Hypothalamic melanocortin receptors and chronic regulation of arterial pressure and renal function

被引:89
作者
Kuo, JJ [1 ]
Silva, AA [1 ]
Hall, JE [1 ]
机构
[1] Univ Mississippi, Med Ctr, Dept Physiol & Biophys, Ctr Excellence Cardiovasc Renal Res, Jackson, MS 39216 USA
关键词
hypertension; receptors; melanocortin; blood pressure; heart rate; experimental; obesity; insulin;
D O I
10.1161/01.HYP.0000048194.97428.1A
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
This study examined control of cardiovascular and renal function during chronic melanocortin-3/4 receptor (MC3/4-R) activation or inhibition. Arterial and venous catheters were implanted in Sprague-Dawley rats for measurements of mean arterial pressure (MAP) and heart rate (HR) 24 h/d and for intravenous infusions, and the lateral ventricle was cannulated for chronic intracerebroventricular (ICV) infusions. In experiment 1, after a 5-day control period, rats were administered the MC3/4-R agonist MTII (n=7, 10 ng/h ICV) or 0.9% saline (n=6, ICV) for 14 days, followed by a 5-day recovery period. In experiment 2, after a 5-day control period, rats were administered the MC3/4-R antagonist SHU-9119 (n=7, 1 nmol/h ICV) or 0.9% saline vehicle (n=7, ICV), or pair-fed during SHU-9119 infusion (n=5, 1 nmol/h ICV) for 12 days, followed by a 5-day recovery period. MC4-R activation transiently decreased food intake from 23+/-1 to 10+/-2 g/d. Despite the hypophagia, MC3/4-R activation increased MAP by 7+/-1 mm Hg. MC3/4-R inhibition for 12 days increased food intake from 21+/-1 to 35+/-4 g/d, decreased HR by 53+/-11 bpm, and caused no change in MAP despite the marked weight gain. In rats that were pair-fed to prevent increased food intake, MC3/4-R inhibition further decreased HR (-87+/-9 bpm), whereas MAP was unchanged. Thus, chronic hypothalamic MC3/4-R activation raises arterial pressure despite decreased food intake, whereas MC3/4-R inhibition causes marked weight gain without raising arterial pressure. These observations are consistent with the hypothesis that an intact hypothalamic MC3/4-R may be necessary for excess weight gain to raise arterial pressure.
引用
收藏
页码:768 / 774
页数:7
相关论文
共 24 条
  • [1] Hypothalamic, metabolic, and behavioral responses to pharmacological inhibition of CNS melanocortin signaling in rats[J]. Adage, T;Scheurink, AJW;de Boer, SF;de Vries, K;Konsman, JP;Kuipers, F;Adan, RAH;Baskin, DG;Schwartz, MW;van Dijk, G. JOURNAL OF NEUROSCIENCE, 2001(10)
  • [2] Chronic cardiovascular and renal actions of leptin - Role of adrenergic activity[J]. Carlyle, M;Jones, OB;Kuo, JJ;Hall, JE. HYPERTENSION, 2002(02)
  • [3] Hemodynamic consequences of neuropeptide Y-induced obesity[J]. Correia, MLG;Morgan, DA;Sivitz, WI;Mark, AL;Haynes, WG. AMERICAN JOURNAL OF HYPERTENSION, 2002(02)
  • [4] Leptin-induced increase in sympathetic nervous and cardiovascular tone is mediated by proopiomelanocortin (POMC) products[J]. Dunbar, JC;Lu, HQ. BRAIN RESEARCH BULLETIN, 1999(03)
  • [5] Fan T, 2000, ENDOCRINOLOGY, V141, P3072
  • [6] Role of melanocortinergic neurons in feeding and the agouti obesity syndrome[J]. Fan, W;Boston, BA;Kesterson, RA;Hruby, VJ;Cone, RD. NATURE, 1997(6612)
  • [7] Hagan MM, 1999, J NEUROSCI, V19, P2362
  • [8] Obesity hypertension: Role of leptin and sympathetic nervous system[J]. Hall, JE;Hildebrandt, DA;Kuo, J. AMERICAN JOURNAL OF HYPERTENSION, 2001(06)
  • [9] Interactions between the melanocortin system and leptin in control of sympathetic nerve traffic[J]. Haynes, WG;Morgan, DA;Djalali, A;Sivitz, WI;Mark, AL. HYPERTENSION, 1999(01)
  • [10] Targeted disruption of the melanocortin-4 receptor results in obesity in mice[J]. Huszar, D;Lynch, CA;FairchildHuntress, V;Dunmore, JH;Fang, Q;Berkemeier, LR;Gu, W;Kesterson, RA;Boston, BA;Cone, RD;Smith, FJ;Campfield, LA;Burn, P;Lee, F. CELL, 1997(01)