Magnetic Synthetic Receptors for Selective Clean-Up in Protein Biomarker Quantification.
Nicholas McKitterickFrida BraathenMagdalena A Switnicka-PlakPeter A G CormackLéon ReubsaetTrine Grønhaug HalvorsenPublished in: Journal of proteome research (2020)
Biomarker analysis by mass spectrometry (MS) can allow for the rapid quantification of low abundant biomarkers. However, the complexity of human serum is a limiting factor in MS-based bioanalysis; therefore, novel biomarker enrichment strategies are of interest, particularly if the enrichment strategies are of low cost and are easy to use. One such strategy involves the use of molecularly imprinted polymers (MIPs) as synthetic receptors for biomarker enrichment. In the present study, a magnetic solid-phase extraction (mSPE) platform, based on magnetic MIP (mMIP) sorbents, is disclosed, for use in the MS-based quantification of proteins by the bottom-up approach. Progastrin releasing peptide (ProGRP), a low abundant and clinically sensitive biomarker for small cell lung cancer (SCLC), was used to exemplify the mSPE platform. Four different mMIPs were synthesized, and an mSPE method was developed and optimized for the extraction of low concentrations of tryptic peptides from human serum. The mSPE method enabled the selective extraction of the ProGRP signature peptide, the nonapeptide NLLGLIEAK, prior to quantification of the target via LC-MS/MS. Overall, the mSPE method demonstrated its potential as a low cost, rapid, and straightforward sample preparation method, with demonstrably strong binding, acceptable recoveries, and good compatibility with MS. mMIPs are a potential low-cost alternative to current clinical methods for biomarker analysis.
Keyphrases
- molecularly imprinted
- low cost
- solid phase extraction
- mass spectrometry
- liquid chromatography
- high performance liquid chromatography
- small cell lung cancer
- multiple sclerosis
- liquid chromatography tandem mass spectrometry
- ms ms
- gas chromatography mass spectrometry
- tandem mass spectrometry
- simultaneous determination
- high resolution mass spectrometry
- small molecule
- amino acid
- risk assessment
- transcription factor
- quantum dots