食品科学 ›› 2025, Vol. 46 ›› Issue (16): 175-170.doi: 10.7506/spkx1002-6630-20241227-237

• 生物工程 • 上一篇    

Zn-金属有机骨架固定脂肪酶及其对赭曲霉毒素A的高效降解

郇佳欣,黄燕萍,牛彦哲,宋宏,刘满顺,袁春龙   

  1. (西北农林科技大学葡萄酒学院,陕西?杨凌 712100)
  • 发布日期:2025-07-22
  • 基金资助:
    西北农林科技大学博士科研启动基金项目(Z1090122028); 和硕产区有机特色葡萄酒关键技术集成与示范课题项目(TG20240591)

Efficient Degradation of Ochratoxin A by Zn-Metal-Organic Framework Immobilized Lipase

HUAN Jiaxin, HUANG Yanping, NIU Yanzhe, SONG Hong, LIU Manshun, YUAN Chunlong   

  1. (College of Enology, Northwest A&F University, Yangling 712100, China)
  • Published:2025-07-22

摘要: 为了提高脂肪酶A(Amano lipase A,ANL)的稳定性及其赭曲霉毒素A(ochratoxin A,OTA)降解效率,本实验以Zn-金属有机骨架(Zn-metal-organic framework,Zn-MOF)为载体,通过一步原位固定法合成ANL@Zn-MOF。以OTA降解率作为评价指标确定最佳固定化条件为酶添加量8 mg、固定化时间2 h、搅拌速率400 r/min。通过X射线衍射、傅里叶变换红外光谱、热重分析和扫描电镜观察等手段对ANL@Zn-MOF进行表征,结果表明ANL成功负载于Zn-MOF,且ANL@Zn-MOF耐碱性、热稳定性和离子强度稳定性均优于游离ANL。降解实验结果表明ANL@Zn-MOF对OTA的降解速度更快,ANL@Zn-MOF(其中ANL质量浓度为20 ng/mL)能在8 h内完全降解OTA,该时间比游离ANL完全降解OTA的时间缩短了66.7%;同时在放大至500 mL的反应体系下ANL@Zn-MOF能在12 h内降解69.3%的OTA;此外,ANL@Zn-MOF能够重复使用,循环使用5 次后仍能保留78%的相对活性。本研究可为利用ANL@Zn-MOF降解食品体系中的OTA奠定基础,也可为MOF在酶固定方面的应用提供参考。

关键词: 脂肪酶A;金属有机骨架;固定化;赭曲霉毒素A降解

Abstract: To enhance the stability of Amano lipase A (ANL) and its degradation efficiency toward ochratoxin A (OTA), ANL was immobilized on a Zn-metal-organic framework (Zn-MOF) carrier by a one-step in situ method, yielding ANL@Zn-MOF. Based on OTA degradation rate, the optimal immobilization conditions were determined as 8 mg, 2 h and 400 r/min for enzyme loading, immobilization time, and stirring speed, respectively. ANL@Zn-MOF was characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), thermogravimetric analysis (TGA), and scanning electron microscopy (SEM). The results confirmed the successful loading of ANL onto Zn-MOF. ANL@Zn-MOF exhibited superior alkali tolerance, thermal stability, and ionic strength stability compared with free ANL. ANL@Zn-MOF degraded OTA more rapidly. Specifically, it (containing 20 ng/mL ANL) completely degraded OTA in 8 h, which was shortened by 66.7% compared with free ANL. Moreover, in a 500 mL reaction system, ANL@Zn-MOF degraded 69.3% of OTA in 12 h. Additionally, ANL@Zn-MOF exhibited excellent reusability, retaining 78% of its activity after five cycles of reuse. This study establishes a foundation for the application of ANL@Zn-MOF in degrading OTA in food systems and provides a reference for the use of MOFs in enzyme immobilization.

Key words: Amano lipase A; metal-organic framework; immobilization; ochratoxin A degradation

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