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Updated: Apr 15, 2026

Assessment of Vascular Function in Patients With Chronic Kidney Disease
Published on: June 16, 2014
CD14++CD16+ monocytes and cardiovascular outcome in patients with chronic kidney disease
Kyrill S Rogacev1, Sarah Seiler, Adam M Zawada
1Department of Internal Medicine IV, Saarland University Hospital, Homburg/Saar, Germany.
Insights
Elevated CD14(++)CD16(+) monocytes, a type of inflammatory cell, are independently linked to cardiovascular events in chronic kidney disease patients, highlighting their role in atherosclerosis.
Area of Science:
- Immunology
- Nephrology
- Cardiology
Background:
- Chronic kidney disease (CKD) accelerates atherosclerosis and increases cardiovascular (CV) risk.
- Monocytes, particularly CD16(+) subsets, are key drivers of atherogenesis.
- The prognostic significance of elevated CD16(+) monocyte counts in CKD remains unclear.
Purpose of the Study:
- To investigate the prognostic impact of CD14(++)CD16(+) monocyte counts on CV events in non-dialysis CKD patients.
- To explore the expression of chemokine receptors on different monocyte subsets in CKD.
Main Methods:
- Flow cytometry was used to analyze monocyte heterogeneity in 119 non-dialysis CKD patients.
- Patients were prospectively followed for a median of 4.9 years for CV events.
- Chemokine receptor expression on monocyte subsets was assessed.
Main Results:
- CD14(++)CD16(+) monocytes were independently associated with an increased risk of CV events (HR 1.26; P = 0.018).
- This association persisted after adjusting for relevant baseline variables.
- CD14(++)CD16(+) monocytes selectively expressed the chemokine receptor CCR5.
Conclusions:
- Elevated CD14(++)CD16(+) monocyte counts are an independent predictor of CV events in non-dialysis CKD.
- These findings support the role of CD16(+) monocytes in human atherosclerosis.
- Targeting CD16(+) monocytes may offer a therapeutic strategy for reducing CV risk in CKD.
Aims:
Patients with chronic kidney disease (CKD) pose a worldwide growing burden to health care systems due to accelerated atherosclerosis and subsequent high cardiovascular (CV) morbidity. Atherogenesis is prominently driven by monocytes and monocyte-derived macrophages. The expression of CD14 and CD16 characterizes three monocyte subsets: CD14(++)CD16(-), CD14(++)CD16(+), and CD14((+))CD16(+) cells; the latter two are often denoted as 'proinflammatory' CD16(+) monocytes. Despite an association between CD16(+) monocyte counts and higher CV risk in cross-sectional cohorts, the prognostic impact of elevated CD16(+) monocyte counts is poorly understood.
Methods And Results:
We assessed monocyte heterogeneity using flow cytometry in 119 patients with non-dialysis CKD, who were prospectively followed for a median of 4.9 (inter-quartile range 4.8-5.0) years for the occurrence of CV events. In addition, we assessed expression of chemokine receptors on monocyte subsets. CD14(++)CD16(+) monocyte were independently associated with CV events [hazard ratio (for an increase of 10 cells/μL) 1.26 (confidence interval: 1.04-1.52; P = 0.018)] after adjustment for variables that significantly affected CD14(++)CD16(+) cell counts at baseline. Across the spectrum of CKD, CD14(++)CD16(+) monocytes selectively expressed CCR5.
Conclusion:
We found that CD14(++)CD16(+) monocytes were independently associated with CV events in non-dialysis CKD patients. Our results support the notion that CD16(+) monocytes rather than CD16(-) monocytes are involved in human atherosclerosis.
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