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Low serum calcium is associated with higher long-term mortality in myocardial infarction patients from a
Timo Schmitz1,2, Christian Thilo3, Jakob Linseisen4,5
1MONIKA/KORA Myocardial Infarction Registry, University Hospital of Augsburg, Augsburg, Germany. t.schmitz@unika-t.de.
Insights
Low serum calcium levels predict higher mortality risk within 7 years after acute myocardial infarction (AMI). This association weakens over time, with no significant differences observed beyond 2500 days post-AMI.
Area of Science:
- Cardiology
- Clinical Biochemistry
Background:
- Serum calcium is vital for cardiovascular function.
- Abnormal calcium levels are linked to cardiovascular diseases.
- The predictive value of calcium for long-term mortality post-acute myocardial infarction (AMI) remains unclear.
Purpose of the Study:
- To investigate the association between admission serum calcium levels and long-term mortality after AMI.
- To determine if serum calcium predicts mortality in different timeframes post-AMI.
Main Methods:
- A cohort of 3732 patients surviving at least 28 days post-AMI was analyzed.
- Serum calcium levels at admission were divided into quartiles.
- Cox regression models assessed mortality risk over two periods: 28-2500 days and >2500 days post-AMI.
- Models were adjusted for comorbidities, clinical factors, and treatments.
Main Results:
- Low serum calcium (quartile 1) was associated with significantly higher all-cause mortality risk between 28 and 2500 days post-AMI (OR 1.53).
- No significant mortality differences were observed between calcium quartiles in the later period (>2500 days).
- The third quartile (normal-high calcium) served as the reference group.
Conclusions:
- Low admission serum calcium is an independent predictor of adverse outcomes in the initial 7 years following AMI.
- The predictive effect of low serum calcium on mortality attenuates significantly after 2500 days post-AMI.
Abstract:
Calcium plays an essential role in physiology of the cardiovascular system. Aberrations from normal serum calcium levels are known to be associated with several cardiovascular diseases. Its possible role as a predictor for long-term mortality after acute myocardial infarction (AMI) is still uncertain. In this study, a total of 3732 patients (aged 25-74 years) with incident AMI surviving at least 28 days after AMI was included. The median follow-up time was 6.0 years. Admission total serum calcium levels were divided into quartiles. The Kaplan-Meier-Curve suggested a division of the follow up time in two different time periods. So, Cox regression models were calculated to assess association between admission serum calcium levels and all-cause long-term mortality with two observation periods: 28-2500 days and > 2500 days. The final model was adjusted for various comorbidities, clinical characteristics, in-hospital treatment and medication. The third quartile (normal-high Calcium levels) served as the reference group. The fully adjusted Cox-regression model shows significantly higher mortality risk for low serum calcium (quartile 1) within the timeframe 28-2500 days after the event (OR 1.53 [1.19-1.98]). The other groups did not differ significantly from each other. In the later observation period (from 2500 days until death or censoring) no more significant differences were seen between the four calcium quartiles. In summary, low serum calcium is an independent predictor of adverse outcome in the first 2500 days (about 7 years) after AMI. On later points in time this effect attenuates, so that no more significant differences can be observed.
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