FRI0318 Serum URIC Acid as an Independent Risk Factor on Progression of Chronic Kidney Disease in Gout Patients with URIC Acid Lowering Agent

2015 ◽  
Vol 74 (Suppl 2) ◽  
pp. 539.2-539
Author(s):  
E.-J. Park ◽  
E.Y. Hee ◽  
S. Lee ◽  
J. Hwang ◽  
E.-J. Kwon ◽  
...  
PLoS ONE ◽  
2021 ◽  
Vol 16 (1) ◽  
pp. e0244106
Author(s):  
Young-Bin Son ◽  
Ji Hyun Yang ◽  
Myung-Gyu Kim ◽  
Sang Kyung Jo ◽  
Won Yong Cho ◽  
...  

Introduction The independent role of serum uric acid (SUA) on kidney disease is controversial due to its association with metabolic syndrome. The objective of this study was to investigate the association of baseline SUA with development of chronic kidney disease and eGFR decline in normotensive, normoglycemic and non-obese individuals during follow up period. Materials and methods We included non-hypertensitive, non-diabetic, and non-obese 13,133 adults with estimated glomerular filtration rate (eGFR) ≥ 60ml/min/1.73m2 who had a voluntary health check-up during 2004–2017. Results SUA was positively related to adjusted means of systolic blood pressure (SBP), triglyceride, body mass index, and body fat percent. SUA was inversely associated with high density lipoprotein HDL (P for trend ≤0.001). SUA was an independent risk factor for the development of diabetes, hypertension, and obesity. During 45.0 [24.0–76.0] months of median follow up, the highest quartiles of SUA showed significant risks of 30% eGFR decline compared than the lowest quartile (RR:3.701; 95% CI: 1.504–9.108). The highest quartile had a 2.2 fold (95% CI: 1.182–4.177) increase in risk for incident chronic kidney disease (CKD). Conclusions SUA is an independent risk factor for the development of diabetes, hypertension, and obesity in the healthy population. High SUA is associated with increased risk of CKD development and eGFR decline in participants with intact renal function.


2020 ◽  
Vol 27 (30) ◽  
pp. 5056-5066 ◽  
Author(s):  
Pan Jing ◽  
Min Shi ◽  
Liang Ma ◽  
Ping Fu

Hyperuricemia, defined as the presence of elevated serum uric acid (sUA), could lead to urate deposit in joints, tendons, kidney and other tissues. Hyperuricemia as an independent risk factor was common in patients during the causation and progression of kidney disease. Uric acid is a soluble final product of endogenous and dietary purine metabolism, which is freely filtered in kidney glomeruli where approximately 90% of filtered uric acid is reabsorbed. Considerable studies have demonstrated that soluble uric acid was involved in the pathophysiology of renal arteriolopathy, tubule injury, tubulointerstitial fibrosis, as well as glomerular hypertrophy and glomerulosclerosis. In the review, we summarized the mechanistic insights of soluble uric acid related renal diseases.


2016 ◽  
Vol 80 (8) ◽  
pp. 1857-1862 ◽  
Author(s):  
Keita Takae ◽  
Masaharu Nagata ◽  
Jun Hata ◽  
Naoko Mukai ◽  
Yoichiro Hirakawa ◽  
...  

2013 ◽  
Vol 37 (3) ◽  
pp. 246-252 ◽  
Author(s):  
Ryota Yoshitomi ◽  
Akiko Fukui ◽  
Masaru Nakayama ◽  
Yoriko Ura ◽  
Hirofumi Ikeda ◽  
...  

2021 ◽  
Vol 36 (Supplement_1) ◽  
Author(s):  
Shingo Nakayama ◽  
Michihiro Satoh ◽  
Takahisa Murakami ◽  
Yukako Tatsumi ◽  
Tomoko Muroya ◽  
...  

