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N Heyne

Publications and source records attributed to N Heyne.

15 recordsLinked to original sources

The selective adenosine A1 receptor antagonist KW-3902 prevents radiocontrast media-induced nephropathy in rats with chronic nitric oxide deficiency.

Several studies have recently suggested a principal role of adenosine in the pathogenesis of radiocontrast media-induced nephropathy. In the present experiments, we therefore investigated the renal protective effects of 8-(noradamantan-3-yl)-1,3-dipropylxanthine (KW-3902), a potent and selective adenosine A1 receptor antagonist, on radiocontrast media-induced nephropathy in the model of the N-pi-nitro-L-arginine methyl ester (L-NAME) hypertensive, chronic nitric oxide (NO)-depleted rat. Chronic NO depletion was induced by pretreatment with L-NAME, 50 mg/ml, added to drinking water for 8 weeks. Clearance experiments were performed in anesthetized rats and glomerular filtration rate was assessed prior to and following the application of high osmolar radiocontrast media (sodium diatrizoate, 3 ml/kg, i.v.) or an equivalent volume of isoosmolar mannitol to examine the role of hyperosmolarity in radiocontrast media-induced nephropathy. Subgroups received KW-3902 (0.1 mg/kg, i.v.), 20 min prior to radiocontrast media administration. Age-matched, untreated rats served as controls. Radiocontrast media application induced a significant decline in glomerular filtration rate in L-NAME hypertensive animals, whereas no effects were observed in control rats. KW-3902 fully prevented the drop in glomerular filtration rate in response to radiocontrast media in L-NAME hypertensive rats. No renal hemodynamic alterations were observed in mannitol-infused animals. The present experiments demonstrate that the decrease in glomerular filtration rate following radiocontrast media occurred independently of the osmotic load, and that KW-3902 effectively prevented the radiocontrast media-induced deterioration in renal function. KW-3902 may be especially beneficial in patients at high risk for developing acute renal failure following radiocontrast media application or in patients in which extracellular fluid volume expansion is limited by clinical conditions such as congestive heart failure.

Animals↗

Urinary dopamine excretion in healthy volunteers: effect of sodium diet and acute water load.

The present study was designed to investigate, in human subjects, urinary dopamine excretion under different conditions of sodium and water homeostasis. In a cross-over trial, ten healthy volunteers were subjected to low-salt (LS; dietary salt restriction, sodium chloride (NaCl) intake <5 g per day), normal-salt (NS; normal food ad libitum), and high-salt (HS; normal food plus NaCl 100 mg/kg per day) regimens for 8 days in a randomized order. On day 7, urine was collected for 24 h. The variations in urinary sodium excretion reflected the dietary salt intake (LS: 16.3+/-4.7; NS: 144.1+/-18.2; HS: 221.9+/-12.9 mmol 24 h(-1) 1.73 m(-2)), but were not accompanied by significant changes in urinary dopamine excretion. On day 8, clearance studies showed that an acute oral water load of 1500 ml did not alter glomerular filtration rate or renal plasma flow but significantly increased urinary flow rate without affecting dopamine excretion. Assuming that excreted dopamine is not metabolized or reabsorbed during the tubular passage, both the unchanged urinary dopamine output in spite of 14-fold variations in sodium excretion and its independence of an acute water load argue against the hypothesis that dopamine in the tubular lumen acts as a natriuretic and/or diuretic factor in humans.

Administration, Oral↗

Effect of the selective adenosine A1-receptor antagonist KW-3902 on tubuloglomerular feedback in radiocontrast-media-induced nephropathy in rats with chronic nitric oxide deficiency.

