Molecular Mapping of Atherosclerotic Plaques with MALDI Mass Spectrometry Imaging

Atherosclerosis develops within heterogeneous arterial plaques. Here, even closely neighbouring regions can differ substantially in biological activity and potential vulnerability to rupture and thrombosis. Through matrix-assisted laser desorption/ionisation mass spectrometry (MALDI-MS) and especially MALDI imaging, these differences within the plaque can be studied while also preserving tissue architecture. With MALDI analysis, prepared tissue sections are converted into spatial molecular maps that show the differences in plaque chemistry across the arterial wall. These maps can be used to link changes in lipids and other biomolecules to regions affected by inflammation, necrosis, calcification and thrombosis. This narrative review, supported by a structured search of PubMed and PubMed Central from database inception to 14 September 2026, critically examines MALDI-based research in atherosclerosis across a translational continuum. The evidence base centres on spatial MALDI-MSI of plaque tissue, with non-imaging MALDI and orthogonal non-MALDI studies used as complementary context. Particular attention is given to the strength of evidence supporting proposed molecular signatures and to the distinction between exploratory findings and clinically validated applications. Integration of MALDI with histology, clinical imaging and emerging spatial-omics approaches could strengthen the biological interpretation of plaque-specific molecular signatures. However, methodological heterogeneity, incomplete molecular identification, small study populations and limited independent and prospective validation currently restrict translation into clinical practice.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-30
DOI
https://doi.org/10.3390/ijms27198745
Primary Topic
Mass Spectrometry Techniques and Applications
Type
article
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article

Molecular Mapping of Atherosclerotic Plaques with MALDI Mass Spectrometry Imaging

David Aebisher, Piotr Oleś, Aleksandra Kawczyk‐Krupka, Dorota Bartusik‐Aebisher et al.
International Journal of Molecular Sciences
Mass Spectrometry Techniques and Applications
article

Molecular Mapping of Atherosclerotic Plaques with MALDI Mass Spectrometry Imaging

David Aebisher, Piotr Oleś, Aleksandra Kawczyk‐Krupka, Dorota Bartusik‐Aebisher, Angelika Myśliwiec, Dawid Leksa, Magdalena Moś, Alina Pietryszyn-Bilińska, Daniel Roshan Justin Raj
article en

Abstract

Atherosclerosis develops within heterogeneous arterial plaques. Here, even closely neighbouring regions can differ substantially in biological activity and potential vulnerability to rupture and thrombosis. Through matrix-assisted laser desorption/ionisation mass spectrometry (MALDI-MS) and especially MALDI imaging, these differences within the plaque can be studied while also preserving tissue architecture. With MALDI analysis, prepared tissue sections are converted into spatial molecular maps that show the differences in plaque chemistry across the arterial wall. These maps can be used to link changes in lipids and other biomolecules to regions affected by inflammation, necrosis, calcification and thrombosis. This narrative review, supported by a structured search of PubMed and PubMed Central from database inception to 14 September 2026, critically examines MALDI-based research in atherosclerosis across a translational continuum. The evidence base centres on spatial MALDI-MSI of plaque tissue, with non-imaging MALDI and orthogonal non-MALDI studies used as complementary context. Particular attention is given to the strength of evidence supporting proposed molecular signatures and to the distinction between exploratory findings and clinically validated applications. Integration of MALDI with histology, clinical imaging and emerging spatial-omics approaches could strengthen the biological interpretation of plaque-specific molecular signatures. However, methodological heterogeneity, incomplete molecular identification, small study populations and limited independent and prospective validation currently restrict translation into clinical practice.

International Journal of Molecular SciencesVol. 27(19)
Medical University of Silesia (PL), University of Rzeszów (PL)
Good health and well-being
Openalex Percentile: Top 23%
Mass Spectrometry Techniques and Applications
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