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Published on: August 28, 2018
Characteristics of gout patients according to the laterality of nephrolithiasis: A cross-sectional study using
Toru Shimizu1, Hiroshi Hori2, Masanori Umeyama3
1Department of Rheumatology, Midorigaoka Hospital, Takatsuki-shi, Japan.
Insights
Gout patients frequently develop kidney stones, with elevated serum urate linked to greater stone burden and kidney dysfunction. No link was found between gout nephrolithiasis and metabolic syndrome.
Area of Science:
- Nephrology
- Rheumatology
- Radiology
Background:
- Nephrolithiasis is a common complication in patients with gout.
- Computed tomography (CT) is a key imaging modality for diagnosing kidney stones.
Purpose of the Study:
- To characterize the clinical and laboratory features of nephrolithiasis in gout patients using CT.
- To investigate the association between kidney stone laterality, number, and patient characteristics.
Main Methods:
- Unenhanced CT scans were performed on 350 gout patients.
- Kidney stones were defined as calculus density spots >1 mm with CT values >120 HU.
- Serum urate (Sua), renal function, uric acid metabolism, and metabolic syndrome (Mets) prevalence were compared among bilateral, unilateral, and non-stone carriers.
Main Results:
- Kidney stones were detected in 31% of gout patients (108/350), with 59% having no prior urolithiasis history.
- Bilateral stone carriers showed significantly higher serum urate, serum creatinine, and uric acid clearance, and lower estimated glomerular filtration rate compared to non-stone carriers.
- No significant differences in uric acid metabolism or metabolic syndrome prevalence were observed among the groups.
Conclusions:
- Approximately one-third of gout patients have kidney stones, often bilateral and multiple.
- Elevated serum urate may contribute to increased kidney stone burden and more severe renal dysfunction in gout.
- This study did not demonstrate an association between nephrolithiasis and metabolic syndrome in gout patients.
Objective:
To clarify the clinical and laboratory characteristics of nephrolithiasis in gout by computed tomography (CT).
Methods:
In 350 gout patients, unenhanced CT was performed at the 1st visit to hospital. Calculus density spots exceeding 1 mm in diameter with a CT value >120 Hounsfield units in the kidneys were defined as kidney stones. The association between laterality and the number of stones was investigated in each stone carrier. The 350 patients were classified into three groups (bilateral, unilateral and non-stone carriers). Then serum urate (Sua), renal function, uric acid metabolism, and the prevalence of metabolic syndrome (Mets) were compared among these groups by the Tukey-Kramer test or Fisher's exact test.
Results:
Kidney stone(s) were detected in 108 (31%) of the 350 patients (bilateral in 58 and unilateral in 50). In 64 of the 108 patients (59%), there was no history of urolithiasis. Sua, serum creatinine and uric acid clearance were significantly higher (P = 0.001, P < 0.001, P = 0.043, respectively), while the estimated glomerular filtration rate was significantly lower (P = 0.039) in bilateral stone carriers than in non-stone carriers. No significant differences of uric acid metabolism or the prevalence of Mets were noted among the three groups.
Conclusions:
Approximately one-third of gout patients had kidney stones and more than half of the patients with stones were bilateral and multiple stone carriers. Elevation of Sua might increase the stone burden in gout, leading to more severe renal dysfunction. An association between nephrolithiasis and Mets was not demonstrated in gout patients.
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