To study the possible mechanism of renoprotective effects of adenosine A1-receptor antagonist against radiocontrast media (RCM)-induced nephropathy, we investigated the effects of adenosine A1-receptor antagonist on tubuloglomerular feedback (TGF) activity prior to and following application of RCM in chronic NO-depleted rats. TGF in NO-depleted rats was significantly enhanced compared with that in normal rats. After RCM application, the enhanced TGF was continued. A selective adenosine A1-receptor antagonist, KW-3902 (8-(noradamantan-3-yl)-1,3-dipropylxanthine), inhibited the enhanced TGF. These results suggest that KW-3902 could inhibit TGF in chronic NO-depleted rats. Renoprotective effects by adenosine antagonists could be partly due to an inhibition of TGF via the blockade of the adenosine A1-receptor.

Animals↗

Adenosine and extracellular volume in radiocontrast media-induced nephropathy.

Renal hemodynamic changes could play a key role in radiocontrast media-induced nephropathy (RCIN), although the pathophysiological mechanisms are unclear. We investigated the role of adenosine in RCIN caused by sodium diatrizoate (Urografin, 3 ml/kg) in nitro-L-Arg methyl ester (L-NAME)-hypertensive rats in different hydration states [eight weeks of L-NAME (50 mg/liter) in drinking water; high or low sodium intake for the last two weeks]. In clearance experiments under thiobutabarbital anesthesia in these previously mentioned animals, glomerular filtration rate (GFR), renal blood flow (RBF), and mean arterial pressure (MAP) were measured in the presence or absence of the adenosine A1-receptor antagonist 8-cyclopropyl-1,3-dipropylxanthine (DPCPX, 100 microg/kg bolus plus 10 microg/kg/hr). DPCPX or pretreatment did not change control hemodynamics. Contrast medium caused GFR and RBF to fall significantly in volume-depleted rats (from 0.29 +/- 0.02 to 0.21 +/- 0.02 ml/min/100 g and 5.4 +/- 0.3 to 4.0 +/- 0.4 ml/min, respectively) without change in MAP. In volume-expanded rats, changes were not significant (0.25 +/- 0.01 to 0.24 +/- 0.02 ml/min/100 g and 5.6 +/- 0.3 to 5.3 +/- 0.4 ml/min, respectively). In the volume-depleted rats, changes were prevented by DPCPX (0.27 +/- 0.02 to 0.24 +/- 0.02 ml/min/100 g and 4.8 +/- 0.1 to 5.0 +/- 0.1 ml/min, respectively). The acute hemodynamic effects elicited by contrast medium in L-NAME hypertensive rats thus can be prevented by volume expansion. Adenosine, via A1-receptors, contributes to the adverse effects of contrast media.

Acute Kidney Injury↗

[7-D-ALA]-angiotensin 1-7 blocks renal actions of angiotensin 1-7 in the anesthetized rat.

Exogenous angiotensin (Ang) 1-7 affects renal function, but the receptor(s) involved in this response remain(s) to be determined. In an in vitro preparation of proximal tubules, Ang 1-7 was shown to act on Ang II AT1 receptors (minor component), but also on a non-AT1, non-AT2 Ang receptor (major component) to inhibit reabsorption. In brain, Ang 1-7 also exerts effects mediated by a non-AT1, non-AT2 binding site; these effects are inhibited, however, by the angiotensin analog [7-D-Ala]-Ang 1-7. Therefore we tested the effect of Ang II AT1-receptor antagonist losartan and [7-D-Ala]-Ang 1-7 on the renal response to exogenous Ang 1-7 in standard renal-clearance experiments in the anesthetized rat. We found that Ang 1-7 (100 pmol/kg/min, i.a.) increased glomerular filtration rate (GFR), urinary flow rate (UV), and urinary sodium excretion (UNaV) without affecting mean arterial blood pressure (MAP) or urinary potassium excretion (UKV), confirming previous reports. Losartan (10 mg/kg, i.v.) blocked the pressor effect of exogenous Ang II (100 pmol/kg/min, i.a.), but did not significantly affect the renal response to Ang 1-7. Conversely, pretreatment with [7-D-Ala]-Ang 1-7 (5 nmol/kg/min) did not affect the pressor effect of Ang II, but abolished the renal response to Ang 1-7. Application of [7-D-Ala]-Ang 1-7 in the absence of exogenous Ang 1-7 did not alter MAP or GFR, but increased UNaV (by 52%). Our data indicate that similar to the response in brain, the renal response to exogenous Ang 1-7 may be mediated predominantly by a distinct non-AT1 binding site, which is sensitive to blockade by [7-D-Ala]-Ang 1-7. Furthermore, ambient endogenous Ang 1-7 acting on this distinct binding site may not contribute significantly to control of MAP or GFR, but exerts an antinatriuretic influence in the anesthetized rat.

