Chiorcea-Paquim Ana-Maria
Instituto Pedro Nunes (IPN), 3030-199 Coimbra, Portugal.
University of Coimbra, Centre for Mechanical Engineering, Materials and Processes (CEMMPRE), Advanced Production and Intelligent Systems (ARISE), Department of Chemistry, 3004-535 Coimbra, Portugal.
Antioxidants (Basel). 2023 Nov 22;12(12):2029. doi: 10.3390/antiox12122029.
Curcumin is a natural polyphenol derived from turmeric () root that has been used for centuries as a spice, coloring agent, and medicine. Curcumin presents anti-inflammatory, antioxidant, anticarcinogenic, antimicrobial, antiviral, antimalarial, hepatoprotective, thrombosuppressive, cardiovascular, hypoglycemic, antiarthritic, and anti-neurodegenerative properties. It scavenges different forms of free radicals and acts on transcription factors, growth factors and their receptors, cytokines, enzymes, and genes, regulating cell proliferation and apoptosis. Curcumin is electroactive, and a relationship between its electron transfer properties and radical-scavenging activity has been highlighted. The objective of this review is to provide a comprehensive overview of the curcumin electron transfer reactions, with emphasis on the controversial aspects related to its oxidation mechanism. The final sections will focus on the electroanalysis of curcumin in natural products, highlighting the most important sensing strategies, based on functional electrodes and nanostructured materials, essential for the development of more efficient in vitro methods of detection and quantification of curcumin in food samples, supplements, and nutripharmaceuticals.
姜黄素是一种从姜黄根中提取的天然多酚,几个世纪以来一直被用作香料、色素和药物。姜黄素具有抗炎、抗氧化、抗癌、抗菌、抗病毒、抗疟疾、保肝、抑制血栓形成、心血管保护、降血糖、抗关节炎和抗神经退行性变等特性。它能清除不同形式的自由基,并作用于转录因子、生长因子及其受体、细胞因子、酶和基因,调节细胞增殖和凋亡。姜黄素具有电活性,其电子转移特性与自由基清除活性之间的关系已受到关注。本综述的目的是全面概述姜黄素的电子转移反应,重点关注与其氧化机制相关的争议性方面。最后几节将聚焦于天然产物中姜黄素的电分析,突出基于功能电极和纳米结构材料的最重要传感策略,这些对于开发更高效的体外检测和定量食品样品、补充剂及营养药物中姜黄素的方法至关重要。