Diuretics shift circadian rhythm of blood pressure from nondipper to dipper in essential hypertension.
نویسندگان
چکیده
BACKGROUND Recently, we found that sodium restriction shifted the circadian rhythm of blood pressure from nondipper to dipper in patients with the sodium-sensitive essential hypertension. This study examined whether diuretics can transform the circadian rhythm of blood pressure from nondipper to dipper. METHODS AND RESULTS We studied 21 patients with essential hypertension during both a baseline period and a period of treatment with hydrochlorothiazide (25 mg daily). The periods lasted 4 weeks each. Twenty-four hour ambulatory blood pressures were measured on the same day of the week at the end of the each period. In nondippers (n=11), but not in dippers (n=10), a significant interaction existed between diuretic therapy and nocturnal fall in systolic and diastolic blood pressure, which indicated that the degree of nocturnal blood pressure fall was affected by diuretic therapy. Nocturnal fall, which was diminished in nondippers, was restored by diuretic therapy with hydrochlorothiazide, indicating that the circadian rhythm of blood pressure shifted from nondipper to dipper patterns. CONCLUSIONS The present study demonstrated that diuretics can restore nocturnal blood pressure decline in a manner similar to sodium restriction, which suggests that the kidneys and sodium metabolism may play important roles in the genesis of the circadian rhythm of blood pressure. Diuretic-based treatment may have an additional therapeutic advantage of reducing the risk for cardiovascular complications by transforming the circadian rhythm of blood pressure.
منابع مشابه
CALL FOR PAPERS Renal Hemodynamics Angiotensin receptor blockers shift the circadian rhythm of blood pressure by suppressing tubular sodium reabsorption
Fukuda M, Wakamatsu-Yamanaka T, Mizuno M, Miura T, Tomonari T, Kato Y, Ichikawa T, Miyagi S, Shirasawa Y, Ito A, Yoshida A, Kimura G. Angiotensin receptor blockers shift the circadian rhythm of blood pressure by suppressing tubular sodium reabsorption. Am J Physiol Renal Physiol 301: F953–F957, 2011. First published August 24, 2011; doi:10.1152/ajprenal.00167.2011.— Recently, we found that an a...
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Background: Blood pressure decreases during sleep and is markedly increased in the morning in healthy individuals. Lack of nocturnal blood pressure fall (non-dipping) has been associated with cardiovascular morbidity, mortality and other organ damage. However, their importance in chronic renal failure is unclear. This study aimed to investigate relationship between circadian rhythm of blood pre...
متن کاملAngiotensin receptor blockers shift the circadian rhythm of blood pressure by suppressing tubular sodium reabsorption.
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عنوان ژورنال:
- Circulation
دوره 100 15 شماره
صفحات -
تاریخ انتشار 1999