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Published on: May 3, 2018
Temporal Relationship Between Changes in Serum Calcium and Hypercholesteremia and Its Impact on Future Brachial-Ankle
Xing Meng1, Tianshu Han2, Wenbo Jiang2
1Division of Clinical Nutrition, The First Affiliated Hospital of Harbin Medical University, Harbin, China.
Insights
Elevated serum calcium levels precede increases in serum cholesterol, a relationship that may contribute to arterial stiffness. This finding highlights a potential pathway influencing cardiovascular disease risk.
Area of Science:
- Cardiovascular Science
- Biochemistry
- Epidemiology
Background:
- High serum calcium and cholesterol are known cardiovascular disease (CVD) risk factors.
- The temporal relationship and mutual influence between these factors in CVD development are not well understood.
Purpose of the Study:
- To establish the temporal relationship between serum calcium and cholesterol changes.
- To investigate if this relationship influences arterial elasticity (brachial-ankle pulse wave velocity, baPWV).
Main Methods:
- Longitudinal cohort study of 3,292 Chinese participants (aged 20-74 years) with 5.7-year follow-up.
- Serum calcium and cholesterol measured at baseline and follow-up.
- Cross-lagged path analysis and mediation analysis used.
Main Results:
- Serum calcium significantly predicted subsequent cholesterol levels more than the reverse (β2 = 0.110 vs. β1 = 0.047, P = 0.010).
- This calcium-to-cholesterol effect was stronger in individuals with high baPWV.
- Cholesterol partially mediated the association between higher serum calcium and increased baPWV (21.7% mediation).
Conclusions:
- Increased serum calcium precedes increased serum cholesterol.
- This temporal sequence may contribute to the development of arterial stiffness (higher baPWV).
Abstract:
Background: The high levels of serum calcium and cholesterol are the important risk factors of cardiovascular disease (CVD), which frequently influence each other during the development of CVD. However, few studies have examined their temporal relationship to confirm the precursor, and it is still largely unknown whether and how their temporal relationship would influence the development of CVD. This study aimed to establish the temporal relationship between the changes in serum calcium and cholesterol using the longitudinal cohort data, and examine whether this temporal relationship influenced the arterial elasticity indicated by brachial-ankle pulse wave velocity (baPWV). Methods: This is a cohort study with a sample of 3,292 Chinese participants (aged 20-74 years) with 5.7 years follow-up. Serum calcium and cholesterol were measured at baseline and follow-up survey. The cross-lagged path analysis was used to examine their temporal relationship, and mediation analysis was performed to evaluate the potential mediating effect. Results: The cross-lagged path coefficients (β2 values) from baseline serum calcium to follow-up cholesterol was significantly greater than the path coefficients (β1 values) from baseline cholesterol to follow-up serum calcium (β2 = 0.110 vs. β1 = 0.047; P = 0.010) after adjusting for the multiple covariates. The path coefficients from baseline serum calcium to follow-up cholesterol in the participants with high baPWV was significantly greater than the participants with low baPWV (β2 = 0.155 for high baPWV and β2 = 0.077 for low baPWV, P = 0.028 for the difference between the β2 values). Moreover, cholesterol partially mediated the association between the higher serum calcium and greater subsequent baPWV values, the percentage of the total effect mediated by cholesterol was estimated at 21.7%. Conclusion: Our findings indicate that increased serum calcium precedes increased in serum cholesterol, and this temporal relationship may contribute to the development of higher baPWV levels.
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