Toward Optimized Proteomics Analysis to Detect Bacterial and Host Proteins in Calcified Coronary Artery Plaques

Abstract Coronary calcification is the final stage in coronary heart disease, associated with significantly increased morbidity and mortality. The molecular pathology of calcification and especially events triggering calcification are poorly understood. Metagenomic and molecular microbial techniques have identified the presence of oral biofilm-producing and dental calculus-forming bacteria in atherosclerotic plaques, suggesting that they may be involved in calcification. To enable studying this at the proteome level, we compared four different protein extraction methods to find a robust and reliable method for the identification and quantification of human and bacterial proteins from 10 calcified arterial plaques. We identified 3 913 human proteins and 24 bacterial proteins. These findings provide further support for the presence of bacterial proteins in calcified areas of coronary artery plaques, with Fusobacteria being the most abundant bacterial protein source. Comparisons of the extraction methods showed that the urea-based extraction method was most optimal due to its simplicity and reproducible identification of a high number of proteins, which makes it suitable for further large-scale analysis of coronary artery plaque samples.

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Publication Details

Journal
Journal of Proteome Research
Published
2026-09-14
DOI
https://doi.org/10.1021/acs.jproteome.6c00422
Primary Topic
Infective Endocarditis Diagnosis and Management
Type
article
Field-Weighted Citation Impact
0.00

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article

Toward Optimized Proteomics Analysis to Detect Bacterial and Host Proteins in Calcified Coronary Artery Plaques

Vesa P. Hytönen, Markus J. T. Ojanen, Pekka J. Karhunen, Kirsikka Musta et al.
Journal of Proteome Research
Infective Endocarditis Diagnosis and Management
article

Toward Optimized Proteomics Analysis to Detect Bacterial and Host Proteins in Calcified Coronary Artery Plaques

Vesa P. Hytönen, Markus J. T. Ojanen, Pekka J. Karhunen, Kirsikka Musta, Tuula A. Nyman, Maria Stensland, Terho Lehtimäki, Jonna Kankaanranta
article en

Abstract

Abstract Coronary calcification is the final stage in coronary heart disease, associated with significantly increased morbidity and mortality. The molecular pathology of calcification and especially events triggering calcification are poorly understood. Metagenomic and molecular microbial techniques have identified the presence of oral biofilm-producing and dental calculus-forming bacteria in atherosclerotic plaques, suggesting that they may be involved in calcification. To enable studying this at the proteome level, we compared four different protein extraction methods to find a robust and reliable method for the identification and quantification of human and bacterial proteins from 10 calcified arterial plaques. We identified 3 913 human proteins and 24 bacterial proteins. These findings provide further support for the presence of bacterial proteins in calcified areas of coronary artery plaques, with Fusobacteria being the most abundant bacterial protein source. Comparisons of the extraction methods showed that the urea-based extraction method was most optimal due to its simplicity and reproducible identification of a high number of proteins, which makes it suitable for further large-scale analysis of coronary artery plaque samples.

Journal of Proteome Research
Oslo University Hospital (NO), Tampere University (FI), Fimlab (Finland) (FI)
Yrjö Jahnssonin Säätiö, Academy of Finland, Jane ja Aatos Erkon Säätiö, Juho Vainion Säätiö, Tampereen Teknillinen Yliopisto, Sydäntutkimussäätiö, Sigrid Juséliuksen Säätiö, Tampereen Tuberkuloosisäätiö, Tays, Suomen kliinisen kemian yhdistys, Pirkanmaan Rahasto, H2020 Health, FP7 Health
Good health and well-being
Openalex Percentile: Top 11%
Infective Endocarditis Diagnosis and Management
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