Search PubMed⌕ Search

Biomedical subjects

T Lenz

Publications and source records attributed to T Lenz.

At least 55 records · Page 3Linked to original sources

Hygroma renale: pararenal lymphatic cysts associated with renin-dependent hypertension (Page kidney). Case report on bilateral cysts and successful therapy by marsupialization.

A total of 42 cases of large symptomatic parapelvic or pararenal lymphatic cysts has been reported since 1890, of which 54% were associated with hypertension and 14% were bilateral. We report on a patient in whom during a 3-month period abdominal pain and distention developed successively on both sides associated with hypertension. Initially, ultrasound and computerized tomography revealed a large multicystic pararenal lymphatic mass on the right side and small parapelvic hilus lesions on the left side. Two months after resection and marsupialization of the large cyst on the right side the small hilus lesions on the left side developed into large pararenal cysts requiring the same therapeutic measures. Hypertension was reversible after surgery in both instances; at the second operation high preoperative and lower postoperative renin activity, active renin, total renin, aldosterone and atrial natriuretic factor in plasma were noted. Immunoreactive active and total renin levels in the lymph fluid were elevated, a finding that may be explained by the renal origin of the lymph. Marsupialization is a kidney preserving measure that reverses all symptoms of large pararenal cysts, including Page kidney hypertension.

Adult↗

Comparative renal hemodynamic effects of lisinopril, verapamil, and amlodipine in patients with chronic renal failure.

We investigated the effects of lisinopril, verapamil, and amlodipine in 26 hypertensive patients with chronic renal disease of varying etiologies. Blood pressure, urine protein excretion, glomerular filtration rate (GFR), and renal blood flow (RBF) (inulin and para-aminohippurate clearance) were determined before and after 2 to 3 months of therapy. All three agents lowered blood pressure with minimal side effects in many, but not all, patients. Patients who had a significant lowering of blood pressure in response to lisinopril and verapamil had favorable renal hemodynamic responses as well--GFR remained stable, RBF was stable or increased, and filtration fraction, renal vascular resistance, and proteinuria tended to decrease. Patients whose blood pressure did not decrease had less favorable responses. In the small number of patients who received amlodipine, lowering of blood pressure was associated with a small decrease in GFR. Our results demonstrate a heterogeneity in response to antihypertensive agents in patients with renal disease. We therefore conclude that treatment of such patients should be individualized, and suggest that choice of therapy depend on adequate blood pressure response in conjunction with stabilization of renal function and urine protein excretion. Our data do not support the use of a drug in these circumstances if it does not lower systemic blood pressure.

Amlodipine↗

Relationships between ambulatory blood pressure, forearm vascular resistance, and left ventricular mass in hypertensive and normotensive subjects.

Ambulant 24 h blood pressure was recorded in 97 untreated hypertensive subjects (50 with, 47 without echocardiographic signs of left ventricular hypertrophy) and 45 matched normotensive subjects. Forearm vascular resistance was calculated from mean blood pressure and blood flow, which was measured by venous plethysmography during reactive hyperemia. Blood pressure variability was calculated by standard deviations of pressure values. Systolic 24 h blood pressure exhibited the closest correlation with left ventricular mass index in hypertensives (4 = 0.48; P < .001). No relation could be found between blood pressure fall during the night and left ventricular mass index. Furthermore, body weight was a significant correlate of left ventricular mass (r = 0.53; P < .001). Regression analysis indicated that body weight and 24 h blood pressure were the principal determinants of left ventricular mass. Blood pressure variability was significantly higher in hypertensive than in normotensive subjects (P < .05). The highest vascular resistance was found in hypertensive patients with left ventricular hypertrophy compared with the other groups (P < .05). A significant close correlation between systolic resting as well as 24 h blood pressure and vascular resistance was identified for the group of hypertensives and all subjects investigated. Furthermore, left ventricular mass index and vascular resistance were correlated (in hypertensives: r = 0.32; P < .01). The extent of left ventricular mass index and forearm vascular resistance are proportional to the severity of hypertension. As vascular resistance and left ventricular mass are also related, these findings could speak for a parallel development of total peripheral resistance and left ventricular hypertrophy in essential hypertension.

