High-speed biomarker identification utilizing porous silicon nanovial arrays and MALDI-TOF mass spectrometry.
Speed and accuracy are crucial prerequisites in the application of proteomic methods to clinical medicine. We describe a microfluidic-based nanovial array for rapid proteolytic processing linked to MALDI-TOF MS. This microscale format consumes only minute amounts of sample, and it is compatible with...
Váldodahkkit: | Finnskog, D, Jaras, K, Ressine, A, Malm, J, Marko-Varga, G, Lilja, H, Laurell, T |
---|---|
Materiálatiipa: | Journal article |
Giella: | English |
Almmustuhtton: |
2006
|
Geahča maid
-
Macro/nano-structured silicon as solid support for antibody arrays: Surface design, reproducibility, and assay characteristics enabling discovery of kallikrein gene products for prostate disease diagnostics
Dahkki: Ressine, A, et al.
Almmustuhtton: (2005) -
ENSAM: Europium Nanoparticles for Signal enhancement of Antibody Microarrays on nanoporous silicon.
Dahkki: Järås, K, et al.
Almmustuhtton: (2008) -
Porous silicon antibody microarrays for quantitative analysis: measurement of free and total PSA in clinical plasma samples.
Dahkki: Järås, K, et al.
Almmustuhtton: (2012) -
Reverse-phase versus sandwich antibody microarray, technical comparison from a clinical perspective.
Dahkki: Järås, K, et al.
Almmustuhtton: (2007) -
Performance of MALDI–TOF mass spectrometry in the Philippines
Dahkki: Osa, M, et al.
Almmustuhtton: (2021)