Yoshiaki Ogiyama, Toshiyuki Miura, Shuichi Watanabe, Daisuke Fuwa, Tatsuya Tomonari, Keisuke Ota, Yoko Kato, Tadashi Ichikawa, Yuichi Shirasawa, Akinori Ito, Atsuhiro Yoshida, Michio Fukuda, Genjiro Kimura
Journal: Journal of the renin-angiotensin-aldosterone system : JRAAS 2015;15(4):509-14
PMID: 23390190
INTRODUCTION
We have reported that the circadian rhythm of urinary potassium excretion (U(K)V) is determined by the rhythm of urinary sodium excretion (U(Na)V) in patients with chronic kidney disease (CKD). We also reported that treatment with an angiotensin receptor blocker (ARB) increased the U(Na)V during the daytime, and restored the non-dipper blood pressure (BP) rhythm into a dipper pattern. However, the circadian rhythm of U(K)V during ARB treatment has not been reported.
MATERIALS AND METHODS
Circadian rhythms of U(Na)V and U(K)V were examined in 44 patients with CKD undergoing treatment with ARB.
RESULTS
Whole-day U(Na)V was not altered by ARB whereas whole-day U(K)V decreased. Even during the ARB treatment, the significant relationship persisted between the night/day ratios of U(Na)V and U(K)V (r=0.56, p<0.0001). Whole-day U(K)V/U(Na)V ratio (p=0.0007) and trans-tubular potassium concentration gradient (p=0.002) were attenuated but their night/day ratios remained unchanged. The change in the night/day U(K)V ratio correlated directly with the change in night/day U(Na)V ratio (F=20.4) rather than with the changes in aldosterone, BP or creatinine clearance.
CONCLUSIONS
The circadian rhythm of U(K)V was determined by the rhythm of UNaV even during ARB treatment. Changes in the circadian U(K)V rhythm were not determined by aldosterone but by U(Na)V.
© The Author(s) 2013.
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