Adult↗

Clinical pharmacokinetics of angiotensin converting enzyme (ACE) inhibitors in renal failure.

Arterial hypertension occurs frequently in patients with chronic renal failure. Antihypertensive treatment of arterial hypertension with angiotensin converting enzyme (ACE) inhibitors has been shown to be effective with a low incidence of adverse effects compared with other drug classes. Furthermore, treatment with ACE inhibitors may slow the progression of renal function impairment in certain groups of patients, such as those with diabetes. Most ACE inhibitors are prodrugs which are converted by hepatic esterolysis to an active diacid metabolite. Only captopril and lisinopril have sufficient oral bioavailability and are given as active drugs. ACE inhibitors can be subdivided into 3 classes with regard to the active group: the majority of ACE inhibitors are carboxyl-containing drugs, a new class of ACE inhibitors possess a phosphoryl-group and captopril and related compounds are sulfhydryl-containing drugs. The predominant elimination pathway of ACE inhibitors is excretion via the kidneys. Therefore, renal insufficiency is associated with reduced elimination of most ACE inhibitors and, thus, altered pharmacokinetic properties. This is most evident in chronic renal failure when glomerular filtration rates (GFR) are < 30 to 40 ml/min (1.8 to 2.4 L/h). As renal clearance decreases, the peak plasma concentration and area under the plasma concentration-time curve of the active drugs or diacids are increased and time to peak concentrations and half-life are prolonged. However, there are large between-drug differences in the changes in pharmacokinetic parameters, resulting in different degrees of drug accumulation after consecutive administration. This leads, for example, to high accumulation rates for drugs such as lisinopril, or cilazaprilat. In contrast, fosinopril, which is also excreted to a large extent by the hepatobiliary pathway, does not seem to accumulate in renal failure. In general, pharmacokinetics and conversion of prodrugs seem to be slightly affected in chronic renal failure; however, these changes do not appear to be clinically relevant. Efficiency of clearance for prodrugs or active drugs and their respective metabolites by haemodialysis or peritoneal dialysis varies considerably. For some ACE inhibitors, such as captopril or enalapril, the high elimination fraction by haemodialysis necessitates a supplemental dose after dialysis. Other ACE inhibitors, such as quinapril or cilazapril, are only poorly eliminated by haemodialysis or peritoneal dialysis. Dosage recommendations for treatment with ACE inhibitors in chronic renal failure depend on the specific pharmacokinetic properties of the various agents. For most ACE inhibitors, dosage adjustment is recommended in moderate and severe impairment of renal function, with resultant dosages being 25 to 50% of those recommended for patients with normal renal function.

Angiotensin-Converting Enzyme Inhibitors↗

Relation of regression of left ventricular hypertrophy to changes in ambulatory blood pressure after long-term therapy with perindopril versus nifedipine.

Casual as well as ambulatory 24-hour blood pressure (BP) and echocardiographic parameters were studied in 40 patients with untreated or insufficiently treated mild to moderate essential hypertension. Left ventricular (LV) hypertrophy was assessed before and after 24 weeks of therapy with either the converting enzyme inhibitor perindopril or the calcium antagonist nifedipine. The design was a double-blind parallel study with a placebo run-in period. Patients received a daily oral dosage of either 4 to 8 mg of perindopril or 40 to 80 mg of nifedipine in slow-release form. A diuretic (25 mg/day of hydrochlorothiazide) was added in nonresponders (greater than 90 mm Hg casual diastolic BP). Once-daily perindopril and twice-daily nifedipine comparably reduced both casual and ambulatory BP throughout 24 hours (p less than 0.01) without affecting 24-hour heart rate. Six subjects withdrew from the nifedipine group and 4 from the perindopril group. After 12 and 24 weeks of therapy, LV hypertrophy was significantly reduced by both agents. Before active treatment was begun, LV mass index was more closely correlated to 24-hour (p less than 0.001) than to casual BP. This correlation disappeared after treatment with both agents. The correlation between ambulatory systolic day-time BP and LV mass was only still present (r = 0.54; p less than 0.05) after 24 weeks of treatment with nifedipine. It is concluded that regression of LV hypertrophy during converting enzyme inhibition or calcium antagonism may be partly independent of dosage and magnitude of 24-hour BP decrease.