Anesthesia↗

[Renal hemodynamics and proteinuria in chronic glomerulonephritis treated with beta-receptor blockers or ace inhibitors].

BACKGROUND AND OBJECTIVE: In patients with chronic glomerular nephropathy associated arterial hypertension and proteinuria are considered to be cardinal risk factors in the progressive deterioration of renal function. Treatment regimens which reduce proteinuria and hypertension improve prognosis. The effect of the new beta-receptor blockers compared to common ACE-Inhibitors is of special interest. PATIENTS AND METHODS: The studied cohort consisted of 11 patients with CGN, hypertension and proteinuria > 400 mg/24 h. Four drugs were given for 4 weeks, doubly blinded and randomized according to a "Latin-square design": Celiprolol (beta-1-antagonist, beta-2-agonist, 200 mg/d), Atenolol (selective beta-1-antagonist, 50 mg/d), Ramipril (ACE-inhibitor, 2.5 mg/d) and placebo. There was a two-week wash-out phase between each of the four treatment phases. At the end of each treatment phase glomerular filtration rate (GFR) and effective renal plasma flow (ERPF) were measured by inulin and para-amino-hippuric acid (PAH) clearance. Proteinuria was determined in the course of a three-day collection period at the end of each treatment phase. During this period blood pressures were measured with a continuous 24-hour blood pressure monitor. RESULTS: Mean arterial blood pressure (MAP) was significantly reduced, compared with placebo, by all three antihypertensives (108 +/- 9 mm Hg with placebo, 98 +/- 12 mg Hg with atenolol, 101 +/- 11 mm Hg with celiprolol and 98 +/- 8 mm Hg with ramipril; P < 0.01). Celiprolol produced a significant rise In ERPF (322 +/- 109 ml/min with placebo, 391 +/- 110 ml/min with celiprolol: P < 0.05). GFR was slightly, but not significantly, reduced by celiprolol and atenolol. Filtration fraction remained unchanged with atenolol and celiprolol, while it was slightly, but not significantly, reduced with ramipril. Compared with the placebo, all three drugs significantly reduced proteinuria (P < 0.05): 1.8 +/- 1.3 g/24 h with placebo, 1.2 +/- 1.2 g/24 h with atenolol, 1.2 +/- 1.1 g/24 h with celiprolol and 1.4 +/- 1.4 g/24 h with ramipril. CONCLUSION: These data indicate that, in addition to ACE inhibitors, the new generation of beta-receptor blockers in particular, because of their vasodilator action, favourably influence proteinuria and renal blood flow in patients with CGN and arterial hypertension.

Adrenergic beta-Antagonists↗

Effect of intratubular application of angiotensin 1-7 on nephron function.

