A Novel Multiarmed Bifunctional PEG Derivative for the Preparation of Mass Spectrometry Ion Sources with Antifouling Property and High Selectivity.
Jiawei LiuMinli YangFengming ChenXiuli XuYiping ChenFeng ZhangPublished in: Analytical chemistry (2024)
It is challenging to prepare a highly selective mass spectrometry (MS) ion source for the rapid and highly sensitive detection of analytes, especially mycotoxins. In this study, an amino and tetrazine bifunctionalized multiarm PEG derivative (NH 2 HCl-4armPEG10K-(MTz) 3 ), which can be easily immobilized on the substrate by the addition reaction between amino and polydopamine, was used for the preparation of MS ionization substrate. NH 2 HCl-4armPEG10K-(MTz) 3 can also be used as a linker to immobilize sufficient streptavidin (SA) on the surface of the substrate by a click reaction. The process further promotes the immobilization of broad-spectrum antibodies (3D4), which were used as the recognition element for ZEN and its metabolites. The prepared SSS-Au-PDA-4armPEG10K-SA-3D4 not only can rapidly enrich ZEN and its metabolites with high selectivity but also shows good antifouling properties in the matrix. After simple sample preparation, the prepared SSS-Au-PDA-4armPEG10K-SA-3D4 can be directly coupled with MS to achieve high sensitivity (LODs: 0.18-0.66 ng/mL, LOQs: 0.5-1.0 ng/mL) and selective detection of ZEN and its metabolites in the matrix. At the same time, satisfactory recoveries (83.60-97.80%) and precision (RSD: 2.80-9.10%) can also be obtained. The prepared SSS-Au-PDA-4armPEG10K-SA-3D4 is expected to provide a powerful tool for the rapid and highly sensitive determination of multiple targets by MS.
Keyphrases
- mass spectrometry
- sensitive detection
- loop mediated isothermal amplification
- ms ms
- molecularly imprinted
- gas chromatography
- liquid chromatography
- capillary electrophoresis
- quantum dots
- high performance liquid chromatography
- solid phase extraction
- structural basis
- multiple sclerosis
- high resolution
- drug delivery
- room temperature
- amino acid
- magnetic nanoparticles
- ionic liquid
- living cells
- metal organic framework
- simultaneous determination
- highly efficient