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Complexities in ETS-domain transcription factor function and regulation: lessons from the TCF (ternary complex factor) subfamily. The Colworth Medal Lecture.

The ETS-domain transcription factor family can be divided into a series of subfamilies. Elk-1 represents the founding member of the ternary complex factor (TCF) subfamily. By focusing on the TCF subfamily, we can demonstrate the complexities that exist in the function and regulation of ETS-domain transcription factors. This article focuses on Elk-1 in detail and summarizes the functions of other TCFs. The key themes covered include the domain structure of the TCFs, the mechanisms of complex formation with serum response factor, regulation of TCFs by mitogen-activated protein kinase cascades, and transcriptional regulatory properties of the TCFs. Finally, the emerging role of the TCFs in vivo is discussed. A picture is developing indicating that, while these proteins exhibit significant sequence and functional conservation, key differences in their structure and regulation are being identified which may relate to unique functions of these proteins in vivo.

Amino Acid Sequence↗

Control of plasma aldosterone in infancy and childhood. A study of plasma renin activity, plasma cortisol and plasma aldosterone.

In order to elucidate the main factors controlling plasma aldosterone in infancy and childhood, plasma renin activity (PRA), plasma cortisol (PC, as a parameter of ACTH activity), plasma aldosterone (PA) and serum sodium and potassium were measured simultaneously in 84 healthy children (62 recumbent, 22 upright) ranging in age from 6 days to 16 years. 10 healthy male students served as adult controls. As compared to the controls, PRA levels were significantly higher in the children up to the age of 12 years. PA was also elevated in most children; the highest values for PA and for PRA were observed during the first 4 years of life. A significant positive correlation between PRA and PA (n = 84, r = 0,62, p less than 0.001) was found. There were no significant differences in serum sodium or potassium or in PC. All PC values were - with one exception - within the range found in healthy adults. Our results indicate that high PA values are freuqently observed in healthy children. They are mainly caused by elevated PRA. The physiological significance of increased activation of the renin-angiotensin-aldosterone system in infancy is not yet clear.

Adolescent↗

[Effects of a new vasodilator, budralazine on water drinking activity, plasma norepinephrine, plasma angiotensin II, plasma arginine vasopressin, plasma serotonin concentration, urinary aldosterone excretion rate and urinary catecholamine excretion rate in rats].

Present study was undertaken to elucidate the effects of a new vasodilatating antihypertensive drug, budralazine on water drinking behavior and humoral factors including plasma norepinephrine (NE), angiotensin II (A II), arginine vasopressin (AVP), serotonin (5-HT) concentrations, urinary aldosterone and catecholamine excretion rates. After oral budralazine administration (10 mg/kg/day, p.o., for 7 days), systolic tail blood pressure of Wistar Kyoto rats (WKY) decreased significantly. While, heart rate and water drinking activity of WKY significantly increased. Urinary catecholamine excretion rate did not change after oral administration of budralazine (10 mg/kg and 100 mg/kg/day, p.o.; for 7 days). However, significant increase in urinary aldosterone excretion rate was demonstrated. Both plasma A II and NE concentrations tended to increase after oral administration of budralazine (100 mg/kg/day). Plasma AVP and 5-HT concentrations were not influenced by budralazine. These findings suggest that budralazine acts on renin angiotensin aldosterone system as compared to that in the sympathetic nervous system.

Aldosterone↗

Relationship of basal plasma norepinephrine to blood pressure, plasma renin activity, mineralocorticoids, and plasma volume in essential hypertension.

The basal levels of plasma norepinephrine have been measured in 113 carefully characterized patients with essential hypertension, and the results have been correlated with the PRA sub-grouping and the levels of blood pressure, plasma aldosterone, plasma 18-hydroxy-deoxycorticosterone, and plasma volume. In addition, the influence of furosemide on plasma norepinephrine concentration has been assessed. Essential hypertensives, when considered as a whole, did not exhibit any significant abnormality in basal plasma norepinephrine concentration, but interesting alterations were observed in certain specific sub-groups. High renin patients had significantly elevated levels of basal plasma norepinephrine. In addition, a sub-group of the low renin population who were relatively young had reduced plasma norepinephrine conentration. In these individuals with both reduced PRA and plasma norepinephrine, the levels of both increased concomitantly to the normal range with marked salt depletion. Furosemide administration induced increases in plasma norepinephrine in all PRA sub-groups. Plasma norepinephrine correlated significantly with blood pressure in normal and low renin hypertensives, but the relationships were confined only to male subjects. Significant correlations were also observed between plasma norepinephrine and plasma aldosterine in males with normal PRA but not in the other sub-categories. No significant relationships between plasma volume and either plasma norepinephrine or blood pressure could be detected. Plasma 18-hydroxy-deoxycorticosterone was greater in males as compared with females and appeared elevated above control levels in normal and high renin essential hypertensives. Significant positive correlations between plasma aldosterone and plasma 18-hydroxy-deoxycorticosterone were observed in both males and females with normal renin hypertension. These studies have demonstrated abnormalities in basal plasma norepinephrine concentration in certain patients with essential hypertension. They also suggest that the levels of blood pressure and plasma aldosterone may be related to peripheral sympathetic activity in essential hypertension.