Adult↗

Pharmacological characterization of nicorandil by 86Rb efflux and isometric vasorelaxation studies in vascular smooth muscle.

Nicorandil and cromakalim were found to stimulate 86Rb efflux (a marker of K+ ions) from resting preparations of rabbit aorta. This action was suppressed by 10(-5) M glibenclamide, an antagonist of K(+)-channel openers in vascular smooth muscle. Through intracellular production of cyclic GMP, and subsequent suppression of cellular Ca2+ activation, nitrovasodilators interfere indirectly with the activation of Ca(2+)-dependent ion channels. 8-Bromo-cyclic GMP and sodium nitroprusside antagonized the Ca(2+)-dependent 86Rb efflux induced by 3 x 10(-7) M norepinephrine. When nicorandil and cromakalim were investigated in the same experimental setup in the presence of glibenclamide to suppress stimulation of K+ channels, only nicorandil also suppressed the norepinephrine-induced increase of the 86Rb efflux. These results confirm that nicorandil acts as both an opener of K+ channels and a nitrovasodilator. Nicorandil relaxed helical strips from rabbit aorta contracted by 10(-7) M norepinephrine, but in contrast to the relaxant action of cromakalim, this response was not antagonized by the use of glibenclamide, indicating a greater importance of the nitrovasodilator mechanism than of the K(+)-channel-opening activity for relaxation in this tissue. However, when the nitrate-like action of nicorandil was suppressed by 10(-5) M methylene blue, the K(+)-channel-opening activity was unmasked on addition of 10(-4) M glibenclamide at high concentrations of nicorandil.

Animals↗

Hyperreninemia and secondary hyperaldosteronism in a patient with pheochromocytoma and von Hippel-Lindau disease.

In a 21-year-old Caucasian women with von Hippel-Lindau disease, norepinephrine-producing adrenal pheochromocytoma was identified as the underlying cause of severe hypertension. She was found to have extremely elevated levels of circulating renin and aldosterone, and she was markedly hypokalemic. Administration of captopril further enhanced renin secretion, while her blood pressure improved. The patient became normokalemic following tumor removal, and her blood pressure decreased to normal levels with reestablishment of normal circadian blood pressure rhythm. This case demonstrates that, in the absence of renovascular or malignant hypertension, pheochromocytoma can be the underlying cause for the clinical syndrome of hypertension associated with severe hypokalemia and hyperreninemic hyperaldosteronism.

Adrenal Gland Neoplasms↗

The dualistic mode of action of the vasodilator drug, nicorandil, differentiated by glibenclamide in 86Rb flux studies in rabbit isolated vascular smooth muscle.

