Traipop Surinya, Jesadabundit Whitchuta, Khamcharoen Wisarut, Pholsiri Tavechai, Naorungroj Sarida, Jampasa Sakda, Chailapakul Orawon
Electrochemistry and Optical Spectroscopy Center of Excellence (EOSCE), Department of Chemistry, Faculty of Science, Chulalongkorn University, Bangkok, 10330, Thailand.
Center of Excellence on Petrochemical and Materials Technology (PETROMAT), Thailand.
Curr Top Med Chem. 2024;24(11):986-1009. doi: 10.2174/0115680266304711240327072348.
This review explores the advancements in nanomaterial-based electrochemical sensors for the multiplex detection of medicinal compounds. The growing demand for efficient and selective detection methods in the pharmaceutical field has prompted significant research into the development of electrochemical sensors employing nanomaterials. These materials, defined as functional materials with at least one dimension between 1 and 100 nanometers, encompass metal nanoparticles, polymers, carbon-based nanocomposites, and nano-bioprobes. These sensors are characterized by their enhanced sensitivity and selectivity, playing a crucial role in simultaneous detection and offering a comprehensive analysis of multiple medicinal complexes within a single sample. The review comprehensively examines the design, fabrication, and application of nanomaterial- based electrochemical sensors, focusing on their ability to achieve multiplex detection of various medicinal substances. Insights into the strategies and nanomaterials employed for enhancing sensor performance are discussed. Additionally, the review explores the challenges and future perspectives of this evolving field, highlighting the potential impact of nanomaterial-based electrochemical sensors on the advancement of medicinal detection technologies.
本综述探讨了用于药物化合物多重检测的基于纳米材料的电化学传感器的进展。制药领域对高效、选择性检测方法的需求不断增长,促使人们对采用纳米材料的电化学传感器的开发进行了大量研究。这些材料被定义为至少有一维在1到100纳米之间的功能材料,包括金属纳米颗粒、聚合物、碳基纳米复合材料和纳米生物探针。这些传感器具有增强的灵敏度和选择性,在同时检测中发挥着关键作用,并能对单个样品中的多种药物复合物进行全面分析。本综述全面研究了基于纳米材料的电化学传感器的设计、制造和应用,重点关注其实现多种药物物质多重检测的能力。讨论了用于提高传感器性能的策略和纳米材料的见解。此外,本综述还探讨了这一不断发展的领域的挑战和未来前景,强调了基于纳米材料的电化学传感器对药物检测技术进步的潜在影响。
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