A review on nanomaterial-based electrodes for the electrochemical detection of chloramphenicol and furazolidone antibiotics.

Abhishek K J, Sathish Reddy, Shubha Acharya, Lakshmi B, K Deepak, C S Naveen, K N Harish, Seeram Ramakrishna

Journal: Analytical methods : advancing methods and applications 2022;14(34):3228-3249

PMID: 35997206

Abstract

To grow food for people, antibiotics were used, and these antibiotics can accumulate in the human body through food metabolism, which may have remarkably harmful effects on human health and safety. Therefore, low-cost sensors are needed for the detection of antibiotic residues in food samples. Recently, nanomaterial-based electrochemical sensors such as carbon nanoparticles, graphene nanoparticles, metal oxide nanoparticles, metal nanoparticles, and metal-organic nanostructures have been successfully used as sensing materials for the detection of chloramphenicol (CP) and furazolidone (FZ) antibiotics. However, additional efforts are still needed to fabricate effective multi-functional nanomaterial-based electrodes for the preparation of portable electrochemical sensor devices. The current review focuses on a quick introduction to CP and FZ antibiotics, followed by an outline of the current electrochemical analytical methods. In addition, we have discussed in-depth different nanoparticle supports for the electrochemical detection of CP and FZ in different matrices such as food, environmental, and biological samples. Finally, a summary of the current problems and future perspectives in this area are also highlighted.

Address: Department of Chemistry, School of Applied Science, REVA University, Bangalore, 560064, India. [email protected].; Department of Physics, School of Applied Science, REVA University, Bangalore, 560064, India.; Department of Physics, School of Engineering, Presidency University, Bengaluru-560064, India.; Department of Chemistry, Dayananda Sagar College of Engineering, Shavige Malleshwara Hills, Kumaraswamy Layout, Bengaluru, 560078, India.; Department of Mechanical Engineering, Center for Nanofibers and Nanotechnology, National University of Singapore, Singapore.

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