Abstract
Nanobioconjugates are hybrid materials that result from the coalescence of biomolecules and nanomaterials. They have emerged as a strategy to amplify the signal response in the biosensor field with the potential to enhance the sensitivity and detection limits of analytical assays. This critical review collects a myriad of strategies for the development of nanobioconjugates based on the conjugation of proteins, antibodies, carbohydrates, and DNA/RNA with noble metals, quantum dots, carbon- and magnetic-based nanomaterials, polymers, and complexes. It first discusses nanobioconjugates assembly and characterization to focus on the strategies to amplify a biorecognition event in biosensing, including molecular-, enzymatic-, and electroactive complex-based approaches. It provides some examples, current challenges, and future perspectives of nanobioconjugates for the amplification of signals in electrochemical biosensing.
| Original language | English |
|---|---|
| Article number | 3542 |
| Number of pages | 39 |
| Journal | Molecules |
| Volume | 25 |
| Issue number | 15 |
| DOIs | |
| Publication status | Published - 3 Aug 2020 |
| Externally published | Yes |
Bibliographical note
Funding Information:Funding: The work has been funded by Minciencias, through the 111574454836 project. Support from Minciencias, The University of Antioquia and The Max Planck Society through the cooperation agreement 566-1, 2014, is also gratefully acknowledged.
Funding
Funding: The work has been funded by Minciencias, through the 111574454836 project. Support from Minciencias, The University of Antioquia and The Max Planck Society through the cooperation agreement 566-1, 2014, is also gratefully acknowledged.
Keywords
- Biomolecules
- Electrochemical biosensing
- Nanobioconjugates
- Nanomaterials
- Signal amplification
- Nanostructures/chemistry
- Electrochemical Techniques
- Biomarkers/analysis
- Biosensing Techniques/methods
- Humans
- Nucleic Acids/chemistry
- Toxins, Biological/analysis
- Polymers/chemistry
- Proteins/chemistry
- Aptamers, Nucleotide/chemistry
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