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Biomedical subjects

Roland E Schmieder

Publications and source records attributed to Roland E Schmieder.

At least 19 recordsLinked to original sources

Aliskiren, an orally effective renin inhibitor, provides antihypertensive efficacy alone and in combination with valsartan.

BACKGROUND: By blocking the renin-angiotensin-aldosterone system (RAAS) at its rate-limiting step, renin inhibition may provide improved RAAS suppression. We investigated the blood pressure (BP)-lowering effects of the oral direct renin inhibitor aliskiren, alone or in combination with the angiotensin receptor blocker valsartan. METHODS: In this multicenter, randomized, placebo-controlled, 8-week trial, 1123 patients with mild-to-moderate hypertension underwent a 3 to 4 week single-blind placebo run-in and were then randomized in a modified factorial study design to receive once-daily, double-blind oral treatment with placebo, aliskiren monotherapy (75, 150, or 300 mg), valsartan monotherapy (80, 160, or 320 mg), aliskiren and valsartan in combination, or valsartan/hydrochlorothiazide (160/12.5 mg). The primary efficacy variable was the change from baseline in mean sitting diastolic BP (DBP) at endpoint. RESULTS: Once-daily oral treatment with aliskiren 300 mg significantly (P < .0001) lowered mean sitting DBP and systolic BP (SBP) compared with placebo; aliskiren monotherapy demonstrated a safety and tolerability profile comparable to placebo. Changes in DBP and SBP were fitted to a first-order dose-response surface (lack-of-fit test, P = .65), which showed that aliskiren and valsartan alone and in combination produced dose-related reductions in DBP and SBP. Coadministration of aliskiren and valsartan produced a greater antihypertensive effect than either drug alone, comparable in magnitude to the effect of valsartan/hydrochlorothiazide, with similar tolerability to the component monotherapies and to placebo. CONCLUSIONS: Aliskiren monotherapy provides antihypertensive efficacy and placebo-like tolerability in patients with hypertension. Aliskiren and valsartan in combination may provide additive BP-lowering effects with maintained tolerability.

Adult↗

Effects of nitric oxide synthase inhibition and L-arginine on renal haemodynamics in young patients at high cardiovascular risk.

BACKGROUND: Aging and a variety of cardiovascular risk factors are associated with oxidative stress and impaired endothelial function. Whether such an association is already evident in the renal vascular bed in young patients at high cardiovascular risk has not yet been determined. METHODS: We compared renal haemodynamics in 23 young (age 30+/-5 years) male patients at high cardiovascular risk with impaired lipid metabolism and elevated blood pressure with 23 matched, healthy control subjects (age 28+/-3 years) without cardiovascular risk factors at baseline and following infusions of the nitric oxide (NO) synthase inhibitor N(G)-monomethyl-L-arginine (L-NMMA: 4.25mg/kg), the substrate of NO synthase L-arginine (100mg/kg) and the antioxidant Vitamin C (3g, co-infused with L-arginine 100mg/kg). RESULTS: Baseline renal haemodynamics did not differ between the two groups. Infusion of L-NMMA decreased renal plasma flow (RPF) in both groups to a similar extent (-113+/-95 ml/min versus -128+/-133 ml/min, p=NS). The response of RPF to infusion of L-arginine was more pronounced in high risk patients than in control subjects (+123+/-64.4 ml/min versus +75.6+/-60.2 ml/min, p=0.012) and further exaggerated during co-infusion of L-arginine and Vitamin C (+299+/-164 ml/min versus +175+/-148 ml/min, p=0.003). CONCLUSIONS: Basal NO activity of the renal vasculature appears to be unaltered in young patients at high cardiovascular risk. However, the greater response of RPF to L-arginine and to Vitamin C co-infused with L-arginine in these young patients suggests that decreased substrate availability for NO synthase and oxidative stress are key factors for alterations in endothelium-dependent vasodilation of the renal vasculature in this young high risk group of patients.

Adult↗

Influences of norepinephrine transporter function on the distribution of sympathetic activity in humans.

