Key result
High-density lipoprotein (HDL) from children with chronic kidney disease strongly inhibited endothelial nitric oxide production and promoted superoxide production compared to HDL from healthy children.
Why the study?
Does HDL isolated from children with CKD promote endothelial dysfunction compared to HDL from healthy children?
Observational (n=94)
Single-blind
No
Does HDL isolated from children with CKD promote endothelial dysfunction compared to HDL from healthy children?
Effect estimate: 13.2% reduction per 10-ml/min/1.73 m2 eGFR decline
HDL dysfunction begins in early CKD in children, progresses with renal decline, and promotes endothelial dysfunction, which is partially reversed after kidney transplantation.
Associates dysfunctional HDL with endothelial impairment in childhood CKD; extends adult observations yet leaves open therapeutic implications.
Endothelial dysfunction begins in early CKD and contributes to cardiovascular mortality. HDL is considered antiatherogenic, but may have adverse vascular effects in cardiovascular disease, diabetes, and inflammatory conditions. The effect of renal failure on HDL properties is unknown. We studied the endothelial effects of HDL isolated from 82 children with CKD stages 2-5 (HDL(CKD)), who were free of underlying inflammatory diseases, diabetes, or active infections. Compared with HDL from healthy children, HDL(CKD) strongly inhibited nitric oxide production, promoted superoxide production, and increased vascular cell adhesion molecule-1 expression in human aortic endothelial cells, and reduced cholesterol efflux from macrophages. The effects on endothelial cells correlated with CKD grade, with the most profound changes induced by HDL from patients on dialysis, and partial recovery observed with HDL isolated after kidney transplantation. Furthermore, the in vitro effects on endothelial cells associated with increased aortic pulse wave velocity, carotid intima-media thickness, and circulating markers of endothelial dysfunction in patients. Symmetric dimethylarginine levels were increased in serum and fractions of HDL from children with CKD. In a longitudinal follow-up of eight children undergoing kidney transplantation, HDL-induced production of endothelial nitric oxide, superoxide, and vascular cell adhesion molecule-1 in vitro improved significantly at 3 months after transplantation, but did not reach normal levels. These results suggest that in children with CKD without concomitant disease affecting HDL function, HDL dysfunction begins in early CKD, progressing as renal function declines, and is partially reversed after kidney transplantation.
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Shroff et al. (2014) conducted an observational in Chronic Kidney Disease (n=94). Chronic kidney disease vs. Healthy controls was evaluated on Endothelial nitric oxide (NO) production (13.2% reduction per 10-ml/min/1.73 m2 eGFR decline). High-density lipoprotein (HDL) from children with chronic kidney disease strongly inhibited endothelial nitric oxide production and promoted superoxide production compared to HDL from healthy children.
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