Gong Xun, Li Yingying, Li Xin, Hu Jie, Zhou Xin, Yang Xiupei
College of Chemistry and Chemical Engineering, China West Normal University, Nanchong 637000, China.
Precise Synthesis and Function Development Key Laboratory of Sichuan Province, Nanchong 637000, China.
Sensors (Basel). 2025 Sep 5;25(17):5541. doi: 10.3390/s25175541.
Antibiotics, valued for their remarkable efficacy, are widely employed across diverse domains. However, their rampant overuse has precipitated severe environmental and health crises, necessitating the development of efficient techniques for rapid and selective antibiotic detection. Electrochemical detection has emerged as a highly promising approach, offering unmatched advantages such as cost-effectiveness, speed, and reliability. The field has witnessed significant advancements through the innovation of advanced electrode modification materials. This review provides a comprehensive analysis of recent progress in the development and application of modified materials for antibiotic detection. Furthermore, the increasing need for real-time monitoring has spurred the development of wearable electrochemical sensors, which are revolutionizing applications in human health and food safety. Looking ahead, future research is poised to focus on synthesizing nanocomposites with superior electrochemical properties and advancing the miniaturization of sensors, promising transformative practical applications in antibiotic detection.
抗生素因其显著疗效而备受重视,在各个领域广泛应用。然而,其过度滥用已引发严重的环境和健康危机,因此需要开发高效技术用于快速、选择性地检测抗生素。电化学检测已成为一种极具前景的方法,具有成本效益高、速度快和可靠性强等无与伦比的优势。通过先进电极修饰材料的创新,该领域取得了重大进展。本综述全面分析了用于抗生素检测的修饰材料在开发和应用方面的最新进展。此外,对实时监测的需求不断增加,推动了可穿戴电化学传感器的发展,这些传感器正在彻底改变人类健康和食品安全领域的应用。展望未来,未来研究将专注于合成具有卓越电化学性能的纳米复合材料,并推动传感器的小型化,有望在抗生素检测中实现变革性的实际应用。