Previous studies suggest that neuronal norepinephrine transporter function may regulate the distribution of sympathetic activity among blood vessels, heart, and kidney; we tested the functional relevance in humans. Sixteen healthy men (26+/-1 years) ingested 8 mg of the selective norepinephrine reuptake transporter inhibitor reboxetine or a matching placebo on 2 separate days in a double-blind, randomized, crossover fashion. We monitored heart rate, thoracic bioimpedance, blood pressure, glomerular filtration rate, and renal blood flow. Ninety minutes after ingestion of the test medication, subjects were tilted to a 45 degrees head-up position, where they remained for an additional 30 minutes. Reboxetine increased supine systolic blood pressure through an increase in cardiac output whereas systemic vascular resistance decreased. Furthermore, reboxetine increased heart rate, particularly with a head-up tilt. Supine plasma renin activity was 0.71+/-0.15 ng angiotensin (Ang)/L per mL/h with placebo and 0.36+/-0.07 ngAng/L per mL/h with reboxetine (P<0.01). Supine plasma Ang II concentrations were also decreased with reboxetine. Both plasma renin activity and Ang II concentrations remained suppressed during head-up tilt. On placebo, renal vascular resistance increased with head-up tilt. The response was abolished with norepinephrine reuptake inhibition. We conclude that norepinephrine reuptake function profoundly influences the distribution of sympathetic activity between the heart, vasculature, and kidney in humans. All of these changes are physiologically relevant because they lead to corresponding changes in organ function.

Adrenergic Uptake Inhibitors↗

Rapid nongenomic effects of aldosterone on the renal vasculature in humans.

There is increasing evidence for the importance of rapid nongenomic effects of aldosterone on the human vasculature. In vitro animal experiments in renal arterioles also suggest the presence of such effects on the renal vasculature. We conducted a clinical study to explore these effects in vivo in humans. Thirteen healthy male volunteers were examined. Aldosterone (500 microg) or placebo was injected intravenously with or without coinfusion of N(G) monomethyl-L-arginine (L-NMMA) in a randomized, double-blinded 4-fold crossover design. Renal plasma flow and glomerular filtration rate were measured by constant infusion clearance technique using inulin and para-aminohippuric acid. Injection of aldosterone without concomitant infusion of L-NMMA changed the renal plasma flow and glomerular filtration rate not statistically significant compared with placebo. Coinfusion of L-NMMA unmasked the effect of aldosterone: aldosterone with L-NMMA decreased the glomerular filtration rate slightly (-1.4+/-6.2 mL/min), whereas infusion of L-NMMA alone increased the glomerular filtration rate (8.3+/-9.8 mL/min; P=0.004). L-NMMA alone decreased renal plasma flow by 58.2+/-97.5 mL/min, and aldosterone with L-NMMA decreased renal plasma flow by 190.0+/-213.7 mL/min (P=0.074). Accordingly, Aldosterone with L-NMMA increased renal vascular resistance much more than L-NMMA alone (1588+/-237 versus 614+/-240 dynxsxcm(-5); P=0.014). These data indicate that aldosterone acts via rapid nongenomic effects in vivo in humans at the renal vasculature. Antagonizing the endothelial NO synthase unmasks these effects. Therefore, rapid nongenomic aldosterone effects increase renal vascular resistance and thereby mediate arterial hypertension if endothelial dysfunction is present.

Adult↗

Valsartan and retinal endothelial function in elderly hypertensive patients.

BACKGROUND: The aim of this study was to investigate the impact of short-term treatment with the angiotensin II receptor blocker (ARB) valsartan on retinal endothelial function in elderly patients with mild to moderate essential hypertension. METHODS: In an open-labeled study, 20 elderly, male patients with arterial hypertension (WHO I-II) were treated with the ARB valsartan (80-160 mg once daily) over 8 days. Central retinal artery perfusion at rest and during flicker light stimulation was measured before and after treatment using pulsed wave Doppler sonography. Retinal capillary flow was assessed with scanning laser Doppler flowmetry at rest and following systemic infusion of the nitric oxide synthase (NOS) inhibitor NG-monomethyl-L-arginine (L-NMMA). RESULTS: While valsartan significantly lowered blood pressure, central retinal artery perfusion at rest as well as after flicker light stimulation was similar before and after treatment. Similarly, retinal capillary flow at rest and after infusion of L-NMMA did not change with valsartan after 7 days of treatment. Subgroup analysis revealed that changes in retinal capillary flow in response to L-NMMA might be dependent on serum low-density lipoprotein (LDL) cholesterol levels of study participants. After treatment with valsartan, retinal capillary flow in response to L-NMMA decreased more in patients with low (< 3.54 mmol/l) than with high LDL-cholesterol levels (-12.6 +/- 20.2% vs 12.3 +/- 19.5%, p < 0.05). CONCLUSION: Short-term treatment with valsartan did not improve retinal endothelial function in elderly hypertensive patients.

