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5/6th Nephrectomy in Combination with High Salt Diet and Nitric Oxide Synthase Inhibition to Induce Chronic Kidney Disease in the Lewis Rat
Published on: July 3, 2013
Association of endothelial dysfunction with sulfur amino acid metabolism in chronic renal failure
1Department of Kidney and Dialysis, Hyogo College of Medicine, Nishinomiya, Japan. y-tkmt@hyo-med.ac.jp
Insights
Dialysis patients show impaired blood vessel function due to high homocysteine levels, a key factor in cardiovascular disease. Folic acid treatment did not improve this endothelial dysfunction in chronic kidney disease.
Area of Science:
- Nephrology
- Cardiovascular Medicine
- Vascular Biology
Background:
- Dialysis patients exhibit high rates of cardiovascular disease and stroke.
- Traditional risk factors inadequately predict cardiovascular events in uremia.
- Moderate hyperhomocysteinemia and endothelial dysfunction are common in uremic patients.
Purpose of the Study:
- To investigate the mechanisms linking hyperhomocysteinemia and endothelial dysfunction in chronic renal failure.
- To evaluate endothelial and smooth muscle function in dialysis patients.
- To assess the impact of folic acid on homocysteine levels and endothelial function.
Main Methods:
- Vascular function assessed via response to reactive hyperemia and nitric oxide (NO) donor.
- Measured baseline vessel diameter, reactive hyperemia, and NO-mediated vasodilation.
- Evaluated effects of folic acid treatment on plasma homocysteine and endothelial function.
Main Results:
- Dialysis patients demonstrated impaired endothelium-dependent and endothelium-independent vasodilation.
- Evidence suggests defective NO-mediated function in both endothelium and smooth muscle.
- Folic acid reduced homocysteine but failed to improve endothelial dysfunction.
Conclusions:
- Chronic renal failure is associated with impaired NO-mediated vascular function.
- Hyperhomocysteinemia may contribute to endothelial dysfunction through mechanisms involving NO bioavailability.
- Further research into early homocysteine reduction in renal failure is warranted.
Abstract:
Moderate hyperhomocysteinemia and endothelial dysfunction are consistent findings in uremic patients. Although an exceedingly high incidence of cardiovascular disease and stroke has been shown in dialysis patients, several traditional risk factors are relatively limited predictors. Hyperhomocysteinemia could be a principal candidate for endothelial dysfunction. Recent findings suggest that hyperhomocysteinemia may impair endothelial function by the generation of oxygen species and decreased nitric oxide (NO) bioavailability. However, the precise mechanisms underlying the link between hyperhomocysteinemia and impaired endothelial function in chronic renal failure remain unclear. Endothelial function was evaluated by the response to reactive hyperemia and donor of NO. We observed impairment in both endothelium-dependent and endothelium-independent vasodilation in dialysis patients. These data suggest that patients with chronic renal failure may have defective NO-mediated function in the endothelium and smooth muscle of vessels. Most reports have shown only impairment of endothelium-dependent vasodilation, whereas another report observed impaired smooth muscle function and intact endothelial function. Only a few previous observations included a full set of vascular function data, such as baseline vessel diameter, reactive hyperemia, and responses of endothelium to hyperemia and NO donor, although all these observations could be essential for comparison with other reports. Treatment with folic acid was reported to reduce plasma homocysteine levels, but not to normal levels, and failed to improve impaired endothelial function in patients in a predialysis phase and on maintenance dialysis therapy. Another investigation, directed at reducing homocysteine levels in earlier stages of renal failure, may be necessary to clarify the link between hyperhomocysteinemia and endothelial function.
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