18-Hydroxydesoxycorticosterone↗

Antihuman plasma glutathione peroxidase antibodies: immunologic investigations to determine plasma glutathione peroxidase protein and selenium content in plasma.

Plasma glutathione peroxidase (GSHPx) (glutathione: H2O2 oxidoreductase) is a unique selenoglycoprotein. Treatment of this enzyme with glycopeptidase F partially deglycosylates it and establishes the presence of N-linked sugar moieties. Antibodies raised in a rabbit against the purified enzyme from plasma were found to be specific, noninhibitory, and capable of precipitating the enzymatic activity. The antibodies precipitated greater than 90% of the GSHPx activity of normal plasma, thus indicating that the selenoenzyme is the main if not the sole GSHPx activity of plasma. The antibodies did not precipitate RBC GSHPx. A slight cross-reactivity of the antibodies was found with rat plasma GSHPx. A GSHPx activity precipitation assay of normal plasma in the presence of selenium (Se)-deficient plasma indicates that no cross-reactive protein in the Se-deficient plasma interferes with the precipitation of the GSHPx activity from normal plasma. Thus, GSHPx protein as well as activity is deficient in plasma in the absence of Se. Antibodies against GSHPx either from RBCs or from plasma were used to specifically immunoprecipitate most of the GSHPx activity from RBCs or plasma, respectively, in healthy individuals to determine the amount of Se associated with the protein. GSHPx accounts for approximately 15% of the Se in RBCs and 12% of the Se in plasma. Thus, in normal individuals, these proteins account for only a fraction of plasma and RBC Se.

Animals↗

Lipoprotein susceptibility to oxidation in the macromolecular fraction of plasma: relation to plasma lipids and oleate/linoleate ratio in comparison with whole plasma in hypertriglyceridemia.

BACKGROUND: Susceptibility of lipoprotein to oxidation is usually studied using purified lipoproteins. However, for large clinical studies or routine clinical assessment, a rapid less time-consuming method is desirable. Therefore, we studied copper-mediated oxidation of the macromolecule fraction of plasma in comparison with oxidation directly in whole unfractionated plasma in a group of hyperlipidemic individuals. METHODS: Lag phase rate (LR), propagation phase rate (PR), lag time (LT), and maximal extent of oxidation were determined for copper-mediated oxidation in plasma from 16 hyperlipidemic individuals. Oxidation parameters obtained for whole plasma (WP) and macromolecules were subjected to correlation analysis with plasma lipid concentrations and with the oleic acid/linoleic acid ratio (18:1/18:2) in phospholipids (PL), triglycerides (TG), and cholesterol esters (CE). RESULTS: Total cholesterol (TC) concentration was significantly correlated with lag rate (negative, p<0.05), lag time (positive, p<0.01), and with maximal extent of oxidation (positive, p<0.05) for plasma macromolecules (PM). Triglyceride concentration was not significantly correlated with lag rate, lag time, or propagation rate for plasma macromolecules. Triglyceride concentration was positively correlated with the maximal extent of oxidation (p<0.01) for plasma macromolecules. In the cholesterol ester fraction, the 18:1/18:2 ratio was significantly correlated (positive, p<0.05) with lag time. Phospholipid 18:1/18:2 ratio did not correlate with oxidative parameters. This ratio in triglycerides correlated better, but statistical significance was not obtained. Parameters obtained with whole plasma did not significantly correlate with lipid values. CONCLUSIONS: Oxidation parameters obtained for plasma macromolecules correlated with lipid parameters known to be associated with oxidative susceptibility of lipoproteins and were unaffected by soluble antioxidants found in whole plasma or serum. Therefore, plasma macromolecules were superior to whole plasma for assessing lipoprotein susceptibility to oxidation. This approach will facilitate larger clinical trials by saving the time and labor involved in lipoprotein isolation.

Chemical Fractionation↗

Platelet angiotensin II binding and plasma renin concentration, plasma renin substrate and plasma angiotensin II in human pregnancy.