Aged↗

Endothelial dysfunction: how can one intervene at the beginning of the cardiovascular continuum?

Endothelial dysfunction, characterized by impaired nitric oxide activity, constitutes an early step in the pathogenesis of atherosclerotic disease. Prospective studies have shown that impaired endothelium-dependent vasorelaxation and the vasodilatory response of coronary arteries to acetylcholine predict cardiovascular events. Microalbuminuria and estimated glomerular filtration rate, which are both deeply influenced by renal nitric oxide activity, are predictors of cardiovascular outcome and total mortality but develop at a later stage of renal impairment. Endothelial dysfunction reflects early stage renal involvement in the atherosclerotic processes. The Telmisartan versus Ramipril in renal ENdothelium DYsfunction (TRENDY) trial examined endothelial function of the renal vasculature as a therapeutic target in patients with hypertension and type 2 diabetes, but without albuminuria. The rationale was that blockade of the renin-angiotensin system (RAS) is cardio- and renoprotective at later stages of the disease, but the impact of blockade of the RAS at earlier stages of disease is unknown. The results of TRENDY indicate that the endothelial function, as assessed by basal nitric oxide activity, can be improved after RAS blockade. These data complement the results of the Diabetics Exposed to Telmisartan And enalaprIL (DETAIL) trial, which demonstrated that telmisartan and enalapril similarly decelerate the progression of overt diabetic nephropathy. The results of TRENDY are in accordance with the observed changes in peripheral circulation. Endothelium-dependent vasorelaxation could be improved with angiotensin II receptor blockers, but not with diuretics or beta-blockers, in hypertensive patients. Intervention at the beginning of the renal and cardiovascular continuum offers the opportunity to prevent the fatal development towards renal and cardiac failure.

Angiotensin II Type 1 Receptor Blockers↗

Effects of valsartan compared to amlodipine on preventing type 2 diabetes in high-risk hypertensive patients: the VALUE trial.

CONTEXT: Type 2 diabetes is emerging as a major health problem, which tends to cluster with hypertension in individuals at high risk of cardiovascular disease. OBJECTIVE: To test for the first time the hypothesis that treatment of hypertensive patients at high cardiovascular risk with the angiotensin-receptor blocker (ARB) valsartan prevents new-onset type 2 diabetes compared with the metabolically neutral calcium-channel antagonist (CCA) amlodipine. DESIGN: Pre-specified analysis in the VALUE trial. Follow-up averaged 4.2 years. The risk of developing new diabetes was calculated as an odds ratio (OR) with 95% confidence intervals (CI) for different definitions of diabetes. PATIENTS: A sample of 9995 high-risk, non-diabetic hypertensive patients. INTERVENTIONS: Valsartan or amlodipine with or without add-on medication [hydrochlorothiazide (HCTZ) and other add-ons, excluding other ARBs, angiotensin-converting enzyme (ACE) inhibitors, CCAs]. MAIN OUTCOME MEASURE: New diabetes defined as an adverse event, new blood-glucose-lowering drugs and/or fasting glucose > 7.0 mmol/l. RESULTS: New diabetes was reported in 580 (11.5%) patients on valsartan and in 718 (14.5%) patients on amlodipine (OR 0.77, 95% CI 0.69-0.87, P < 0.0001). Using stricter criteria (without adverse event reports) new diabetes was detected in 495 (9.8%) patients on valsartan and in 586 (11.8%) on amlodipine (OR 0.82, 95% CI 0.72-0.93, P = 0.0015). CONCLUSION: Compared with amlodipine, valsartan reduces the risk of developing diabetes mellitus in high-risk hypertensive patients.

Aged↗

Effect of nos inhibition on retinal arterial and capillary circulation in early arterial hypertension.