(1) In rabbit isolated aorta, the effects of the antianginal drug, nicorandil, of the K+ channel opener, cromakalim, and of the nitrovasodilator, sodium nitroprusside, on 86Rb efflux and on contractile force were compared. (2) In ion flux studies using 86Rb as a marker of K+ ions, both nicorandil and cromakalim, but not sodium nitroprusside, increased the efflux of 86Rb in non-stimulated preparations. The increase of membrane K+ conductance induced by nicorandil and cromakalim was totally suppressed by 10(-5) mol/l of the sulfonylurea derivative, glibenclamide. (3) The vasoconstrictor drug, noradrenaline (3 x 10(-7) mol/l), effectively increased the rate of 86Rb efflux. This stimulatory response was unaffected by glibenclamide, but was totally inhibited by Ca2+ depletion suggesting that the activation of Ca2(+)-sensitive K+ channels was responsible for this action of noradrenaline. (4) Sodium nitroprusside and nicorandil, the latter in the presence of glibenclamide to suppress the glibenclamide-sensitive stimulatory component on 86Rb efflux, antagonized the noradrenaline-induced increase in 86Rb efflux, while cromakalim in the presence of glibenclamide had no effect. (5) All of the vasodilators relaxed rabbit aortic strips contracted by 10(-7) mol/l noradrenaline in a concentration-dependent manner. (6) The vasodilatory response to cromakalim was antagonized by glibenclamide, whereas the relaxant action of nicorandil and of sodium nitroprusside remained unaffected. (7) These results demonstrate that under particular experimental circumstances, nicorandil can behave in vascular smooth muscle both as an opener of glibenclamide-sensitive K+ channels, and as a directly acting nitrovasodilator which acts via reduction of cellular calcium levels.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Hemodynamic responses to verapamil monotherapy in patients with renal disease.

We have explored the effect of verapamil on renal hemodynamics and the renin-aldosterone system in ten patients with chronic renal disease and hypertension before and after 3 months of therapy. The mean +/- SEM glomerular filtration rates were 55 +/- 7 mL/min pre- and 55 +/- 8 mL/min posttherapy; the renal plasma flow was 231 +/- 29 mL/min pre and 244 +/- 35 mL/min posttherapy. The filtration fraction (0.24 pre; 0.23 post) and the renal vascular resistance (492 +/- 144 pre; 422 +/- 101 post) also remained stable with verapamil therapy. Blood pressure was lower after treatment (P less than .02) in 7 of 10 patients. Urinary albumin excretion was reduced only when blood pressure was lowered. Verapamil had a modest effect on the renin-aldosterone axis. While the mean increase in plasma renin activity from a pretreatment value of 1.8 +/- 0.42 ng/mL/h to 2.1 +/- 0.56 ng/mL/h failed to reach statistical significance, the increases in urinary aldosterone excretion from 8.2 +/- 2.2 mg/24 h to 11.1 +/- 2.3 mg/24 h did (P less than .001). Our results demonstrate that verapamil lowered blood pressure without renal hemodynamic compromise in hypertensive patients with chronic renal disease. The antihypertensive response was associated with a rise in urinary aldosterone excretion, with unchanged serum electrolytes. We conclude that verapamil is effective, safe, and well-tolerated in patients with renal impairment and hypertension, and may be suitable for clinical trials evaluating long-term progression of renal disease.

Adult↗

O-Methylated and sulfoconjugated catecholamines: differential activities at human platelet alpha 2-adrenoceptors.

The physiological effects of the sulfoconjugates of epinephrine, norepinephrine, and the 3-O-methylated catecholamines, metanephrine, normetanephrine, and methoxytyramine were examined with regard to their alpha 2-adrenoceptor binding properties and aggregation activity in human platelets. Sulfoconjugation of catecholamines resulted in the loss of both their competitive potency for [3H]yohimbine binding and their influence on platelet aggregation. O-Methyl substituted catecholamines showed attenuation of their alpha 2-adrenoceptor binding affinities when compared with those of the corresponding non-esterified amines. Unlike the free amine epinephrine, which stimulated platelet aggregation, the O-methylated catecholamine derivatives inhibited aggregation. Inhibition was dose-dependent and restricted to the alpha 2-adrenoceptor mediated aggregation response stimulated by epinephrine (1 microM) or potentiated by subthreshold concentrations of epinephrine (30-300 nM) in the presence of subaggregatory doses of vasopressin (10-30 nM). Collagen- and ADP-induced platelet aggregation was not affected. The hydrophilic beta-antagonist CGP 12177 displayed no effects. However, high concentrations (0.1 mM) of both isomers of the strongly lipophilic beta-adrenoceptor antagonist propranolol inhibited the actions of all aggregators by stabilizing the membrane. Such a nonspecific membrane interaction of the methylated catecholamines could be excluded because of their low lipid solubility calculated in a n-octanol-phosphate buffer system at pH 7.4. We suggest therefore that methylated catecholamines are biological alpha 2-adrenoceptor antagonists acting on alpha 2-adrenoceptor stimulated reactions of human platelets. Whether this receptor antagonism is relevant to other human tissues needs clarification. Sulfated catecholamines, however, are wholly ineffective at this receptor site and may constitute a pathway to control the concentration of the active free catecholamines.

