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Proteomic profiling of sudden cardiac death with acquired cardiac hypertrophy
Yu Kakimoto1, Atsushi Ueda2, Masatoshi Ito3
1Department of Forensic Medicine, Tokai University School of Medicine, Kanagawa, Japan. kakimoto@tokai-u.jp.
Insights
Sudden cardiac death (SCD) with acquired cardiac hypertrophy (SCH) shows distinct proteomic alterations, particularly increased sarcomere proteins like MYH7 and MYL3, aiding postmortem diagnosis in older adults.
Area of Science:
- Cardiology
- Proteomics
- Pathology
Background:
- Cardiac hypertrophy, linked to hypertension and obesity, is a risk factor for sudden cardiac death (SCD).
- Distinguishing acquired cardiac hypertrophy (SCH) from compensated cardiac hypertrophy (CCH) postmortem is challenging.
- Understanding proteomic differences in SCH is crucial for accurate postmortem diagnosis.
Purpose of the Study:
- To identify proteomic alterations in SCH compared to CCH and control groups.
- To establish a proteomic guideline for postmortem diagnosis of SCH.
- To investigate the role of sarcomere protein changes in SCD risk.
Main Methods:
- Autopsy-derived cardiac tissue samples from SCH, CCH, and control groups (age > 40).
- Histological examination, shotgun proteomic analysis, and quantitative PCR.
- Exclusion of hypertrophic cardiomyopathy cases.
Main Results:
- Obesity, myocardial hypertrophy, and mild fibrosis were similar in SCH and CCH groups versus controls.
- Distinct proteomic profiles were observed in SCH cases compared to CCH and control cases.
- Increased levels of sarcomere proteins, including MYH7 and MYL3 (protein and mRNA), were significant in SCH.
Conclusions:
- This study presents the first cardiac proteomic analysis of SCH and CCH.
- Stepwise upregulation of sarcomere proteins may elevate SCD risk in acquired cardiac hypertrophy.
- Findings may assist in the postmortem diagnosis of SCH in middle-aged and older individuals.
Background:
Cardiac hypertrophy, which develops in middle-aged and older individuals as a consequence of hypertension and obesity, is an established risk factor for sudden cardiac death (SCD). However, it is sometimes difficult to differentiate SCD with acquired cardiac hypertrophy (SCH) from compensated cardiac hypertrophy (CCH), at autopsy. We aimed to elucidate the proteomic alteration in SCH, which can be a guideline for future postmortem diagnosis.
Methods:
Cardiac tissues were sampled at autopsy. SCH group consisted of ischemic heart failure, hypertensive heart failure, and aortic stenosis. CCH group included cases of non-cardiac death with cardiac hypertrophy. The control group comprised cases of non-cardiac death without cardiac hypertrophy. All patients were aged > 40 years, and hypertrophic cardiomyopathy was not included in this study. We performed histological examination and shotgun proteomic analysis, followed by quantitative polymerase chain reaction analysis.
Results:
Significant obesity and myocardial hypertrophy, and mild myocardial fibrosis were comparable in SCH and CCH cases compared to control cases. The proteomic profile of SCH cases was distinguishable from those of CCH and control cases, and many sarcomere proteins were increased in SCH cases. Especially, the protein and mRNA levels of MYH7 and MYL3 were significantly increased in SCH cases.
Conclusion:
This is the first report of cardiac proteomic analysis in SCH and CCH cases. The stepwise upregulation of sarcomere proteins may increase the risk for SCD in acquired cardiac hypertrophy before cardiac fibrosis progresses significantly. These findings can possibly aid in the postmortem diagnosis of SCH in middle-aged and older individuals.
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