BACKGROUND: Arterial hypertension is involved in the pathogenesis of end organ damage by influencing the ability of the vascular endothelium to produce nitric oxide (NO). This study analyzes changes of retinal and systemic NO-dependent circulation parameters by inhibiting nitric oxide synthase (NOS) in both hypertensive and normotensive individuals. METHODS: In a double-blind crossover trial, 19 hypertensive patients (H, age 28.2 +/- 0.9 years) and 19 normotensive controls (N, age 26.9 +/- 0.9 years) were randomized treated either with candesartan or placebo. Both retinal capillary flow (RCF) and mean blood flow velocity of the central retinal artery (VCRA) were registered before and after NOS inhibition with N-monomethyl-L-arginine (L-NMMA, 3 mg/kg). In a subpopulation mean arterial pressure (MAP), cardiac output (CO), and the total peripheral resistance (TPR) were determined simultaneously. RESULTS: Changes from baseline: In normotensive and hypertensive subjects infusion of L-NMMA led to an increase of MAP (N, +13.3 +/- 1.8%, P < 0.01; H, +14.3 +/- 2.4%, P < 0.01) and TPR (N, +36.9 +/- 3.8%, P < 0.01; H, +45.0 +/- 4.5%, P < 0.01), and to a decrease of CO (N, -21.1 +/- 1.5%, P < 0.01; H, -24.6 +/- 2.3%, P < 0.01). The L-NMMA effect on VCRA and RCF differed between controls and hypertensives. VCRA changed by + 17.3 +/- 6.2% (P < 0.05) and RCF by -7.3 +/- 3.0% (P < 0.05) in controls. In hypertensive subjects corresponding results were + 9.5 +/- 5.2% (P = NS) and + 2.7 +/- 3.8% (P = NS), respectively. The decrease of RCF due to L-NMMA was reduced in hypertension as compared to controls (P < 0.05). The calculated cross-sectional area of CRA was reduced by -58.7% in controls and increased by + 31.1% in hypertensive subjects. There was no significant correlation between the flow in the systemic and retinal circulation. CONCLUSION: Only normotensives L-NMMA induces an acceleration of VCRA due to a probable vasoconstriction of the central retinal artery and despite of a reduced RCF. Already in early hypertension the NOS-dependent vascular tone in retinal arteries and capillaries is impaired. The regulation of the retinal capillary flow appeared to be independent from systemic circulation.

Adult↗

The effects of paracetamol and parecoxib on kidney function in elderly patients undergoing orthopedic surgery.

The common adverse effects of traditional nonsteroidal antiinflammatory drugs on renal function include reductions in renal blood flow, glomerular filtration rate, and sodium and potassium excretion, mainly via inhibition of renal cyclooxygenase. We designed the present study to determine the effects of IV paracetamol or parecoxib on renal function in elderly patients undergoing orthopedic surgery. Seventy-five patients (76 +/- 8 yr, mean +/- sd) undergoing hip replacement or surgery of the femoral shaft completed this randomized and placebo-controlled study. After their arrival in the postanesthesia care unit, patients received an initial dose of the study medication, paracetamol 1000 mg IV (n = 25), parecoxib 40 mg IV (n = 25), or saline IV (n = 25); subsequent doses were administered for the next 3 days. Opioids were provided as rescue medication. Blood and urine samples were collected before and after surgery, and markers of renal function were determined. During the first 2 h after the initial dose of parecoxib, creatinine clearance was slightly diminished (125 +/- 83 to 86 +/- 45 mL/min, P < 0.05), whereas no significant decrease of creatinine clearance was observed in the placebo and paracetamol groups. After all treatments, sodium and potassium excretion as well as urine albumin and alpha-1-microglobulin were transiently increased (group differences: not signicifant). In conclusion, glomerular and tubular functions were transiently affected in all patients after orthopedic surgery; however, the differences between the treatment groups were small and not clinically relevant. Further studies are warranted to determine adverse renal effects of longer-lasting therapy with these drugs, especially in patients with renal impairment or concomitant diseases.

Acetaminophen↗

Additional antiproteinuric effect of ultrahigh dose candesartan: a double-blind, randomized, prospective study.

