Lithium and zinc levels along with oxidative status in myocardial infarction: A case-control study
Hamidreza Shiri1, Arian Sagha2, Hamidreza Nasri3
1Department of Clinical Biochemistry, Tehran University of Medical Sciences, Tehran, Iran.
Insights
Lithium (Li) may protect against coronary artery disease (CAD) by reducing oxidative stress, while high zinc (Zn) levels increase myocardial infarction (MI) risk. This study found Li levels were higher in controls, suggesting a protective role.
Area of Science:
- Cardiology
- Trace Element Research
- Oxidative Stress Studies
Background:
- Coronary artery disease (CAD) and myocardial infarction (MI) are leading global health issues.
- Established risk factors for MI exist, but the role of trace elements like lithium (Li) and zinc (Zn) remains under-investigated.
- Oxidative stress (OS) parameters, including nitric oxide (NO) and total antioxidant capacity (TAC), are implicated in cardiovascular health.
Purpose of the Study:
- To investigate lithium (Li) and zinc (Zn) levels in patients with myocardial infarction (MI) compared to healthy controls.
- To assess the relationship between Li and Zn levels and oxidative stress markers (NO, TAC) in MI patients.
- To evaluate the diagnostic and prognostic value of Li and Zn in coronary artery disease (CAD) severity.
Main Methods:
- A case-control study involving 182 MI patients and 83 healthy controls.
- MI patients were stratified based on coronary artery block (CAB) severity (>50% and <50%).
- Li and Zn levels were measured using flame atomic absorption spectrometry; NO and TAC were quantified using biochemical assays.
Main Results:
- Lithium (Li) and Total Antioxidant Capacity (TAC) were significantly higher in controls and less severe CAD groups.
- Zinc (Zn) and Nitric Oxide (NO) levels were elevated in MI patients and positively correlated with disease severity.
- Logistic regression indicated Li and TAC are protective against MI, while Zn and NO increase MI risk.
Conclusions:
- Lithium (Li) demonstrates a protective effect against CAD, potentially by mitigating oxidative stress and improving ejection fraction.
- Elevated zinc (Zn) levels (>1810 μg/mL) are associated with increased MI risk and cytotoxicity.
- Li supplementation may be a viable strategy to reduce the risk of CAD.
Background:
Coronary artery disease (CAD) and myocardial infarction (MI) are the most prevalent diseases globally. While several risk factors for MI are well assessed, the influence of trace elements on MI has not been thoroughly studied. This study aimed to evaluate lithium (Li) and zinc (Zn) levels in MI patients and healthy control and assess their relationship with oxidative stress (OS) parameters, such as nitric oxide (NO) and total antioxidant capacity (TAC).
Methods:
This case-control study was performed on 182 patients with MI and 83 healthy subjects at Shafa Hospital in Kerman, Iran. MI patients were divided into two groups based on the angiography results: those with coronary artery block above 50 % (CAB >50 %, n = 92) and those with coronary artery block below 50 % (CAB <50 %, n = 90). A flame atomic absorption spectrometer was used to detect Li and Zn levels, and biochemical indices were measured by an autoanalyzer. Also, ferric reducing antioxidant power assay and the Griess method were used to measure the amounts of NO and TAC.
Results:
The levels of TAC and Li were significantly higher in the control group than in the patient groups (in both CAB >50 % and CAB <50 % groups). Furthermore, in the CAB <50 % group, TAC and Li levels were significantly higher than in the CAB >50 % group. In the Zn levels evaluation, higher concentration was seen in the CAB >50 % group compared to the CAB <50 % group (P < 0.05). Moreover, Zn and NO levels were significantly higher in both CAB groups compared to controls. In continue, Li levels had a positive association with TAC and ejection fraction percentage (EF%) as well as a negative association with NO levels and Zn levels had a significant positive association with NO and a negative association with TAC. In logistic regression analysis, Li, TAC, and high-density lipoprotein-cholesterol significantly decreased the odds ratio (OR) of MI, whereas Zn, NO, total cholesterol, triglyceride, low-density lipoprotein-cholesterol, and high-sensitivity C-reactive protein (hs-CRP) significantly increased the OR of MI. Furthermore, the area under the curve (AUC) analysis indicated that Li had the highest AUC for the diagnosis of CAB >50 % (Li < 167 ng/mL), and Zn ≥ 1810 μg/mL increased disease severity.
Conclusion:
Our investigation revealed that Li had a protective effect against CAD by decreasing OS and increasing EF%. However, Zn at concentrations higher than 1810 μg/mL was found to be cytotoxic and increased the risk of MI through increased OS. Taken togather, it could be concluded that Li supplementation may decrease the risk of CAD.
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