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强调漆酶安培生物传感作为一种潜在的泛药物,用于快速有效检测酚类化合物。

Emphasizing laccase based amperometric biosensing as an eventual panpharmacon for rapid and effective detection of phenolic compounds.

机构信息

Department of Biotechnology, Deenbandhu Chhotu Ram University of Science and Technology, Murth, al-131039, Haryana, India.

Department of Chemistry, Deenbandhu Chhotu Ram University of Science and Technology, Murth, al-131039, Haryana, India.

出版信息

Biochim Biophys Acta Gen Subj. 2024 Nov;1868(11):130691. doi: 10.1016/j.bbagen.2024.130691. Epub 2024 Aug 6.

Abstract

Phenols and phenolic compounds are major plant metabolites used in industries to produce pesticides, dyes, medicines, and plastics. These compounds enter water bodies, soil, and living organisms via such industrial routes. Some polyphenolic compounds like phenolic acids, flavonoids have antioxidant and organoleptic qualities, as well as preventive effects against neurodegenerative illnesses, cardiovascular disease, diabetes, and cancer. However, many of the polyphenolic compounds, such as Bisphenol A, phthalates, and dioxins also cause major environmental pollution and endocrine disruption, once the dose level becomes objectionable. The development of reliable and rapid methods for studying their dose dependency, high-impact detrimental effects, and continuous monitoring of phenol levels in humans and environmental samples is a crucial necessity of the day. Enzymatic biosensors employing phenol oxidases like tyrosinase, peroxidase and laccase, utilizing electrochemical amperometric methods are innovative methods for phenol quantification. Enzymatic biosensing, being highly sensitive and efficacious technique, is illuminated in this review article as a progressive approach for phenol quantification with special emphasis on laccase amperometric biosensors. Even more, the review article discussion is extended up to nanozymes, composites of metal organic frameworks (MOFs), and molecularly imprinted polymers (MIPs) as some emerging species for electro-chemical sensing of phenols. Applications of phenol quantification and green biosensing are also specified. A concrete summary of the innovative polyphenol detection approaches with futuristic scope indicates a triumph over some existing constraints of the phenomenological approaches providing an informative aisle to the modern researchers towards the bulk readability.

摘要

酚类和酚类化合物是植物代谢物的主要成分,用于工业生产杀虫剂、染料、药物和塑料。这些化合物通过这些工业途径进入水体、土壤和生物体。一些多酚化合物,如酚酸、类黄酮,具有抗氧化和感官品质,以及预防神经退行性疾病、心血管疾病、糖尿病和癌症的作用。然而,许多多酚化合物,如双酚 A、邻苯二甲酸酯和二恶英,一旦剂量水平变得令人反感,就会造成严重的环境污染和内分泌干扰。开发可靠和快速的方法来研究它们的剂量依赖性、高影响的有害影响以及人类和环境样本中苯酚水平的连续监测是当今的迫切需要。采用多酚氧化酶(如酪氨酸酶、过氧化物酶和漆酶)的酶生物传感器,利用电化学安培法,是苯酚定量的创新方法。酶生物传感是一种高度敏感和有效的技术,本文综述了它作为一种用于苯酚定量的渐进方法,特别强调了漆酶安培生物传感器。此外,本文还将讨论扩展到纳米酶、金属有机框架(MOFs)的复合材料和分子印迹聚合物(MIPs),作为电化学反应性酚类传感器的一些新兴物种。还指定了苯酚定量和绿色生物传感的应用。对具有未来前景的创新多酚检测方法的具体总结表明,超越了现象学方法的一些现有限制,为现代研究人员提供了一条通向大众可读性的信息渠道。

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