Key result
Ventricular fibrillation during first STEMI is linked to ~125% higher ACTBL2 and elevated F13A1 proteins.
Why the study?
The underlying biological mechanisms of ventricular fibrillation during acute myocardial infarction are largely unknown.
Are specific plasma proteins associated with ventricular fibrillation during first STEMI?
Case-Control (n=229)
Are specific plasma proteins associated with ventricular fibrillation during first STEMI?
Effect estimate: FC 2.25 for ACTBL2; FC 1.48 for F13A1
p-value: p=<0.001
ACTBL2 and F13A1 are significantly up-regulated in patients with VF during first STEMI, suggesting potential novel molecular mechanisms or biomarkers.
Associations of ACTBL2 and F13A1 with VF in first STEMI are hypothesis-generating; prospective validation needed before biomarker consideration.
AIMS: The underlying biological mechanisms of ventricular fibrillation (VF) during acute myocardial infarction are largely unknown. To our knowledge, this is the first proteomic study for this trait, with the aim to identify and characterize proteins that are associated with VF during first ST-elevation myocardial infarction (STEMI). METHODS AND RESULTS: We included 230 participants from a Danish ongoing case-control study on patients with first STEMI with VF (case, n = 110) and without VF (control, n = 120) before guided catheter insertion for primary percutaneous coronary intervention. The plasma proteome was investigated using mass spectrometry-based proteomics on plasma samples collected within 24 h of symptom onset, and one patient was excluded in quality control. In 229 STEMI patients {72% men, median age 62 years [interquartile range (IQR): 54-70]}, a median of 257 proteins (IQR: 244-281) were quantified per patient. A total of 26 proteins were associated with VF; these proteins were involved in several biological processes including blood coagulation, haemostasis, and immunity. After correcting for multiple testing, two up-regulated proteins remained significantly associated with VF, actin beta-like 2 [ACTBL2, fold change (FC) 2.25, P < 0.001, q = 0.023], and coagulation factor XIII-A (F13A1, FC 1.48, P < 0.001, q = 0.023). None of the proteins were correlated with anterior infarct location. CONCLUSION: Ventricular fibrillation due to first STEMI was significantly associated with two up-regulated proteins (ACTBL2 and F13A1), suggesting that they may represent novel underlying molecular VF mechanisms. Further research is needed to determine whether these proteins are predictive biomarkers or acute phase response proteins to VF during acute ischaemia.
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Stampe et al. (2023) conducted a case-control in First ST-elevation myocardial infarction (STEMI) (n=229). Ventricular fibrillation vs. No ventricular fibrillation was evaluated on Up-regulated plasma proteins (FC 2.25 for ACTBL2; FC 1.48 for F13A1, p=<0.001). Ventricular fibrillation during first STEMI was significantly associated with two up-regulated proteins, ACTBL2 (fold change 2.25, P<0.001) and F13A1 (fold change 1.48, P<0.001).
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