Adrenergic beta-Antagonists↗

Prorenin secretion from human placenta perfused in vitro.

We examined whether renin (prorenin plus renin) is secreted from the human placenta into the maternal or fetal circulation and compared the secretion rate to that of human chorionic gonadotropin (hCG), progesterone, and estradiol. While estradiol and progesterone passed into both circulations, renin (mostly prorenin) and hCG were secreted predominantly into the maternal circulation. To examine if prorenin passed from the maternal to the fetal circulation and vice versa, we perfused both circuits separately with exogenous recombinant human prorenin. No prorenin passed from maternal to fetal circulations, but a small amount (less than 10%) slowly passed from fetal to maternal, beginning 15 min after the addition of prorenin. Exogenous prorenin was not converted to renin in either circulation. Perfusate total renin had close to 10% active renin, whereas that of tissue extracts was closer to 50%. In conclusion, the results are consistent with some tissue activation of prorenin, either in vitro or in vivo, but no activation in the maternal or fetal circulations. The human placenta may secrete prorenin into the maternal but not into the fetal circulation. The possibility that the placenta may secrete a small amount of active renin into the maternal circulation was not ruled out.

Angiotensin II↗

Half-life, hemodynamic, renal, and hormonal effects of prorenin in cynomolgus monkeys.

Prorenin is found in human plasma, kidneys, and reproductive organs. We investigated the physiological and pharmacokinetic properties of plasma prorenin, and its plasma conversion to active renin, by bolus infusions of human recombinant prorenin (0.5, 2, 20 micrograms; n = 4/dose) into anesthetized male cynomolgus monkeys. The infused prorenin had 3% intrinsic renin activity. Plasma prorenin rose from 61 +/- 6 to 101 +/- 11, 570 +/- 46, and 7,700 +/- 390 ng.ml-1.h-1, respectively, after 5 min. Plasma renin increased to 3% of total renin, angiotensin II increased less than twofold, and aldosterone did not change. Plasma testosterone fell slightly (P less than 0.01). Mean arterial pressure (MAP) fell slowly from 104 +/- 3 to 93 +/- 3 mmHg at 60 min (P less than 0.001). Heart rate, glomerular filtration rate, renal plasma flow, and urinary sodium and potassium excretion were unchanged. For the 2- and 20-micrograms doses, respectively, effective half-life of plasma decay was 47 +/- 4.9 and 109 +/- 21 min (P less than 0.05), apparent volume of distribution was 145 +/- 11 and 166 +/- 35 ml/kg, and metabolic clearance rate was 2.30 +/- 0.44 and 1.08 +/- 0.14 ml.min-1.kg-1 (P less than 0.01). In conclusion, neither the hormonal nor the physiological response to infusion of pharmacologic levels of recombinant human prorenin into monkeys provide evidence for conversion of circulating prorenin to renin. MAP did not increase and actually fell without commensurate effects on renal function. The half-life of recombinant prorenin was similar to that of renin.

Aldosterone↗

Converting enzyme inhibitors and calcium antagonists in the long-term treatment of hypertension in chronic renal failure.