Cleavage of the C-terminal tripeptide of angiotensin I (Ang I) by neutral endopeptidase 24.11 releases angiotensin 1-7 (Ang 1-7). Because Ang I and neutral endopeptidase 24.11 are present in proximal tubular fluid and brush border, respectively, Ang 1-7 could be released into proximal tubular fluid to affect nephron function. Therefore, we studied the effect of intratubular Ang 1-7 (10(-12) to 10(-8) M) on nephron function employing in vivo renal micropuncture in inactin-anesthetized Munich-Wistar-Frömter rats. We observed that: (i) Intratubular application of Ang 1-7 for 3, 15, or 30 min did not affect reabsorption in the microperfused proximal convoluted tubule determined as net fluid reabsorption. (ii) During perfusion of Henle's loop for 15 min with artificial tubular fluid (time control), we observed a decline in fluid, potassium and sodium reabsorption by 20, 18 and 5%, respectively. A similar decline in reabsorption was seen with intratubular application of Ang 1-7 in a concentration of 10(-12) or 10(-10) M. In contrast, intratubular application of Ang 1-7 in a concentration of 10(-8) M increased fluid, potassium and sodium reabsorption in that nephron segment by 11, 9 and 3%, respectively. The latter response was completely abolished by AT1 angiotensin II receptor antagonist losartan (10[-6] M). (iii) Intratubular application of Ang 1-7 did not affect net sodium, potassium, or fluid reabsorption in the distal tubule. (iv) TGF response assessed by measuring proximal tubular stop-flow pressure or single nephron filtration rate during orthograde open-loop perfusion of Henle's loop was not significantly altered by intratubular application of Ang 1-7. These findings show that intratubular application of Ang 1-7 in concentrations which possibly cover the physiological range does not significantly alter (i) tubular reabsorption in proximal convoluted or distal tubule, or (ii) TGF response. Intratubular Ang 1-7 at a concentration of 10(-8) M appears to increase reabsorption in Henle's loop by an AT1 angiotensin II receptor-mediated mechanism, the physiological relevance of which remains to be established.

Absorption↗

Prevention of radiocontrast-induced nephropathy by adenosine antagonists in rats with chronic nitric oxide deficiency.

To evaluate therapeutic options for the prevention of radiocontrast media (RCM)-induced nephropathy, a model was developed in which rats received NG-nitro-L-arginine methyl ester (L-NAME) for 10 wk in order to inhibit nitric oxide (NO) synthetase. This study tests the hypothesis that infusion of an adenosine antagonist before RCM application may avoid the vasoconstrictive response in NO-depleted rats. Rats received L-NAME for 10 wk orally (50 mg/L drinking water) to achieve NO depletion. Renal function was determined by [3H]inulin clearance for analysis of the GFR and by flowmetry for assessing renal blood flow (RBF). After a control clearance period (baseline clearance period), the renal response to RCM application (sodium diatrizoate, 2 ml/kg body wt) was measured two times every 30 min starting 30 min after RCM application (clearance periods 1 and 2). L-NAME rats and control rats received two adenosine antagonists. The nonselective adenosine antagonist theophylline was given as an initial bolus of 50 mumol/kg body wt within 10 min, followed by continuous infusion of 100 mumol/kg body wt per h, and the specific adenosine A1-receptor antagonist 8-cyclopentyl-1,3-dipropylxanthine (DPCPX) was given as a bolus of 100 micrograms/kg body wt before RCM application. Results were compared with vehicle infusion. In the control group, no significant change of GFR or RBF could be detected after application of RCM with or without prior infusion of DPCPX or theophylline. In L-NAME rats, RBF decreased significantly after RCM application (baseline, 5.6 +/- 0.2 ml/min; first clearance period, 4.6 +/- 0.3 ml/min [P < 0.05]; second clearance period, 4.3 +/- 0.3 [P < 0.01]). GFR was also reduced in L-NAME rats without previous infusion of theophylline or DPCPX (baseline, 0.95 +/- 0.1 ml/min; first clearance period, 0.83 +/- 0.1 ml/min; second clearance period, 0.69 +/- 0.1 ml/min [P = 0.058]). Prior treatment with either theophylline or DPCPX resulted in complete protection against a decline of RBF and GFR induced by RCM in L-NAME rats. Rats with chronic NO blockade showed a significant increase of the renal vasoconstrictive effect of contrast media. Application of L-NAME in rats seems to constitute a suitable animal model to study the pathophysiology of radiocontrast media-induced nephropathy. In this animal model, administration of adenosine antagonists prevented the decline of GFR and RBF.

