酶定向固定化策略在生物传感器中应用
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作者单位:

1)齐鲁工业大学(山东省科学院),山东省科学院生物研究所,济南 250103;2)山东省生物传感器重点实验室,济南 250103

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国家自然科学基金(32101222),国家重点研发计划 (2021YFB3201200,2021YFB3201203)和齐鲁工业大学(山东省科学院)重大创新工程(2022JBZ01-06)资助项目。


Enzyme-directed Immobilization Strategies for Biosensor Applications
Author:
Affiliation:

1)Biology Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250103, China;2)Key Laboratory of Biosensors of Shandong Province, Jinan 250103, China

Fund Project:

This work was supported by grants from The National Natural Science Foundation of China (32101222), the National Key R&D Program of China (2021YFB3201200, 2021YFB3201203), and Key Innovation Project of Qilu University of Technology (Shandong Academy of Sciences) (2022JBZ01-06).

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    摘要:

    酶电极生物传感器具有灵敏、高效、特异性强以及器型小巧等特点,在生命科学研究、疾病诊断和监控等领域展现出广阔的应用前景,酶的固定化是决定酶电极生物传感器性能(稳定性、灵敏性、重现性)的关键步骤,通过随机固定化(物理吸附、共价交联等)容易引起酶活力下降、固定化稳定性低等问题,而利用氨基酸残基突变、亲和肽融合以及核苷酸特异结合等优化酶分子空间取向,为解决随机固定化问题提供了新的可能。本文对基于定点突变引入带有官能团的特定氨基酸(赖氨酸、组氨酸、半胱氨酸、非天然氨基酸)、通过基因工程融合亲和肽(金结合肽、碳材料结合肽、碳水化合物结合结构域)及利用核苷酸与目标酶(蛋白质)之间的特异性结合等策略来实现酶分子传感元件定向固定化的原理、优缺点以及在酶电极生物传感器上的应用进展进行了系统综述,并对多种传感界面固定化酶表征技术的应用领域、各方法的优点和应用局限性进行了探讨,以期为高性能酶传感元件创制及酶电极传感器的制造提供理论和技术指导。

    Abstract:

    Immobilized enzyme-based enzyme electrode biosensors, characterized by high sensitivity and efficiency, strong specificity, and compact size, demonstrate broad application prospects in life science research, disease diagnosis and monitoring, etc. Immobilization of enzyme is a critical step in determining the performance (stability, sensitivity, and reproducibility) of the biosensors. Random immobilization (physical adsorption, covalent cross-linking, etc.) can easily bring about problems, such as decreased enzyme activity and relatively unstable immobilization. Whereas, directional immobilization utilizing amino acid residue mutation, affinity peptide fusion, or nucleotide-specific binding to restrict the orientation of the enzymes provides new possibilities to solve the problems caused by random immobilization. In this paper, the principles, advantages and disadvantages and the application progress of enzyme electrode biosensors of different directional immobilization strategies for enzyme molecular sensing elements by specific amino acids (lysine, histidine, cysteine, unnatural amino acid) with functional groups introduced based on site-specific mutation, affinity peptides (gold binding peptides, carbon binding peptides, carbohydrate binding domains) fused through genetic engineering, and specific binding between nucleotides and target enzymes (proteins) were reviewed, and the application fields, advantages and limitations of various immobilized enzyme interface characterization techniques were discussed, hoping to provide theoretical and technical guidance for the creation of high-performance enzyme sensing elements and the manufacture of enzyme electrode sensors.

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王兴保,马耀宏,薛云龙,黄晓珍,邵越,于毅,王丙莲,刘庆艾,张立鹤,公维丽.酶定向固定化策略在生物传感器中应用[J].生物化学与生物物理进展,2025,52(2):374-394

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历史
  • 收稿日期:2024-06-17
  • 最后修改日期:2024-12-31
  • 接受日期:2024-08-27
  • 在线发布日期: 2024-08-28
  • 出版日期: 2025-02-28