Proteinuria indicates future renal and cardiovascular morbidity, and, conversely, its reduction is associated with improved outcome. In a randomized, double-blind trial with parallel group design, the antiproteinuric effect of candesartan at high doses was analyzed. Patients with normal or mildly impaired renal function, protein excretion rate of 1 to 10 g/d, and treatment with an angiotensin-converting enzyme inhibitor or angiotensin receptor blocker for 3 mo were eligible. After a 4-wk treatment with 16 mg/d candesartan, patients (n = 32) were allocated to double-blind therapy with either 32 or 64 mg/d candesartan for 12 wk (including 4 wk of uptitration), followed again by 4 wk of candesartan 16 mg/d. Proteinuria at study entry was similar in both groups (geometric mean [95% confidence interval (CI)]; 32 mg/d candesartan 2.14 g/d [95% CI, 1.45 to 3.17]; 64 mg/d candesartan 2.54 g/d [95% CI, 1.91 to 3.40]; NS). After the double-blind treatment phase, proteinuria was reduced to 1.42 g/d (0.85 to 2.37) in the 64-mg/d group (P = 0.017), without any change in the 32-mg/d group (2.02 g/d [95% CI, 1.26 to 3.26]). The change in proteinuria differed between the two groups in absolute (P = 0.025) and relative terms (-29 +/- 50 versus -0 +/- 26%; P = 0.012). After downtitration to 16 mg/d candesartan, proteinuria increased again to 2.38 g/d (1.57 to 3.62) in the 64-mg/d group (P = 0.001) but remained unchanged in the 32-mg/d group (2.04 g/d [95% CI, 1.17 to 3.57]; NS). No change in BP was noticed in response to the different doses of candesartan. These data indicate an additive antiproteinuric effect of ultrahigh dose of the angiotensin receptor blocker candesartan compared with standard dose.

Adolescent↗

Aliskiren, a novel orally effective renin inhibitor, provides dose-dependent antihypertensive efficacy and placebo-like tolerability in hypertensive patients.

BACKGROUND: Stopping the detrimental effects of the renin-angiotensin system at the most upstream point of the cascade offers theoretical advantages for cardiovascular protection. This study compares the antihypertensive efficacy and safety of the novel oral renin inhibitor aliskiren with placebo and an active comparator. METHODS AND RESULTS: The study was a randomized, multicenter, double-blind, placebo-controlled, active-comparator 8-week trial in patients with mild-to-moderate hypertension (mean sitting diastolic blood pressure [DBP] > or =95 and <110 mm Hg). After a 2-week, single-blind placebo run-in, 652 patients were randomized to receive double-blind treatment with once-daily oral doses of aliskiren (150, 300, or 600 mg), irbesartan 150 mg, or placebo. Aliskiren 150, 300, and 600 mg effectively lowered both trough mean sitting DBP and systolic blood pressure (SBP) (P<0.001 versus placebo for both variables). The least-squares mean reductions in trough DBP were 9.3+/-0.8, 11.8+/-0.8, and 11.5+/-0.8 mm Hg, respectively, versus 6.3+/-0.8 mm Hg for placebo, and the least-squares mean reductions in trough SBP were 11.4+/-1.3, 15.8+/-1.2, and 15.7+/-1.2 mm Hg, respectively, versus 5.3+/-1.2 mm Hg for placebo. The antihypertensive effect of aliskiren 150 mg was comparable to that of irbesartan 150 mg (8.9+/-0.7 and 12.5+/-1.2 mm Hg, least-squares reduction in mean sitting DBP and SBP, respectively, for irbesartan). Aliskiren 300 and 600 mg lowered mean sitting DBP significantly more than irbesartan 150 mg (P<0.05). Aliskiren showed safety and tolerability comparable to those of placebo and irbesartan; the incidence of adverse events and number of patients discontinuing therapy were similar in all groups. CONCLUSIONS: Once-daily oral treatment with aliskiren lowers blood pressure effectively, with a safety and tolerability profile comparable to that of irbesartan and placebo, in patients with mild-to-moderate hypertension. Aliskiren 150 mg is as effective as irbesartan 150 mg in lowering blood pressure.

Administration, Oral↗

Effects of sympathetic nerves and angiotensin II on renal sodium and water handling in rats with common bile duct ligature.

We tested the hypothesis that angiotensin II is likely to be mandatory for the neurogenic sodium and volume retention in cirrhotic rats with common bile duct ligature (BDL) following an acute volume load. To assess the neural control of volume homeostasis, 21 days after common BDL rats underwent volume expansion (0.9% NaCL; 10% body wt over 30 min) to decrease renal sympathetic nerve activity. Untreated animals, rats with renal denervation or pretreated with a nonhypotensive dose of an angiotensin II type 1 receptor antagonist were studied. The renal renin-angiotensin system was assessed by immunohistochemistry and RT-PCR. Rats with BDL excreted only 71 +/- 4% of the administered volume load. In cirrhotic rats pretreated with an angiotensin II AT1 inhibitor or after renal denervation, these values ranged significantly higher from 98 to 103% (P < 0.05 for all comparisons). Renal sympathetic nerve activity decreases by volume expansion were impaired in BDL rats (P < 0.05) but unaffected by angiotensin II receptor inhibition. In kidneys of BDL animals, renin mRNA was increased, and immunohistochemistry revealed increased staining for peritubular angiotensin II. Renal denervation in BDL animals reduced renin expression within 5 days to control levels. In conclusion, the impaired excretion of an acute volume load in rats with liver cirrhosis is due to effects of an increased renal sympathetic nerve activity that are likely to be dependent on intrarenal angiotensin II and renin. We speculate that similar changes may contribute to long-term volume retention in liver cirrhosis.