1. The results are presented of a cross-sectional study of 25 non-pregnant and 125 pregnant/postnatal women in whom platelet angiotensin II binding and plasma angiotensin II, plasma renin concentration and plasma renin substrate were measured. 2. Platelet angiotensin II binding was significantly lower in the first-trimester patients as compared with the non-pregnant women (P less than 0.001). Specific binding remained low in the second and third trimesters, and in those patients studied 24 h after delivery. However, higher values, approximating to the non-pregnant level, were found 6 weeks postnatally (n = 25 for each group). 3. Plasma angiotensin II, plasma renin concentration and plasma renin substrate increased in pregnancy, with the increase becoming statistically significant as compared with the non-pregnant women in the second trimester. Maximal median values of plasma angiotensin II and plasma renin substrate were found in the third trimester, but maximal median values of plasma renin concentration were found in the second trimester. The concentrations of all three hormones fell after delivery. 4. There was an inverse correlation between platelet angiotensin II binding and simultaneously measured endogenous levels of plasma angiotensin II (P less than 0.02) and plasma renin substrate (P less than 0.05) in the 25 non-pregnant subjects. These findings support the concept of the angiotensin II receptor concentration being regulated by the plasma angiotensin II level. There was no correlation between platelet angiotensin II binding and plasma renin concentration.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin II↗

Clinical chronopharmacology of ACTH 1-17. II. Effects on plasma testosterone, plasma aldosterone, plasma and urinary electrolytes (K, Na, Ca and Mg).

The aim of the investigation was to study the effects of ACTH 1-17 on plasma testosterone, plasma aldosterone as well as on both plasma and urinary electrolytes (K, Na, Mg and Ca) in healthy young adult males with regard to the time (clock hours) at which this polypeptide was injected. Eight healthy adults (males from 28 to 30 years) volunteered for the study. The were synchronized with a diurnal activity from 0700 to midnight and a nocturnal rest. Each week, during 6 consecutive weeks (January 19 to February 25, 1980) a 3-day test was performed on Saturday, Sunday and Monday. On Sundays 3 control-tests and the 3 ACTH-tests were programmed during which either saline or 100 microgram ACTH 1-17 were injected i.m. at respectively 0700, 1400 and 2100. During each 3 day-test period (72 h) the urinary excretion of K, Na, Mg and Ca was determined every 4 h at fixed clock hours. In addition, on Sundays, venous blood was sampled prior to control or ACTH injections at respectively 0700, 1400 and 2100 and 20, 40, 60, 90, 120, 150 and 180 min thereafter. Plasma testosterone, aldosterone (radioimmunoassays) K, Na (flame photometry), Mg and Ca (photocolorimetric methods) were determined in the collected samples. Both conventional and cosinor methods were used for statistical analyses. The injection of ACTH at 0700 was followed by a clear and statistically significant rise of plasma testosterone. No change with regard to control occurred when ACTH was injected at either 1400 or at 2100. A statistically significant rise of plasma aldosterone was observed after each of the ACTH injections. However, the highest plasma aldosterone level was reached when ACTH was administered at 1400 and the lowest level at 2100. ACTH-induced changes in plasma electrolytes were either nil (for Na and Ca) or small (for K and Mg). A more or less important increase of urinary K occurred after the ACTH injection at each of the 3 considered times. The highest values of excreted K occurred after the injection of ACTH at 0700, without shift of the acrophase. In contrast, injections of ACTH at 1400 and 2100 induced a dramatic alteration of the K rhythms. ACTH induced an important fall in the Na urinary excretion. This fall was the greatest when ACTH was injected at 1400. Na rhythm alterations also occurred, particularly after ACTH injections at 2100. However, this effect was less pronounced after ACTH injection at 0700 than at other considered time points. The urinary amount of excreted Ca did not seem to be affected by ACTH. Rhythm alterations occurred after ACTH injections at 1400 and 2100. Peaks of plasma testosterone, plasma aldosterone as well as plasma cortisol (reported in a previous paper) resulting from ACTH stimulation coincided in time with the acrophase of the physiological circadian rhythm in plasma levels of these hormones...

Adolescent↗

Iron and zinc nutriture of premenopausal women: associations of diet with serum ferritin and plasma zinc disappearance and of serum ferritin with plasma zinc and plasma zinc disappearance.

