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Updated: Oct 12, 2025

Multimodal Study of Murine Cardiovascular Remodeling: Four-Dimensional Ultrasound and Mass Spectrometry Imaging
Published on: January 10, 2025
Comparative lipid profiling of murine and human atherosclerotic plaques using high-resolution MALDI MSI
Pegah Khamehgir-Silz1,2, Stefanie Gerbig1, Nadine Volk3,4
1Institute of Inorganic and Analytical Chemistry, Justus Liebig University, Giessen, Germany.
Abstract:
The distribution of atherosclerotic lesions in the aorta and its branches of ApoE knockout (ApoE-/-) mice is like that of patients with atherosclerosis. By using high-resolution MALDI mass spectrometry imaging (MSI), we aimed at characterizing universally applicable physiological biomarkers by comparing the murine lipid marker profile with that of human atherosclerotic arteries. Therefore, the aorta or carotid artery of male ApoE-/- mice at different ages, human arteries with documented atherosclerotic changes originated from amputated limbs, and corresponding controls were analysed. Obtained data were subjected to multivariate statistical analysis to identify potential biomarkers. Thirty-one m/z values corresponding to individual lipid species of cholesterol esters, lysophosphatidylcholines, lysophosphatidylethanolamines, and cholesterol derivatives were found to be specific in aortic atherosclerotic plaques of old ApoE-/- mice. The lipid composition at related vessel positions of young ApoE-/- mice was more comparable with wild-type mice. Twenty-six m/z values of the murine lipid markers were found in human atherosclerotic peripheral arteries but also control vessels and showed a more patient-dependent diverse distribution. Extensive data analysis without marker preselection based on mouse data revealed lysophosphatidylcholine and glucosylated cholesterol species, the latter not being detected in the murine atherosclerotic tissue, as specific potential novel human atherosclerotic vessel markers. Despite the heterogeneous lipid profile of atherosclerotic peripheral arteries derived from human patients, we identified lipids specifically colocalized to atherosclerotic human tissue and plaques in ApoE-/- mice. These data highlight species-dependent differences in lipid profiles between peripheral artery disease and aortic atherosclerosis.
Insights
This study compared lipid profiles in mouse and human arteries using mass spectrometry imaging. Researchers identified specific lipid markers for atherosclerosis, noting species-dependent differences between aortic and peripheral artery disease.
Area of Science:
- Biochemistry
- Medical research
- Mass spectrometry imaging
Background:
- Atherosclerosis lesion distribution in ApoE knockout (ApoE-/-) mice mirrors human disease.
- Lipid profiles are crucial in understanding atherosclerosis pathogenesis.
Purpose of the Study:
- To characterize universally applicable physiological biomarkers for atherosclerosis.
- To compare murine lipid marker profiles with human atherosclerotic arteries using mass spectrometry imaging (MSI).
Main Methods:
- Analysis of aortas and carotid arteries from ApoE-/- mice and human arteries (atherosclerotic and control).
- High-resolution MALDI-MSI was employed to obtain lipid profiles.
- Multivariate statistical analysis was used to identify potential biomarkers.
Main Results:
- Thirty-one m/z values (lipids) were specific to atherosclerotic plaques in old ApoE-/- mice.
- Twenty-six murine lipid markers were found in human atherosclerotic peripheral arteries, but with patient-dependent variations.
- Lysophosphatidylcholine and glucosylated cholesterol species were identified as novel human atherosclerotic markers.
Conclusions:
- Lipid profiles in ApoE-/- mice partially reflect human atherosclerosis.
- Species-dependent differences exist between peripheral artery disease and aortic atherosclerosis lipid profiles.
- MSI is a powerful tool for identifying atherosclerosis biomarkers across species.
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