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Allopurinol Lowers Serum Urate but Does Not Reduce Oxidative Stress in CKD
Mingyao Sun1, Nicole Hines1, Diego Scerbo2
1Department of Internal Medicine, Division of Nephrology, Carver College of Medicine, University of Iowa, Iowa City, IA 52242, USA.
Insights
Allopurinol did not reduce serum xanthine oxidase (XO) activity in chronic kidney disease (CKD) patients. Circulating XO and its expression were not linked to vascular disease or oxidative stress in this population.
Area of Science:
- Biochemistry
- Nephrology
- Cardiovascular Medicine
Background:
- Xanthine oxidase (XO) contributes to oxidative stress and vascular disease.
- Hyperuricemia and gout are prevalent in chronic kidney disease (CKD) patients, increasing their vascular disease risk.
Purpose of the Study:
- To evaluate the effects of allopurinol on serum XO activity and the metabolome in CKD patients.
- To determine if serum XO activity or expression is associated with vascular dysfunction or oxidative stress markers in CKD.
Main Methods:
- Randomized double-blind clinical trial data analysis.
- Measurement of serum XO activity.
- Immunofluorescence for XO expression in endothelial cells.
- Gas chromatography-mass spectrometry (GC/MS) for metabolomics.
Main Results:
- Allopurinol lowered serum urate but increased serum xanthine levels, without significantly suppressing measured serum XO activity.
- Baseline serum XO activity was low and not associated with vascular dysfunction or oxidative stress biomarkers.
- Allopurinol impacted pentose phosphate, pyrimidine, and tyrosine metabolism.
Conclusions:
- Circulating xanthine oxidase does not appear to contribute to vascular disease in CKD patients.
- Allopurinol's effects extend beyond XO inhibition, impacting other metabolic pathways requiring further investigation.
Abstract:
Xanthine oxidase (XO) contributes to oxidative stress and vascular disease. Hyperuricemia and gout are common in patients with chronic kidney disease (CKD), a population at increased risk of vascular disease. We evaluated effects of allopurinol on serum XO activity and metabolome of CKD patients who had participated in a randomized double-blind clinical trial of allopurinol vs. placebo. XO activity was measured in participants' serum. XO expression in venous endothelial cells was evaluated via immunofluorescence. Gas chromatography mass spectrometry (GC/MS) was utilized for metabolomics analysis. We found that in patients with stage 3 CKD and hyperuricemia, allopurinol lowered serum urate while increasing serum xanthine levels. Allopurinol, however, did not significantly suppress measured serum XO activity. Of note, baseline serum XO activity was low. Additionally, neither baseline serum XO activity nor XO protein expression were associated with measures of vascular dysfunction or with systemic or endothelial biomarkers of oxidative stress. Allopurinol affected several pathways, including pentose phosphate, pyrimidine, and tyrosine metabolism. Our findings suggest that circulating XO does not contribute to vascular disease in CKD patients. In addition to inhibition of XO activity, allopurinol was observed to impact other pathways; the implications of which require further study.
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