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- W4386283614 abstract "Biopolymers possess diverse functional groups and excellent biocompatibility toward a wide range of biomolecules, and these characteristics are highly regarded for the construction of highly stable and reliable biosensors. Among the various biosensors, electrochemical biosensors are most widely applied in various applications owing to their outstanding sensing performances, cost-effectiveness, and facile fabrication strategy. Further, with the recent advancements in electronic instruments, the electrochemical sensor devices can be miniaturized into portable devices, which promote them to apply practical applications such as real-time health monitoring and on-site analysis. Furthermore, a range of nanomaterials can be integrated into the biopolymers to enhance sensor performances such as high sensitivity, low detection limit, and fast response. This chapter starts by describing the types of biopolymers and their different immobilization strategies for attaching biocatalysts to electrode surfaces. Then, the recent advancements of biopolymers embedded nanocomposite materials for the construction of electrochemical biosensors, immunosensors, and aptasensors to detect a range of biomolecules such as proteins, cancer biomarkers, nucleic acids, vitamins, sugars, neurotransmitters, and pharmaceutical drugs. Further, the fundamental sensing mechanism of the biopolymers-based electrochemical biosensors is discussed. Moreover, the reported analytical parameters for these analytes are summarized." @default.
- W4386283614 created "2023-08-31" @default.
- W4386283614 creator A5084222536 @default.
- W4386283614 date "2023-01-01" @default.
- W4386283614 modified "2023-10-01" @default.
- W4386283614 title "Nanobiopolymers-Based Electrodes in Biomolecular Screening and Analysis" @default.
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- W4386283614 doi "https://doi.org/10.1007/978-981-19-9437-1_33" @default.
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