This article provides a comprehensive review of biosensor technologies for the real-time monitoring of pesticides in aquatic environments.
This article provides a comprehensive analysis of multiplex biosensors for the simultaneous detection of multiple pesticide residues, a critical need for modern food safety and environmental monitoring.
Organophosphate (OP) pesticides, while crucial for agriculture, pose severe health risks due to their acetylcholinesterase (AChE)-inhibiting neurotoxicity.
This comprehensive review explores the cutting-edge development and application of nanomaterial-modified screen-printed electrodes (SPEs) for pesticide analysis, addressing critical needs in food safety, environmental monitoring, and biomedical research.
This article provides a comprehensive examination of silk fibroin (SF) hydrogel films as a premier material platform for biosensor strips, addressing the needs of researchers and drug development professionals.
This article comprehensively reviews the development and application of Surface-Enhanced Raman Spectroscopy (SERS) biosensor platforms for detecting pesticide residues.
This article provides a comprehensive analysis of contemporary strategies for immobilizing acetylcholinesterase (AChE) onto electrode surfaces, a critical technology for developing sensitive and stable biosensors.
This article provides a comprehensive overview of electrochemical biosensor technology for the detection of pesticide residues in fruits, tailored for researchers and scientists in food safety and drug development.
This article provides a comprehensive analysis for researchers and scientists on the two predominant biosensing technologies for pesticide monitoring: enzymatic and whole-cell biosensors.
This review comprehensively examines the latest advancements in biosensor technologies for environmental water monitoring, addressing a critical need for researchers and scientists developing detection systems for emerging contaminants.