Literature DB >> 14654758

Resistance to salt-induced hypertension in catechol-O-methyltransferase-gene-disrupted mice.

Teemu Helkamaa1, Pekka T Männistö, Pekka Rauhala, Zhong Jian Cheng, Piet Finckenberg, Marko Huotari, Joseph A Gogos, Maria Karayiorgou, Eero M Mervaala.   

Abstract

BACKGROUND: Previous studies have indicated that catechol-O-methyltransferase (COMT) can modulate renal dopaminergic tone.
OBJECTIVE: To test the hypothesis that COMT blockade protects from salt-induced hypertension.
METHODS: COMT gene-disrupted (-/-) mice and wild-type controls received a high-sodium diet (NaCl 6%) for 3 weeks. Blood pressure and heart rate were recorded by radiotelemetry. Tissue and urine samples were assessed by light microscopy and high-performance liquid chromatography. The effects of nitecapone treatment were also examined. Systolic blood pressure and heart rate during normal sodium diet were similar in COMT (-/-) and wild-type mice. The high-sodium diet increased night-time systolic and diastolic blood pressures in wild-type mice, whereas blood pressure in COMT (-/-) mice remained unaltered. In wild-type mice, the sodium-induced increase in blood pressure was completely normalized by treatment with the COMT inhibitor, nitecapone. At baseline, 24-h urinary excretion of levodopa (L-DOPA), dopamine and noradrenaline was increased by 145, 85 and 74%, respectively, in COMT (-/-) mice compared with wild-type controls. In COMT (-/-) and wild-type mice, a high-sodium diet increased urinary L-DOPA excretion by 405 and 660% (reflected as 102 and 212% increases in dopamine excretion), respectively. The absolute amounts of urinary L-DOPA and dopamine remained 60 and 20% greater in COMT (-/-) mice. The high-sodium diet did not influence renal cortical COMT activity.
CONCLUSION: Our findings suggest that COMT deficiency in mice increases the availability of L-DOPA, leading to enhanced dopaminergic tone, which may be associated with resistance to salt-induced hypertension. The findings of the present study also underline the importance of COMT in the regulation of blood pressure, sodium excretion and renal dopaminergic tone.

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Year:  2003        PMID: 14654758     DOI: 10.1097/00004872-200312000-00026

Source DB:  PubMed          Journal:  J Hypertens        ISSN: 0263-6352            Impact factor:   4.844


  16 in total

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Review 3.  Circadian clocks and vascular function.

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7.  Decreased catecholamine degradation associates with shock and kidney injury after cardiac surgery.

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8.  Physiologic and pathophysiologic roles of cyclooxygenase-2 in the kidney.

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9.  Intrarenal dopaminergic system regulates renin expression.

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Journal:  Hypertension       Date:  2009-01-12       Impact factor: 10.190

10.  Circadian variation of blood pressure and the vascular response to asynchronous stress.

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