Hierarchical macro-microporous ZIF-8 nanostructures as efficient nano-lipase carriers for rapid and direct electrochemical detection of nitrogenous diphenyl ether pesticides

二苯醚 微型多孔材料 脂肪酶 检出限 线性范围 生物传感器 热稳定性 纳米- 结晶度 热稳定性 固定化酶 化学 材料科学 色谱法 纳米技术 有机化学 复合材料 结晶学
作者
Yongfa Cheng,Baokai Ma,Chin Ping Tan,Oi Ming Lai,Worawan Panpipat,Ling‐Zhi Cheong,Cai Shen
出处
期刊:Sensors and Actuators B-chemical [Elsevier BV]
卷期号:321: 128477-128477 被引量:50
标识
DOI:10.1016/j.snb.2020.128477
摘要

Free biocatalyst such as lipase cannot be recovered and reused; and is extremely unstable in harsh reaction condition. Present study aimed to synthesize hierarchical ordered macro-microporous ZIF-8 structures (MAC-ZIF-8) for encapsulation of nano-Burkholderia cepacia lipase (nano BCL). The synthesized MAC-ZIF-8 has good crystallinity, thermal stability and high surface area which made it suitable for immobilization of nano-BCL. The MAC-ZIF-8 immobilized nano-BCL ([email protected]) demonstrated high enzyme activity (4.3778 U) and can be recovered and reused for consecutive hydrolysis reaction. It is found that the nano-BCL is well encapsulated with the macropores of the MAC-ZIF-8 structures and they are able to preserve their native configuration with high affinity for substrates (lower Km of 1.068 mM as compared to that of [email protected]). The [email protected] can also be used to fabricate electrochemical biosensors for detection of nitrogenous diphenyl ether pesticides (nitrofen) in real food systems (apricots). The fabricated biosensors demonstrated wide linear range (0−114µM), low limit of detection (0.46µM) and good recovery rate. In comparison to conventional detection method, the fabricated biosensor also has added advantages in the form of easy and convenient operation, low cost, and better linear range.
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