A microfluidic poly(dimethylsiloxane) (PDMS) microdevice was realized, combining on-line protein electrophoretic separation, selection, and digestion of a protein of interest for identification by mass spectrometry. The system includes eight integrated valves and one micropump dedicated to control the flow operations. Myoglobin was successfully isolated from bovine serum albumin (BSA), then selected using integrated valves and digested in a rotary micromixer. Proteolytic peptides were recovered from the micromixer for protein identification. Total analysis from sample injection to protein identification is performed under 30 minutes, with samples of tens of nanolitres. The paper shows that PDMS technology can be successfully used for integr...
There has been much interest in the application of microfluidic systems to proteomics in recent year...
Biological samples are complicated, having many different components at a wide variety of concentrat...
Protein identification through peptide mass mapping by matrix-assisted laser desorption/ionization t...
A microfluidic poly(dimethylsiloxane) (PDMS) microdevice was realized, combining on-line protein ele...
The use of microfluidic components to create an analytical toolbox for the very rapidly growing fiel...
A typical sample processing pipeline for proteomics entails a series of laborious and low throughput...
Recently, microfluidic systems have been paid much attention to achieve high throughput proteome ana...
Proteome profiling is the identification and quantitation of all proteins in biological samples. An ...
In this paper we present an experimental protocol for protein immobilization on polydimethylsiloxane...
Since the introduction of electrospray ionization (ESI) and matrix assisted laser desorption ioniza...
The use of mass spectrometry in the biosciences has undergone huge growth in re- cent years due to ...
Proteomic analysis requires the combination of an extensive suite of technologies including protein ...
Mass spectrometry-based proteomics techniques have been very successful for the identification and s...
Microfluidic systems have been paid much attention to achieve high throughput proteomics analysis, w...
Microfluidic devices fabricated in poly(dimethylsiloxane) for biological studies This review describ...
There has been much interest in the application of microfluidic systems to proteomics in recent year...
Biological samples are complicated, having many different components at a wide variety of concentrat...
Protein identification through peptide mass mapping by matrix-assisted laser desorption/ionization t...
A microfluidic poly(dimethylsiloxane) (PDMS) microdevice was realized, combining on-line protein ele...
The use of microfluidic components to create an analytical toolbox for the very rapidly growing fiel...
A typical sample processing pipeline for proteomics entails a series of laborious and low throughput...
Recently, microfluidic systems have been paid much attention to achieve high throughput proteome ana...
Proteome profiling is the identification and quantitation of all proteins in biological samples. An ...
In this paper we present an experimental protocol for protein immobilization on polydimethylsiloxane...
Since the introduction of electrospray ionization (ESI) and matrix assisted laser desorption ioniza...
The use of mass spectrometry in the biosciences has undergone huge growth in re- cent years due to ...
Proteomic analysis requires the combination of an extensive suite of technologies including protein ...
Mass spectrometry-based proteomics techniques have been very successful for the identification and s...
Microfluidic systems have been paid much attention to achieve high throughput proteomics analysis, w...
Microfluidic devices fabricated in poly(dimethylsiloxane) for biological studies This review describ...
There has been much interest in the application of microfluidic systems to proteomics in recent year...
Biological samples are complicated, having many different components at a wide variety of concentrat...
Protein identification through peptide mass mapping by matrix-assisted laser desorption/ionization t...