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基于碳纳米材料的漆酶生物传感器用于电化学检测酚类化合物的最新进展。

Recent Prospects of Carbonaceous Nanomaterials-Based Laccase Biosensor for Electrochemical Detection of Phenolic Compounds.

机构信息

Department of Applied Chemistry, Delhi Technological University, Delhi 110042, India.

Department of Chemistry, Faculty of Science, SGT University, Gurugram 122505, India.

出版信息

Biosensors (Basel). 2023 Feb 22;13(3):305. doi: 10.3390/bios13030305.

Abstract

Phenolic compounds (PhCs) are ubiquitously distributed phytochemicals found in many plants, body fluids, food items, medicines, pesticides, dyes, etc. Many PhCs are priority pollutants that are highly toxic, teratogenic, and carcinogenic. Some of these are present in body fluids and affect metabolism, while others possess numerous bioactive properties such as retaining antioxidant and antimicrobial activity in plants and food products. Therefore, there is an urgency for developing an effective, rapid, sensitive, and reliable tool for the analysis of these PhCs to address their environmental and health concern. In this context, carbonaceous nanomaterials have emerged as a promising material for the fabrication of electrochemical biosensors as they provide remarkable characteristics such as lightweight, high surface: volume, excellent conductivity, extraordinary tensile strength, and biocompatibility. This review outlines the current status of the applications of carbonaceous nanomaterials (CNTs, graphene, etc.) based enzymatic electrochemical biosensors for the detection of PhCs. Efforts have also been made to discuss the mechanism of action of the laccase enzyme for the detection of PhCs. The limitations, advanced emerging carbon-based material, current state of artificial intelligence in PhCs detection, and future scopes have also been summarized.

摘要

酚类化合物(PhCs)是广泛分布于许多植物、体液、食品、药物、农药、染料等中的植物化学物质。许多 PhCs 是优先污染物,具有高度毒性、致畸性和致癌性。其中一些存在于体液中,影响新陈代谢,而另一些则具有许多生物活性特性,如保留抗氧化和抗菌活性在植物和食品中。因此,迫切需要开发一种有效、快速、灵敏和可靠的工具来分析这些 PhCs,以解决它们对环境和健康的关注。在这种情况下,碳纳米材料作为电化学生物传感器的制造材料已经崭露头角,因为它们具有显著的特性,如重量轻、高表面积与体积比、优异的导电性、非凡的拉伸强度和生物相容性。本综述概述了基于碳纳米材料(CNTs、石墨烯等)的酶电化学生物传感器在检测 PhCs 方面的应用现状。还努力讨论了漆酶酶检测 PhCs 的作用机制。总结了局限性、先进的新兴碳基材料、人工智能在 PhCs 检测中的现状以及未来的研究范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c15/10046707/f28ac014603a/biosensors-13-00305-g002.jpg

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