The Second National Health and Nutrition Examination Survey found low iron and zinc intakes and low serum ferritin in many premenopausal women. Therefore food frequency history, serum ferritin, plasma zinc, plasma zinc disappearance, and zinc turnover rate were measured in healthy premenopausal women. Plasma zinc disappearance and turnover rate were determined by inductively coupled plasma mass spectroscopic analysis of the plasma ratio of zinc 67 to zinc 68 before and 30 to 60 minutes after intravenous injection of 67Zn. Food frequency predicted serum ferritin concentration in 38 women and plasma zinc disappearance in 19. Frequent red meat intake was associated with higher serum ferritin concentration and a "normal" plasma zinc disappearance. Frequent milk intake was associated with lower serum ferritin concentration and a rapid plasma zinc disappearance. After exclusion of an outlier, in 18 women serum ferritin concentrations were lower when plasma zinc was < 70 micrograms/dl (p < 0.03), and plasma zinc disappearance and turnover rate were higher when serum ferritin was < 20 ng/ml (p < 0.05). Serum ferritin concentration and plasma zinc disappearance constant were inversely and nonlinearly related (R2 = 0.777, p = 0.0003). These findings suggest that avoidance of red meat increases the risk of iron and zinc deficiencies, and low serum ferritin concentrations suggest the possibility of low zinc nutriture.

Adult↗

Formation of an association between factor XII and kallikrein in human plasma--significance of storage of plasma and the functional state of plasma kallikrein.

In a previous study evidence was provided that zymogen FXII might associate with part of the kallikrein generated by acetone treatment of human plasma in the presence of benzamidine (Thromb. Res. 61, 123-133, 1991). Some results also suggested an increase in such a complex formation upon storage of plasma, and two questions were raised in the present study: Does kallikrein activated by acetone-treatment of plasma exist in modifications with different abilities to associate with FXII? And will -70 degrees storage of plasma increase the liability to complex formation? S-2302 amidase assays carried out in mixtures of normal plasma and plasma genetically deficient in prekallikrein (PK) suggested an inhomogeneity of the kallikrein generated. A minor and unstable part of it could be blocked by corn trypsin inhibitor, thus indicating the presence of an association with FXII. In fractions from gel filtration of acetone-activated plasma, kallikrein was assayed as S-2302 amidase, high molecular weight kininogen (HK) was measured in rocket immunoassay, and FXII, PK and HK were studied in PAGE immunoblot experiments. When freshly collected plasma was used, an amidase double peak (mol. wts. 400 and 300 kD) indicated an inhomogeneity of the kallikrein present, HK being observed in both peaks. FXII eluted separately over a gel. mol. wt. range of 90-55 kD. When plasma was stored at -70 degrees for 10 months before use, the more low-molecular part of the kallikrein double-peak had disappeared and was recovered, in a highly unstable state, adsorbed to the column material together with HK and FXII. Accordingly both functional assays and the results of immunoblot experiments indicated an inhomogeneity of the kallikrein present, and also a tendency of the minor part of it to associate with FXII, a tendency increased upon storage of plasma at -70 degrees.

Acetone↗

Relationship of basal plasma noradrenaline to blood pressure, age, sex, plasma renin activity and plasma volume in essential hypertension.

1. The relationship of basal plasma noradrenaline to blood pressure, age, sex, urinary sodium excretion, and plasma volume has been examined in 117 untreated ambulatory patients with essential hypertension. 2. No significant correlations between basal plasma noradrenaline and either age or sex were apparent in the total group of essential hypertensive patients. In addition, no significant correlations were observed between plasma noradrenaline and 24 h urinary sodium excretion. 3. Basal plasma noradrenaline concentration was significantly higher in high renin essential hypertensive subjects compared with those with normal or low plasma renin activity. 4. Plasma noradrenaline was reduced significantly in relatively young patients with low renin essential hypertension, but appeared to be normal in other low renin subjects. 5. Basal plasma noradrenaline correlated significantly with blood pressure in patients with normal or low renin essential hypertension but the relationships were only significant in male patients. 6. No significant relationship between basal plasma noradrenaline and either blood pressure or plasma volume could be demonstrated in this population of essential hypertensive patients.

Age Factors↗

Amphotericin B lipid complex or amphotericin B multiple-dose administration to rabbits with elevated plasma cholesterol levels: pharmacokinetics in plasma and blood, plasma lipoprotein levels, distribution in tissues, and renal toxicities.

