Contract for the provision of a combined High-Resolution Mass Spectrometer (HRMS) for metabolomic analysis equipped with Desorption Electrospray Ionisation (DESI) imaging capability, based on a Waters Xevo QTof/MRT platform with Desorption Electrospray Ionisation (DESI) XS with imaging capabilities.

EF25Voluntary ex-ante transparency notice – general directive5fdf425c-893d-49ed-9840-deaea5c14d00UCUniversity College Cork
Estimated value
Deadline
Competition00 participants
Lots11 lot

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Key information

Contract type
Deadline
CPV codes
38433100 - Mass spectrometer
Status
Awarded
Notice type
EF25Voluntary ex-ante transparency notice – general directive
Source
Estimated value
Publication date
18 Aug 2026, 23:00

Overview

University College Cork is seeking to procure: 1. A combined High-Resolution Mass Spectrometer (HRMS) for metabolomic analysis equipped with Desorption Electrospray Ionisation (DESI) imaging capability, based on a Waters Xevo QTof/MRT platform with Desorption Electrospray Ionisation (DESI) XS with imaging capabilities 2. A complementary triple quadrupole mass spectrometer (Waters Xevo TQ-S cronos/micro) for highly sensitive targeted quantitative metabolomics. This infrastructure is required to support a Mass Spectrometry Core Facility (MS-IMPACT) funded through the Higher Education Research Equipment Grant (HEREG). The combined platform will provide complementary capabilities spanning discovery metabolomics, structural characterisation, spatial molecular imaging, and targeted quantitative analysis. The HRMS with DESI will be used for biological, environmental, pharmaceutical, forensic, archaeological, geological and bioprocess research applications and analysis from simple and complex mixtures with the ability to simultaneously to identify known metabolites with high sensitivity, discover previously unknown molecular features, determine accurate molecular masses and elemental compositions, characterise peptides, intact proteins, glycans, and small molecules, spatially localise pharmaceuticals, metabolites and chemical entities within complex biological and non-biological samples, including microbial modifications. One of the key differentiators for the Xevo QTof/MRT platform over other instruments is the reduced sampling time which enables better consistency over the peak range – this is particularly important when sampling a surface but important in many applications. The infrastructure will support applications including: biopharmaceutical characterisation, intact protein mass analysis; peptide mapping, glycan and glycopeptide profiling, microbial fermentation studies, food and environmental metabolomics, natural product discovery, clinical biomarker discovery; pharmaceutical synthesis, process, metabolites and degradation products, forensic and contaminant analysis. A key requirement of this infrastructure is the ability to perform ambient, minimally destructive mass spectrometry imaging (MSI) ideally within one vendor integrated platform offering (hardware, software, support). The Xevo G3 QTof will be compatible for DESI XS imaging for routine comprehensive tissue imaging and for locating substrates on a range of materials. DESI enables direct analysis of compounds from surfaces under ambient conditions with little or no sample preparation, by generating charged microdroplets that extract and ionise molecules directly from the sample surface. Unlike matrix-assisted laser desorption ionisation (MALDI), DESI does not require matrix deposition, minimises chemical modification/ morphological changes in samples, reduces risk of analyte redistribution caused by matrix application; enables rapid analysis of heterogeneous samples; allows analysis under near-native conditions,

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Contracting authorities1

UC

IE-REGISTRATION-NUMBER IE0006286E

ieCork, Ireland
[email protected]

Lots1

Documentation1

1 document
  • Contract for the provision of a combined High-Resolution Mass Spectrometer (HRMS) for metabolomic analysis equipped with Desorption Electrospray Ionisation (DESI) imaging capability, based on a Waters (notice).pdf

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