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1.
Arq. bras. cardiol ; 99(1): 642-648, jul. 2012. ilus, tab
Article in Portuguese | LILACS | ID: lil-647735

ABSTRACT

FUNDAMENTO: A descoberta da leptina como um estimulador da atividade simpática trouxe uma nova perspectiva para os mecanismos fisiopatológicos da obesidade-hipertensão. OBJETIVO: Avaliamos a relação entre a atividade simpática aumentada e as concentrações plasmáticas de leptina e aldosterona em Hipertensos Resistentes (HR), comparando os grupos com e sem Diabetes Tipo 2 (DT2). MÉTODOS: Vinte e cinco pacientes HR foram avaliados por eletrocardiografia ambulatorial para análise da Variabilidade da Frequência Cardíaca (VFC) nos domínios do tempo e frequência, os quais foram estratificados em dois períodos: 24 horas e período Diurno (D), compreendendo as medidas entre 14 e 18h (domínio do tempo) e uma hora às 15h (domínio da frequência). RESULTADOS: O grupo DT2 (n = 10) apresentou maiores concentrações de aldosterona e leptina que o grupo não DT2 (n = 15) (26,0 ± 11,5 vs. 16,9 ± 7,0 ng/dL - p = 0,021; 81,368.7 ± 47,086.1 vs. 41,228.1 ± 24,523.1 pg/mL - p = 0,048, respectivamente). Houve correlação entre aldosterona e VFC no domínio da frequência em ambos os grupos. Não-DT2 apresentaram a aldosterona correlacionada com D baixa frequência em unidades normalizadas (BFnu) (r = 0,6 [0,12 - 0,85] p = 0,018) e D alta frequência em unidades normalizadas (AFnu) (r = -0,6 [-0,85 - -0,12] p = 0,018). No grupo com diabetes, a aldosterona correlacionou-se com DBFnu (r = 0,72 [0,16 - 0,93] p = 0,019) e DAFnu (r = -0,72 [-0,93 - -0,16] p = 0,019). Apesar da importância da leptina na atividade simpática aumentada na hipertensão, não houve correlação com VFC. CONCLUSÃO: A aldosterona parece estimular a atividade simpática em HR com ou sem DT2. Essa informação combinada com a eficácia clínica dos bloqueadores de receptor mineralocorticoide em HR pode reforçar a aldosterona como alvo terapêutico relevantes em HR. (Arq Bras Cardiol. 2012; [online].ahead print, PP.0-0).


BACKGROUND: The finding of adipocyte-derived hormone leptin as an overstimulator of sympathetic activity brought a new perspective to the pathophysiological mechanisms of obesity-hypertension. OBJECTIVES: As aldosterone also increases sympathetic activity, we aimed to assess the relationship between sympathetic overactivity and plasma leptin and aldosterone levels in resistant hypertension (RHTN), comparing the groups with and without T2D. METHODS: Twenty-five RHTN patients underwent ambulatory electrocardiography to analyze heart rate variability (HRV) in time and frequency domains, which were stratified into two periods: 24 hours and daytime (DT), comprising the records between 2:00 p.m to 6:00 p.m (time domain) and one hour at 3:00 p.m (frequency domain). RESULTS: T2D group (n=10) had higher serum aldosterone and plasma leptin levels than the non-T2D (n=15) (26.0±11.5 vs. 16.9±7.0 ng/dL - p=0.021; 81.368.7±47.086.1 vs 41.228.1±24.523.1 pg/mL - p=0.048, respectively). Both groups had aldosterone correlated with HRV in frequency domain. Non-T2D had aldosterone correlated with DT low frequency in normalized units (LF nu) (r=0.6 [0.12-0.85] p=0.018) and DT high frequency in normalized units (HF nu) (r=-0.6 [-0.85- -0.12] p=0.018). Type-2-diabetes group had aldosterone correlated with DT LF nu (r=0.72 [0.16-0.93] p=0.019) and DT HF nu (r=-0.72 [-0.93- -0.16] p=0.019). However, despite of the importance of leptin in sympathetic overactivity in hypertension, leptin did not correlate with HRV. CONCLUSION: Aldosterone seems to overdrive sympathetic activity in RHTN with and without T2D. This information combined with the clinical efficacy of mineralocorticoid receptor blocker in RHTN may reinforce that aldosterone is a major player to be a therapeutic target in RHTN. (Arq Bras Cardiol. 2012; [online].ahead print, PP.0-0).


Subject(s)
Adult , Female , Humans , Male , Middle Aged , Aldosterone/blood , Antihypertensive Agents/therapeutic use , /physiopathology , Hypertension/physiopathology , Leptin/blood , Sympathetic Nervous System/physiopathology , Aldosterone/physiology , Blood Pressure Monitoring, Ambulatory , Blood Pressure/physiology , Drug Resistance , /blood , Heart Rate/physiology , Hypertension/blood , Hypertension/drug therapy , Leptin/physiology , Statistics, Nonparametric
2.
Clinics ; 66(7): 1253-1258, 2011. ilus, tab
Article in English | LILACS | ID: lil-596917

ABSTRACT

OBJECTIVES: We investigated the influence of sildenafil on cardiac contractility and diastolic relaxation and examined the distribution of phosphodiesterase-5 in the hearts of hypertensive rats that were treated with by NG-nitro-L-arginine methyl ester (L-NAME). METHODS: Male Wistar rats were treated with L-NAME and/or sildenafil for eight weeks. The Langendorff method was used to examine the effects of sildenafil on cardiac contractility and diastolic relaxation. The presence and location of phosphodiesterase-5 and phosphodiesterase-3 were assessed by immunohistochemistry, and cGMP plasma levels were measured by ELISA. RESULTS: In isolated hearts, sildenafil prevented the reduction of diastolic relaxation (dP/dt) that was induced by L-NAME. In addition, phosphodiesterase-5 immunoreactivity was localized in the intercalated discs between the myocardial cells. The staining intensity was reduced by L-NAME, and sildenafil treatment abolished this reduction. Consistent with these results, the plasma levels of cGMP were decreased in the L-NAME-treated rats but not in rats that were treated with L-NAME + sildenafil. CONCLUSION: The sildenafil-induced attenuation of the deleterious hemodynamic and cardiac morphological effects of L-NAME in cardiac myocytes is mediated (at least in part) by the inhibition of phosphodiesterase-5.


Subject(s)
Animals , Male , Rats , Enzyme Inhibitors/therapeutic use , Heart/drug effects , Hypertension/drug therapy , NG-Nitroarginine Methyl Ester/therapeutic use , /pharmacology , Piperazines/pharmacology , Sulfones/pharmacology , Arterioles/drug effects , Blood Pressure/drug effects , /blood , /metabolism , Diastole , Enzyme-Linked Immunosorbent Assay , Heart/physiopathology , Hypertension/enzymology , Hypertension/physiopathology , Myocytes, Cardiac/drug effects , Myocytes, Cardiac/enzymology , Purines/pharmacology , Rats, Wistar , Time Factors
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