Abstract Background and Aims While previous studies have reported the association between serum uric acid (SUA) and chronic kidney disease (CKD) incidence, the sex differences in this association remain controversial. Therefore, we examined the association between SUA levels and CKD incidence in middle-aged adults stratified by sex using data from a large-scale health check-up. Method We analyzed information from the JMDC database, which included the annual health check-up data of Japanese employees and their dependents aged <75 years. Among those individuals, we analyzed data from 138,511 individuals without CKD, kidney disease, or a history of cardiovascular disease at baseline. CKD was defined as an estimated glomerular filtration rate (eGFR) <60 mL/min/1.73 m2 and/or proteinuria. We divided the participants into 9 and 7 groups according to SUA levels for men and women, respectively. A Cox model was applied to assess the adjusted hazard ratios (HRs) for CKD incidence in each SUA level group using an SUA concentration of 4.0–4.9 mg/dL as the reference after adjusting for age, body mass index, current or ex-smoker, current or ex-drinker, diabetes mellitus, dyslipidemia, systolic blood pressure, use of anti-hyperuricemic drugs, and baseline eGFR. Results The mean participant age was 44.1 years, and 29.6% were women. The mean SUA levels were 5.9 mg/dL and 4.1 mg/dL in men and women, respectively. During the mean follow-up period of 4.68 years, 12,589 participants developed CKD. The age-standardized incidence rates for CKD were 17.88/17.80 per 1000 person-years in men/women with SUA concentrations of 4.0–4.9 mg/dL, 209.76 per 1000 person-years in men with SUA ≥11.0 mg/dL, and 73.38 per 1000 person-years in women with SUA ≥ 9.0 mg/dL. The fully adjusted HRs (95% confidence interval [CI], P value) for CKD incidence in the groups with SUA concentrations of <4.0, 10.0–10.9, and ≥11.0 mg/dL compared with those with SUA of 4.0–4.9 mg/dL among men were 1.13 (1.01–1.26, P=0.030), 1.98 (1.32–2.97, P=0.0010), and 3.74 (1.68–8.35, P=0.0013), respectively. In women, the fully adjusted HRs for CKD incidence in the groups with SUA concentrations of <4.0, 8.0–8.9, and ≥9.0 mg/dL were 1.08 (1.01–1.16, P=0.032), 2.39 (1.07–5.35, P=0.034), and 3.20 (0.80–12.8, P=0.10), respectively. Similar results were observed when we performed the sensitivity analysis excluding 8,411 individuals with hypertensive treatment from the main analysis. The HRs for the outcomes caused by the onset of eGFR <60 mL/min/1.73 m2 or proteinuria separately were similar to those for the main results. Conclusion The results of the present study demonstrated an increased risk of CKD in men with SUA concentrations of <4.0 and ≥10.0 mg/dL and <4.0 and ≥8.0 mg/dL in women compared to those with SUA concentrations of 4.0–4.9 mg/dL after adjusting for various covariates. Both high and low SUA levels were risk factors for CKD in middle-aged men and women. Hyperuricemia was demonstrated to cause renal injury due to the intraluminal deposition of uric acid crystals in the renal collecting duct. Hyperuricemia may also induce endothelial dysfunction, activation of the renin-angiotensin system, and induction of inflammation and stimulation of vascular smooth muscle cell proliferation by the induction of cyclooxygenase-2. However, as uric acid is one of the most important antioxidants in human plasma, low SUA levels may increase the risk of CKD incidence through decreased antioxidant activity. These mechanisms are implicated in the pathogenesis of CKD caused by high and low SUA levels. In addition, the SUA levels and ranges associated with increased risks of CKD incidence differed by sex.


Hypertension ◽  
2017 ◽  
Vol 70 (suppl_1) ◽  
Author(s):  
Masanari Kuwabara ◽  
Shigeko Hara ◽  
Koichiro Niwa ◽  
Minoru Ohno ◽  
Ichiro Hisatome

Objectives: Prehypertension frequently progresses to hypertension and is associated with cardiovascular diseases, stroke, excess morbidity and mortality. However, the identical risk factors for developing hypertension from prehypertension are not clarified. This study is conducted to clarify the risks. Methods: We conducted a retrospective 5-year cohort study using the data from 3,584 prehypertensive Japanese adults (52.1±11.0 years, 2,081 men) in 2004 and reevaluated it 5 years later. We calculated the cumulative incidences of hypertension over 5 years, then, we detected the risk factors and calculated odds ratios (ORs) for developing hypertension by crude analysis and after adjustments for age, sex, body mass index, smoking and drinking habits, baseline systolic and diastolic blood pressure, pulse rate, diabetes mellitus, dyslipidemia, chronic kidney disease, and serum uric acid. We also evaluated whether serum uric acid (hyperuricemia) provided an independent risk for developing hypertension. Results: The cumulative incidence of hypertension from prehypertension over 5 years was 25.3%, but there were no significant differences between women and men (24.4% vs 26.0%, p=0.28). The cumulative incidence of hypertension in subjects with hyperuricemia (n=726) was significantly higher than those without hyperuricemia (n=2,858) (30.7% vs 24.0%, p<0.001). After multivariable adjustments, the risk factors for developing hypertension from prehypertension were age (OR per 1 year increased: 1.023; 95% CI, 1.015-1.032), women (OR versus men: 1.595; 95% CI, 1.269-2.005), higher body mass index (OR per 1 kg/m 2 increased: 1.051; 95% CI 1.021-1.081), higher baseline systolic blood pressure (OR per 1 mmHg increased: 1.072; 95% CI, 1.055-1.089) and diastolic blood pressure (OR per 1 mmHg increased: 1.085; 95% CI, 1.065-1.106), and higher serum uric acid (OR pre 1 mg/dL increased: 1.149; 95% CI, 1.066-1.238), but not smoking and drinking habits, diabetes mellitus, dyslipidemia, and chronic kidney diseases. Conclusions: Increased serum uric acid is an independent risk factor for developing hypertension from prehypertension. Intervention studies are needed to clarify whether the treatments for hyperuricemia in prehypertensive subjects are useful.


2010 ◽  
Vol 25 (11) ◽  
pp. 3593-3599 ◽  
Author(s):  
L. Cain ◽  
A. Shankar ◽  
A. M. Ducatman ◽  
K. Steenland

2012 ◽  
Vol 35 (11) ◽  
pp. 1087-1092 ◽  
Author(s):  
Tatsuo Kawai ◽  
Mitsuru Ohishi ◽  
Yasushi Takeya ◽  
Miyuki Onishi ◽  
Norihisa Ito ◽  
...  

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