TY - JOUR
T1 - Multicenter Longitudinal Quality Assessment of MS-Based Proteomics in Plasma and Serum
AU - Kardell, Oliver
AU - Gronauer, Thomas
AU - von Toerne, Christine
AU - Merl-Pham, Juliane
AU - König, Ann Christine
AU - Barth, Teresa K.
AU - Mergner, Julia
AU - Ludwig, Christina
AU - Tüshaus, Johanna
AU - Giesbertz, Pieter
AU - Breimann, Stephan
AU - Schweizer, Lisa
AU - Müller, Torsten
AU - Kliewer, Georg
AU - Distler, Ute
AU - Gomez-Zepeda, David
AU - Popp, Oliver
AU - Qin, Di
AU - Teupser, Daniel
AU - Cox, Jürgen
AU - Imhof, Axel
AU - Küster, Bernhard
AU - Lichtenthaler, Stefan F.
AU - Krijgsveld, Jeroen
AU - Tenzer, Stefan
AU - Mertins, Philipp
AU - Coscia, Fabian
AU - Hauck, Stefanie M.
N1 - Publisher Copyright:
© 2025 The Authors. Published by American Chemical Society.
PY - 2025/3/7
Y1 - 2025/3/7
N2 - Advancing MS-based proteomics toward clinical applications evolves around developing standardized start-to-finish and fit-for-purpose workflows for clinical specimens. Steps along the method design involve the determination and optimization of several bioanalytical parameters such as selectivity, sensitivity, accuracy, and precision. In a joint effort, eight proteomics laboratories belonging to the MSCoreSys initiative including the CLINSPECT-M, MSTARS, DIASyM, and SMART-CARE consortia performed a longitudinal round-robin study to assess the analysis performance of plasma and serum as clinically relevant samples. A variety of LC-MS/MS setups including mass spectrometer models from ThermoFisher and Bruker as well as LC systems from ThermoFisher, Evosep, and Waters Corporation were used in this study. As key performance indicators, sensitivity, precision, and reproducibility were monitored over time. Protein identifications range between 300 and 400 IDs across different state-of-the-art MS instruments, with timsTOF Pro, Orbitrap Exploris 480, and Q Exactive HF-X being among the top performers. Overall, 71 proteins are reproducibly detectable in all setups in both serum and plasma samples, and 22 of these proteins are FDA-approved biomarkers, which are reproducibly quantified (CV < 20% with label-free quantification). In total, the round-robin study highlights a promising baseline for bringing MS-based measurements of serum and plasma samples closer to clinical utility.
AB - Advancing MS-based proteomics toward clinical applications evolves around developing standardized start-to-finish and fit-for-purpose workflows for clinical specimens. Steps along the method design involve the determination and optimization of several bioanalytical parameters such as selectivity, sensitivity, accuracy, and precision. In a joint effort, eight proteomics laboratories belonging to the MSCoreSys initiative including the CLINSPECT-M, MSTARS, DIASyM, and SMART-CARE consortia performed a longitudinal round-robin study to assess the analysis performance of plasma and serum as clinically relevant samples. A variety of LC-MS/MS setups including mass spectrometer models from ThermoFisher and Bruker as well as LC systems from ThermoFisher, Evosep, and Waters Corporation were used in this study. As key performance indicators, sensitivity, precision, and reproducibility were monitored over time. Protein identifications range between 300 and 400 IDs across different state-of-the-art MS instruments, with timsTOF Pro, Orbitrap Exploris 480, and Q Exactive HF-X being among the top performers. Overall, 71 proteins are reproducibly detectable in all setups in both serum and plasma samples, and 22 of these proteins are FDA-approved biomarkers, which are reproducibly quantified (CV < 20% with label-free quantification). In total, the round-robin study highlights a promising baseline for bringing MS-based measurements of serum and plasma samples closer to clinical utility.
KW - LC-MS/MS
KW - R package mpwR
KW - clinical specimen
KW - longitudinal round-robin study
KW - plasma
KW - serum
UR - http://www.scopus.com/inward/record.url?scp=85217260781&partnerID=8YFLogxK
U2 - 10.1021/acs.jproteome.4c00644
DO - 10.1021/acs.jproteome.4c00644
M3 - Article
AN - SCOPUS:85217260781
SN - 1535-3893
VL - 24
SP - 1017
EP - 1029
JO - Journal of Proteome Research
JF - Journal of Proteome Research
IS - 3
ER -