Angiotensin II↗

Lipid-independent effects of statins on endothelial function and bioavailability of nitric oxide in hypercholesterolemic patients.

BACKGROUND: Experimental evidence suggests a lipid-independent effect of statins on endothelial function and nitric oxide (NO) availability in humans. We investigated whether improvement in NO availability in hypercholesterolemia can be achieved rapidly with statins before lipid-lowering therapy is complete. METHODS: We studied 41 patients (52 +/- 11 years) with low-density lipoprotein (LDL) cholesterol > or = 130 mg/dL (179 +/- 45 mg/dL) randomly assigned to treatment either with atorvastatin (20 mg/day) or cerivastatin (0.4 mg/day). Endothelium-dependent vasodilation of the forearm vasculature was measured by plethysmography and intra-arterial infusion of acetylcholine (ACh) after 3 days (n = 18) and 14 days (n = 39) of treatment. NO availability and oxidative stress were assessed by coinfusion of l-NMMA and vitamin C. RESULTS: After 3 days of treatment, LDL-cholesterol decreased by 11.9% with a further decrease to 29.6% after 14 days ( P < .001). Endothelium-dependent vasodilation improved by +46.7% after 3 days of statin therapy compared with before therapy (ACh 48 microg/min: +15.7 +/- 10.6 vs +10.7 +/- 10.8 mL/min per 100 mL, P < .05). No further improvement in endothelium-dependent vasodilation (+42.7% compared with before therapy) could be demonstrated after 14 days of treatment (ACh 48 microg/min: +17.7 +/- 10.3 vs +12.4 +/- 9.3 mL/min per 100 mL before therapy, P < .001). Coinfusion of ACh plus vitamin C was able to improve endothelium-dependent vasodilation before but not after 3 or 14 days of statin therapy either. The improvement in endothelium-dependent vasodilation after therapy was no longer observed when the NO-synthase inhibitor l-NMMA was coinfused together with ACh. CONCLUSIONS: Short-term lipid-lowering therapy with statins is able to improve endothelial function and NO availability almost completely after 3 days in hypercholesterolemic patients probably by decreasing oxidative stress. This improvement seems to be more rapid than the accompanying decline in LDL-cholesterol and not related to these lipid changes. This finding can support the concept of lipid-independent effects of statins in humans.

Acetylcholine↗

Mechanisms for the clinical benefits of angiotensin II receptor blockers.

The renin-angiotensin-aldosterone system (RAAS) regulates sodium balance, fluid volume, and blood pressure (BP). It is also implicated in the progression of heart failure, hypertension, and kidney disease; this is mediated by the binding of angiotensin II (ang II) to the ang II type 1 but not the ang II type 2 receptor. Preclinical and clinical studies have shown that blockade of the RAAS with ang II receptor blockers (ARB) is effective not only in controlling BP but also in preventing end-organ damage. Through their mechanism of action, ARB may offer benefit with respect to endothelial dysfunction and vascular remodeling, as well as cardiac and renal protection. In addition, both recent and ongoing clinical trials help to clarify further the mechanisms for the benefits of using ARB across the cardiovascular continuum.

Angiotensin II Type 1 Receptor Blockers↗

Superoxide scavenging effects of N-acetylcysteine and vitamin C in subjects with essential hypertension.

