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Published on: October 12, 2017
Inflammation reduces HDL protection against primary cardiac risk
James P Corsetti1, Ron T Gansevoort, Charles E Sparks
1Department of Pathology and Laboratory Medicine, University of Rochester School of Medicine and Dentistry, Rochester, NY 14642, USA. james_corsetti@urmc.rochester.edu
Insights
High levels of high-density lipoprotein (HDL) cholesterol and C-reactive protein (CRP) identify men at high risk for new cardiovascular disease. This finding may help identify inflammation-related mechanisms and guide patient management.
Area of Science:
- Cardiovascular disease research
- Biomarker analysis
- Inflammation and lipid metabolism
Background:
- Previous research identified high high-density lipoprotein (HDL) cholesterol as a recurrent risk predictor in postinfarction patients with hypercholesterolemia and high C-reactive protein (CRP).
- The current study aimed to identify a similar high-risk subgroup for incident cardiovascular disease.
Purpose of the Study:
- To investigate the existence of a high-risk subgroup for incident cardiovascular disease based on HDL cholesterol and CRP levels.
- To explore the characteristics and risk factors within identified subgroups.
Main Methods:
- Utilized a graphical exploratory data analysis tool for risk subgroup identification in a male cohort (n=3405) from the Prevention of Renal and Vascular End-Stage Disease study.
- Generated 3D risk mappings across HDL-cholesterol/CRP domains, verified with Kaplan-Meier analysis.
- Assessed within-subgroup risk using Cox proportional hazards regression and Kaplan-Meier analysis.
Main Results:
- Identified two high-risk subgroups: low HDL-cholesterol/high CRP and high HDL-cholesterol/high CRP.
- The low HDL-cholesterol subgroup showed metabolic syndrome dyslipidemia; the high HDL-cholesterol subgroup had higher CRP levels and unremarkable biomarkers.
- Within the high HDL-cholesterol subgroup, CRP predicted risk, associated with lower triglycerides and larger HDL particles.
Conclusions:
- A subgroup of men with high HDL-cholesterol and high CRP levels is at high risk for incident cardiovascular disease.
- High HDL cholesterol-associated risk may stem from impaired HDL particle remodeling due to inflammation.
- This approach could reveal inflammation-related mechanisms and inform management strategies for high-risk individuals.
Background:
We recently reported high high-density lipoprotein (HDL) cholesterol as a predictor of recurrent risk in a subgroup of postinfarction patients defined by hypercholesterolemia and high C-reactive protein (CRP) levels. We investigated whether a similar high-risk subgroup might exist for incident cardiovascular disease.
Material And Methods:
A graphical exploratory data analysis tool was used to identify high-risk subgroups in a male population-based cohort (n = 3405) from the prevention of renal and vascular end-stage disease study by generating 3-dimensional mappings of risk over the HDL-cholesterol/CRP domain with subsequent use of Kaplan-Meier analysis to verify high-risk. Within-subgroup risk was assessed using Cox proportional hazards regression and Kaplan-Meier analysis.
Results:
Mappings revealed two high-risk subgroups: a low HDL-cholesterol/high CRP subgroup and a high HDL-cholesterol/high CRP subgroup. The low HDL-cholesterol subgroup demonstrated a pattern of metabolic syndrome dyslipidemia contrasted with a predominantly unremarkable biomarker pattern for the high HDL-cholesterol subgroup. However, in the high HDL-cholesterol subgroup, CRP levels were higher than the low HDL-cholesterol subgroup; and within the high HDL-cholesterol subgroup, CRP predicted risk. Moreover, in the high HDL-cholesterol subgroup, risk was associated with lower triglyceride levels in conjunction with presumptively larger HDL particles.
Conclusions:
High HDL-cholesterol and high CRP levels define a subgroup of men at high-risk for incident cardiovascular disease. High HDL cholesterol-associated risk likely relates to impaired HDL particle remodelling in the setting of inflammation. This approach may facilitate identification of additional inflammation-related mechanisms underlying high HDL cholesterol-associated risk; and potentially influence management of such patients.
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