Hypertension contributes to the inexorable decline of renal function in patients with chronic renal impairment. Studies on the long-term use of converting enzyme inhibitors and calcium antagonists in the treatment of hypertension in patients with chronic renal failure are hereby reviewed. The data demonstrate that converting enzyme inhibitors are effective antihypertensives in diabetic nephropathy and other forms of chronic renal failure. Furthermore, the results suggest that long-term treatment with captopril may slow the progression of renal impairment in diabetic nephropathy, whereas the data are inconclusive for non-diabetic nephropathies. A reduction of proteinuria or albuminuria was also observed in most trials during long-term converting enzyme inhibition. Treatment with calcium antagonists also led to effective blood pressure control in hypertensive patients with renal disease. However, the very limited data in humans suggest no consistent beneficial effect on kidney function or proteinuria. More controlled studies are necessary to determine the relative efficacy and safety of converting enzyme inhibitors and calcium antagonists in comparison with "standard antihypertensives" in long-term antihypertensive treatment of patients with various forms of chronic renal failure.

Angiotensin-Converting Enzyme Inhibitors↗

Complete nucleotide sequences of seven eubacterial genes coding for the elongation factor Tu: functional, structural and phylogenetic evaluations.

The nucleotide sequences of cloned genes coding for the elongation factor Tu of seven eubacteria have been determined. These genes were from Anacystis nidulans, Bacillus subtilis, Bacteroides fragilis, "Deinonema" spec., Pseudomonas cepacia, Shewanella putrefaciens and Streptococcus oralis. The primary structures of the genes were compared to the available sequences of prokaryotic elongation factors Tu and eukaryotic elongation factors 1 alpha. A conservation profile was determined for homologous amino acid residues. Sites of known or putative functions are usually located at highly conserved positions or within highly conserved sequence stretches. The aligned 24 amino acid sequences were used as basis for a phylogenetic analysis. The phylogenetic tree corroborates the kingdom as well as phylum concept deduced from 16S rRNA data.

Amino Acid Sequence↗

Longitudinal study of the renin-angiotensin-aldosterone system in hypertensive pregnant women: deviations related to the development of superimposed preeclampsia.

A prospective longitudinal study of 25 pregnant women (30 pregnancies) with chronic hypertension, a group prone to development of preeclampsia, was conducted to explore the relationship between the renin-angiotensin-aldosterone system and the development of superimposed preeclampsia. In women with chronic hypertension in whom preeclampsia did not develop (17 pregnancies), blood pressure decreased and the renin-angiotensin-aldosterone system was stimulated, beginning in the first trimester and continuing throughout pregnancy as found previously in normotensive pregnant women (n = 58). Plasma estradiol and progesterone levels also increased progressively. In women with chronic hypertension in whom preeclampsia developed (13 pregnancies), blood pressure decreased and the renin-angiotensin-aldosterone system was stimulated in the first trimester as in the other groups. However, later in pregnancy significant differences were observed. Blood pressure began to rise in the second trimester. Initially the renin-angiotensin-aldosterone system remained stimulated, but in the early third trimester, when preeclampsia was diagnosed, plasma renin activity and urine aldosterone excretion decreased, and atrial natriuretic factor increased. These data provide information that may be useful in the recognition of superimposed preeclampsia, and in the investigation of its pathogenesis.

Adult↗

Infusion of recombinant human prorenin into rhesus monkeys. Effects on hemodynamics, renin-angiotensin-aldosterone axis and plasma testosterone.

Prorenin, the biosynthetic precursor of active renin, is present in high concentrations in the kidney and reproductive organs. We have proposed that prorenin may be the vehicle of local renin systems, separating the functions of circulating and tissue renin. In the present study, we investigated the effect of increasing plasma prorenin 3- to 4-fold by infusing recombinant prorenin, 400 ng/min for 40 min, into male rhesus monkeys. The prorenin was first warmed to 37 degrees C to reduce the endogenous renin activity to a minimum. The study included a 20 min baseline and a 40 min recovery period. Plasma prorenin increased from 72 +/- 14 ng/mL/h to a maximum of 246 +/- 18 ng/mL/h during the infusion (P less than .001) and fell to 169 +/- 23 ng/mL/h 40 min after the infusion was stopped. Active renin did not change significantly. Plasma aldosterone increased slightly during the prorenin infusion (by 13%) and returned to baseline during the recovery period (P less than .05 compared to the infusion period). Plasma testosterone fell significantly from 1.9 +/- 0.1 ng/mL to 1.6 +/- 0.1 ng/mL during the infusion and further to 1.4 +/- 0.1 ng/mL during the post-infusion period (P less than .05). Blood pressure fell slightly but not significantly. Heart rate, glomerular filtration rate and renal blood flow, as well as urine flow and urine sodium and potassium excretion showed no significant change. These results demonstrate that human recombinant prorenin is not converted to active renin in the circulation of rhesus monkeys.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensinogen↗

