Zahran Moustafa, Tian Shuang, Li Ji, Marei Amal H, Xie Ying, Liu Qiyu, Huang Jialin, Wang Dezhi, Ning Xingyao, Wang Jiahao, Chi Huizhong, Li Xiaolin
Guangdong Provincial Key Laboratory of Robotics and Intelligent System, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences Shenzhen 518055 P. R. China.
Institute of Intelligent Manufacturing Technology, Shenzhen Polytechnic University Shenzhen 518055 P. R. China
RSC Adv. 2025 Apr 7;15(14):10801-10815. doi: 10.1039/d5ra00984g. eCollection 2025 Apr 4.
Fish quality is a big-picture issue because of the possible presence of many chemical and biological pollutants, that may affect fish leading to environmental and health hazards. In this regard, researchers focus on developing efficient strategies for evaluating fish quality in terms of safety and freshness. Fish safety is determined based on assessing various pollutants, such as heavy metals, pesticides, dyes, and drugs, in fish tissue. Additionally, fish freshness evaluation is based on assessing some indicators including xanthine, hypoxanthine, uric acid, and histamine. Many chromatographic methods can assess all of these chemical indicators to evaluate the fish quality. However, these methods are expensive and often require sophisticated steps. Thus, electrochemical methods based on noble metal nanoparticles (NMNPs), metal-organic frameworks (MOFs) NPs, and their composites as electrode modifiers were investigated as potential replacements for the chromatographic ones. These materials showed high catalytic activity and electrical conductivity compared to the other electrode modifiers. In this review, we spotlight the role of NMNPs and MOF NPs in evaluating the quality of fish samples as a food source. Overall, NMNPs and MOF NPs are considered promising electrode materials for the electrochemical monitoring of fish quality.
由于可能存在多种化学和生物污染物,鱼类质量是一个全局性问题,这些污染物可能影响鱼类,从而导致环境和健康危害。在这方面,研究人员专注于制定有效的策略,从安全性和新鲜度方面评估鱼类质量。鱼类安全性是通过评估鱼组织中的各种污染物来确定的,如重金属、农药、染料和药物。此外,鱼类新鲜度评估基于对一些指标的评估,包括黄嘌呤、次黄嘌呤、尿酸和组胺。许多色谱方法可以评估所有这些化学指标以评估鱼类质量。然而,这些方法成本高昂,且通常需要复杂的步骤。因此,研究了基于贵金属纳米颗粒(NMNPs)、金属有机框架(MOFs)纳米颗粒及其复合材料作为电极修饰剂的电化学方法,作为色谱方法的潜在替代方法。与其他电极修饰剂相比,这些材料表现出高催化活性和导电性。在本综述中,我们重点介绍了NMNPs和MOF NPs在评估作为食物来源的鱼类样品质量中的作用。总体而言,NMNPs和MOF NPs被认为是用于鱼类质量电化学监测的有前景的电极材料。