BACKGROUND: It is not known whether the beneficial effects of N-acetylcysteine (NAC) in conditions associated with increased oxidative stress are caused by direct superoxide scavenging. We therefore compared the acute superoxide scavenging efficacy of NAC against vitamin C (VITC) on impaired endothelium-dependent vasodilation in subjects with essential hypertension. METHODS: In a cross-over randomized study, the effects of intra-arterial administration of either NAC (48 mg/min) or VITC (18 mg/min) were examined in 15 subjects with essential hypertension and in 15 normotensive control subjects. Both endothelium-dependent and endothelium-independent vasodilation were determined as forearm blood flow (FBF) response to the intra-arterial administration of acetylcholine (Ach) and sodium nitroprusside (NP) in doses of 12 and 48 mug/min and 3.2 and 12.8 mug/min, respectively. RESULTS: Subjects with essential hypertension had impaired responses to both doses of Ach (Delta% FBF to higher dose of Ach: 325 +/- 146 in subjects with essential hypertension v 540 +/- 199 in control subjects; P = .02) and an impaired response to the higher dose of NP (330 +/- 108 v 500 +/- 199; P = .03). The intra-arterial administration of NAC had no effect on these responses (higher dose of Ach: 325 +/- 146 without v 338 +/- 112 with NAC, NS). In contrast, intra-arterial VITC improved both the response to Ach (320 +/- 132 without v 400 +/- 185 with VITC, P = .05) and to NP (383 +/- 162 v 447 +/- 170, P = .05). CONCLUSIONS: We found that NAC showed no statistically significant effect on either endothelium-dependent or endothelium-independent vasodilation in hypertensive subjects, whereas VITC did. We conclude that NAC is therefore not an effective superoxide scavenger in vivo. Other, nonimmediate effects such as the generation of glutathione may explain the beneficial effects of NAC in conditions associated with oxidative stress.

Acetylcholine↗

CYP3A5 genotype is associated with elevated blood pressure.

The present study aimed to determine whether a polymorphism in CYP3A5, encoding the major CYP3A enzyme in the human kidney, is associated with blood pressure in Caucasians. A homogenous group of 115 young, white male students with normal or mildly elevated, but untreated blood pressure was included. Blood pressure was recorded by ambulatory 24-h blood pressure-monitoring and compared between individuals with high (*1/*3) and low CYP3A5 expression (*3/*3). Moreover, genotype-dependent differences in parameters associated with the renin-angiotensin-aldosterone system were evaluated. Twenty-four hour diastolic blood pressure values were not significantly different between the two groups. However, individuals with the CYP3A5*3/*3 genotype had significantly higher 24-h ambulatory systolic blood pressure values compared to subjects with the CYP3A5*1/*3 genotype (129+/-10 versus 124+/-9, P < 0.05). There was no association of CYP3A5 genotype with angiotensin II plasma concentrations, renal plasma flow, glomerular filtration rate, urinary sodium excretion and parameters determined by echocardiography, but the *3/*3 group had significantly lower serum aldosterone concentrations compared to the individuals with the *1/*3 genotype (101+/-29 versus 117+/-29 pg/ml, P < 0.05). These data, as generated with a homogenous population of young Caucasians, indicate that the CYP3A5 genotype affects blood pressure in humans possibly by genotype-dependent differences in renal, CYP3A5-mediated metabolism of cortisol and/or aldosterone. We interpret the lower serum aldosterone concentration in the genotype group with the elevated systolic blood pressure as a counter-regulatory mechanism to attenuate the increased blood pressure associated with the CYP3A5*3/*3 genotype.

Adult↗

Optimizing therapeutic strategies to achieve renal and cardiovascular risk reduction in diabetic patients with angiotensin receptor blockers.

The major challenge for the treatment of hypertensive patients with type 2 diabetes is to achieve the uniformly recommended blood pressure goal of 130/80 mmHg, and 120/75 mmHg in proteinuric patients. Such low target blood pressure levels require the administration of multiple drugs. Angiotensin receptor blockers and the combination of angiotensin receptor blockers with diuretics fulfil the criteria to lower blood pressure effectively with a placebo-like side-effect profile. Beyond pressure control, clinical prospective trials have documented that it does matter what kind of antihypertensive agent is used to control blood pressure. Large-scale follow-up trials have documented blood pressure independent effects of angiotensin receptor blocker on cardiac [left-ventricular hypertrophy (LVH), congestive heart failure] and renal protection (proteinuria, chronic renal failure). Of note, in these trials, angiotensin receptor blockers have been combined with diuretics, and most of the included patients have been on combination therapy comprising two to four antihypertensive agents. In addition to the combination of an angiotensin receptor blocker with a diuretic, the combination of an angiotensin receptor blocker with an angiotensin-converting enzyme inhibitor appeared to be most effective in reducing proteinuria, attenuating chronic renal failure and treating congestive heart failure.

Angiotensin Receptor Antagonists↗