Acute Kidney Injury↗

Randomized controlled trial of ACE-inhibitors and beta-blockers with and without vasodilating activity in chronic glomerulonephritis.

A prospective double-blind, randomized study was conducted to compare the effects of the beta 1 antagonist, beta 2 agonist celiprolol (200 mg daily) on renal hemodynamics and protein excretion with those of the beta 1 antagonist atenolol (50 mg daily), the ACE-inhibitor ramipril (2.5 mg daily), and placebo in 11 patients with proteinuria > 400 mg/24 h due to chronic glomerulonephritis. All 4 substances were given in a double-blind, randomized manner according to a latin-square design over a period of 4 weeks with a wash-out period of 2 weeks in between. Glomerular filtration rate (GFR) and effective renal plasma flow (ERPF) were measured by inulin and PAH clearance. Proteinuria was assessed by urine sampling at the end of each treatment period. Mean arterial pressure (MAP) was reduced significantly (p < 0.01) by all 3 drugs compared to placebo (108 +/- 9 mmHg placebo, 98 +/- 12 mmHg atenolol, 101 +/- 11 mmHg celiprolol, and 98 +/- 8 mmHg ramipril). Celiprolol induced a significant increase in ERPF compared to placebo (322 +/- 109 ml/min under placebo versus 391 +/- 110 ml/min under celiprolol, p < 0.05). GFR was slightly but insignificantly increased under atenolol and celiprolol. Filtration fraction (FF) remained unchanged in case of atenolol and celiprolol treatment and was slightly but not significantly reduced by ramipril. Proteinuria was significantly (p < 0.05) reduced compared to placebo by all 3 drugs (1.8 +/- 1.3 g/24 h under placebo, 1.2 +/- 1.2 g/24 h under atenolol, 1.2 +/- 1.1 g/24 h under celiprolol, and 1.4 +/- 1.4 g/24 h under ramipril). These data demonstrate that new beta-blocking agents show favorable effects on proteinuria and renal blood flow in patients with chronic glomerulonephritis and arterial hypertension. This may be attributed to their vasodilating properties.

Adrenergic beta-1 Receptor Antagonists↗

Microalbuminuria in essential hypertension. Reduction by different antihypertensive drugs.

The effects of four different antihypertensive drugs (the Ca(2+)-channel blocker felodipine, the beta-blocker metoprolol, the angiotensin converting enzyme inhibitor ramipril, and the alpha-blocking agent doxazosin) on microalbuminuria and renal hemodynamics were evaluated in a double-blind, crossover study in 17 patients (10 women, seven men, aged 39 +/- 14 years) with mild-to-moderate essential arterial hypertension and microalbuminuria. Patients were studied after a 2-week placebo phase preceded by 2 weeks off all medication and after 12 weeks of treatment with each drug. Between each drug treatment, there was another 14-day placebo washout period. At the end of the study, we performed two additional 2-week placebo periods. After each placebo and treatment period, we measured albumin excretion during a 3-day collecting period. Renal hemodynamics were assessed by clearance techniques (inulin and p-aminohippurate clearance) at the end of the first and last placebo periods and after each treatment period. All drugs reduced mean arterial pressure and microalbuminuria to a similar and statistically significant (p < 0.05) extent (mean arterial pressure: placebo phase, 116 +/- 5 mm Hg; felodipine, 101 +/- 4 mm Hg; metoprolol, 101 +/- 5 mm Hg; ramipril, 101 +/- 4 mm Hg; doxazosin, 102 +/- 5 mm Hg; urinary albumin excretion: placebo phase, 46 +/- 50 mg/day; felodipine, 18 +/- 23 mg/day; metoprolol, 14 +/- 12 mg/day; ramipril, 16 +/- 16 mg/day; doxazosin, 14 +/- 14 mg/day). Mean arterial pressure levels and urinary albumin excretion returned to baseline after the last placebo period (110 +/- 6 mm Hg and 40 +/- 46 mg/day, respectively).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