Tissue levels of active and total renin, angiotensinogen, human chorionic gonadotropin, estradiol, and progesterone in human placentas from different methods of delivery.

The components of the renin system are present in placental tissue, but their function in this tissue is not known. We investigated the relative distribution of the various components throughout the placenta to determine whether the distribution is consistent with a role for them in parturition or in stimulation or inhibition of placental hormone biosynthesis. Thus, active and total renin were measured in fetal membranes (chorion laeve and amnion) and in discoid placenta (chorion frondosum and chorion plate) of women who were delivered vaginally (n = 12) or by cesarean section with (n = 6) or without labor (n = 9). The interrelationships between active and total renin and angiotensinogen, progesterone, hCG, and estradiol concentrations were investigated. Labor had no significant effect on the concentration of active or total renin, angiotensinogen, hCG, or estradiol in any part of the placenta. Tissue progesterone concentrations were higher in placentas from women who underwent vaginal deliveries than in those who had cesarean sections with or without labor (P less than 0.02). The chorion laeve had 20 times more total renin per g than the discoid placenta and 3 times more than the amnion. In contrast the discoid placenta had 5 times more hCG per g and 3 times more progesterone per g than the fetal membranes. The concentration of estradiol was lower in amnion, while that of angiotensinogen was lower in the chorion frondosum than in all other regions. The tissue concentrations of active renin, prorenin, or total renin were not related to those of any of the other hormones. Altogether these data do not provide evidence of a role for the placental renin system in parturition or placental hormone biosynthesis.

Angiotensinogen↗

3- and 4-O-sulfoconjugated and methylated dopamine: highly reduced binding affinity to dopamine D2 receptors in rat striatal membranes.

The binding properties of 3- and 4-O-sulfo-conjugated dopamine (DA-3-O-S, DA-4-O-S) as well as 3-O-methylated dopamine (MT) to rat striatal dopamine D2 receptors were investigated. 3H-spiperone was used as a radioligand in the binding studies. In saturation binding experiments (+)butaclamol, which has been reported to bind to dopaminergic D2 and serotoninergic 5HT2 receptors, was used in conjunction with ketanserin and sulpiride, which preferentially label 5HT2 and D2 receptors, respectively, in order to discriminate between 3H-spiperone binding to D2 and to 5HT2 receptors. Under our particular membrane preparation and assay conditions, 3H-spiperone binds to D2 and 5HT2 receptors with a maximal binding capacity (Bmax) of 340 fmol/mg protein in proportions of about 75%:25% with similar dissociation constants KD (35 pmol/l; 43 pmol/l). This result was verified by the biphasic competition curve of ketanserin, which revealed about 20% high (KD = 24 nmol/l) and 80% low (KD = 420 nmol/l) affinity binding sites corresponding to 5HT2 and D2 receptors, respectively. Therefore, all further competition experiments at a tracer concentration of 50 pmol/l were performed in the presence of 0.1 mumol/l ketanserin to mask the 5HT2 receptors. DA competition curves were best fitted assuming two binding sites, with high (KH = 0.12 mumol/l) and low (KL = 18 mumol/l) affinity, present in a ratio of 3:1. The high affinity binding sites were interconvertible by 100 mumol/l guanyl-5-yl imidodiphosphate [Gpp(NH)p], resulting in a homogenous affinity state of DA receptors (KD = 2.8 mumol/l).2+ off

Animals↗