zheng, Mingming. 2025

作者其他论文 更多>>