Emerging tools for real‐time label‐free detection of interactions on functional protein microarrays
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Summary
Recent advances in high‐throughput technologies for displaying proteins on functional protein microarrays and the real‐time label‐free detection of interactions using probes of the local index of refraction, carbon nanotubes and nanowires, or microelectromechanical systems cantilevers are discussed.
- Type
- article
- Published
- 2005-11-01
- Cited by
- 151
- References
- 115
- Access
- Open access
- OpenAlex
- https://openalex.org/W16262683
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:34270965
Keywords
Computer science, Artificial intelligence
References
- Protein microarrays: applications and future challenges.
- Protein arrays and their role in proteomics.
- Fornel, Frédérique de
- Proteomics methods for probing molecular mechanisms in signal transduction.
- A new method for label-free imaging of biomolecular interactions
- GATEWAY recombinational cloning: application to the cloning of large numbers of open reading frames or ORFeomes.
- Surface Plasmons on Smooth and Rough Surfaces and on Gratings
- Colorimetric resonant reflection as a direct biochemical assay technique
- Detection of protein-protein interactions by protein fragment complementation strategies.
- Printing proteins as microarrays for high-throughput function determination.
- Extraordinary optical transmission through sub-wavelength hole arrays
- Bioassay of prostate-specific antigen (PSA) using microcantilevers
- The dynamic range of protein expression: A challenge for proteomic research
- New biochip technology for label-free detection of pathogens and their toxins.
- Exploring protein interactions by interaction-induced folding of proteins from complementary peptide fragments.
- A novel genetic system to detect proteinprotein interactions
- Self-Assembling Protein Microarrays
- Immunoassay of prostate-specific antigen (PSA) using resonant frequency shift of piezoelectric nanomechanical microcantilever.
- Structural thermodynamics: prediction of protein stability and protein binding affinities.
- Strongly enhanced optical transmission through subwavelength holes in metal films
Cited by
- Optimizing microarray-based in situ transcription-translation of proteins for MALDI mass spectrometry
- Integration of cell‐free protein coexpression with an enzyme‐linked immunosorbent assay enables rapid analysis of protein–protein interactions directly from DNA
- Development and application of Dissociable Antibody Microarray (DAMA) staining technique
- Caractérisation des interactions protéine / ligand par échange 1H/3H : application au complexe entre la protéine hAsf1 et l'histone H3
- Structural bioinformatics based method for predicting the initial adsorbed protein orientation on a surface
- Biomimetic Interfaces for Surface Sensitive Drug Discovery Techniques
- Design, fabrication and testing of an acoustic resonator-based biosensor for the detection of cancer biomarkers
- A Highly Responsive Silicon Nanowire/Amplifier MOSFET Hybrid Biosensor
- Development of Highly Sensitive Bulk Acoustic Wave Device Biosensor Arrays for Screening and Early Detection of Prostate Cancer
- Functional Assays on High‐Content Protein Microarrays
- Nanowire electrochemical sensors: can we live without labels?
- Nanopartículas como herramientas en procesos bio-químicos. Síntesis, caracterización, funcionalización y aplicaciones
- Development of an impedimetric biosensor using a non-antibody based biological recognition molecule
- Gaining insight into microbial physiology in the large intestine: a special role for stable isotopes.
- Nanotechnologies in protein microarrays.
- Parameter estimate of signal transduction pathways
- Application of Proteomics to Investigate Plant-Microbe Interactions
- Electrical detection of DNA immobilization and hybridization by streaming current measurements in microchannels
- Differential phase-contrast BioCD biosensor.
- Aptamers as recognition elements for label-free analytical devices
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