The purpose of the present study was to determine if a relationship exists between the plasma cholesterol concentration, the severity of amphotericin B (AmpB)-induced renal toxicity, and the pharmacokinetics of AmpB in plasma in hypercholesterolemic rabbits administered multiple doses of amphotericin B (AmB) deoxycholate (Doc-AmB) and AmB lipid complex (ABLC). After 7 days of administration of a cholesterol-enriched diet (0.50% [wt/vol]) or a regular rabbit diet, each rabbit was administered a single intravenous bolus of Doc-AmB (n = 8) or ABLC (n = 10) (1.0 mg/kg of body weight) daily for 7 consecutive days (a total of eight doses). Blood samples were obtained daily before and 24 h after the administration of each dose and serially thereafter following the administration of the last dose for the assessment of pharmacokinetics in plasma, kidney toxicity, plasma lipoprotein levels, and drug distribution in tissue. The pharmacokinetics of AmB in blood following the administration of ABLC were also determined in rabbits fed cholesterol-enriched and regular diets (n = 3 each group). Before drug treatment, cholesterol-fed rabbits demonstrated marked increases in total, low-density lipoprotein (LDL), and triglyceride-rich lipoprotein (TRL) cholesterol levels in plasma compared with the levels in rabbits on a regular diet. No significant differences in total plasma triglyceride levels were observed. Significant increases in plasma creatinine levels were observed in rabbits fed a cholesterol-enriched diet (P < 0.05) and rabbits fed a regular diet (P < 0.05) when administered AmB. However, the magnitude of this increase was twofold greater in rabbits fed a regular diet than in rabbits fed a cholesterol-enriched diet. An increase in plasma creatinine levels was observed only in rabbits on a cholesterol-enriched diet administered ABLC. The pharmacokinetics of AmB were significantly altered in rabbits on a cholesterol-enriched diet administered Doc-AmB or ABLC compared to those in rabbits on a regular diet administered each of these compounds. The pharmacokinetics of AmB in blood were significantly different following ABLC administration but not following Doc-AmB administration in both rabbits fed cholesterol-enriched diets and rabbits fed regular diets compared to their corresponding pharmacokinetics in plasma. An increased percentage of AmB was recovered in the TRL fraction when Doc-AmB was administered to rabbits fed a cholesterol-enriched diet than when it was administered to rabbits fed a regular diet. Furthermore, an increased percentage of AmB was recovered in the LDL and TRL fractions when ABLC was administered to rabbits fed a cholesterol-enriched diet rabbits fed a regular diet. These findings suggest that an increase in plasma cholesterol levels modifies the pharmacokinetics of AmB and renal toxicity following the administration of multiple intravenous doses of Doc-AmB and ABLC.

Amphotericin B↗

Effects of increases in plasma vasopressin concentration on plasma renin activity, blood pressure, heart rate, and plasma corticosteroid concentration in conscious dogs.

It is known that vasopressin decreases PRA and heart rate and increases blood pressure and plasma corticosteroid concentration. The purpose of this study was to determine the plasma concentration of vasopressin required to produce these effects. Arginine vasopressin was administered iv to five normal conscious dogs as priming injections of 0.1, 0.5, 1.0, 2.5, 5.0, and 10.0 ng/kg, followed by infusions of 0.01, 0.05, 0.1, 0.25, 0.5, and 1.0 ng/kg x min, respectively, for 30 min. These doses produced increases in the plasma vasopressin concentration (+/- SE) of 1.0 +/- 0.8, 2.1 +/- 4.3, 4.3 +/- 1.8, 11.4 +/- 1.0, 19.7 +/- 6.4, and 30.8 +/- 7.8 pg/ml, respectively, from a basal level of 2.7 +/- 0.2 pg/ml. An increase in the plasma vasopressin concentration of 2.1 +/- 0.3 pg/ml suppressed PRA by 19 +/- 5% (P < 0.02); increases of 4.2 +/- 1.8 pg/ml or more suppressed PRA by 34 +/- 12% (P < 0.005). Only the highest dose of vasopressin produced a significant pressor effect (9 +/- 3 mm Hg; P < 0.05) or lowered the heart rate (18 +/- 4 beats/min; P < 0.005). An increase in plasma vasopressin concentration of 19.7 +/- 6.4 pg/ml was required to increase the plasma corticosteroid concentration (1.2 +/- 0.2 to 2.2 +/- 0.4 microgram/dl; P < 0.01); the largest dose of vasopressin increased the plasma corticosteroid concentration from 1.5 +/- 0.1 to 2.4 +/- 0.6 microgram/dl (P < 0.02). Twenty-four-hour water deprivation in the same dogs increased the plasma vasopressin concentration from 2.5 +/- 0.2 to 7.4 +/- 0.6 pg/ml (P < 0.01). Nonhypotensive hemorrhage in another group of dogs increased the plasma vasopressin concentration from 2.5 +/- 0.2 to 47.4 +/- 16.8 pg/ml (P < 0.05). These data indicate that elevations in the plasma vasopressin concentration within the range observed during 24 h of water deprivation and nonhypotensive hemorrhage produced significant decreases in renin secretion and heart rate and elevations in blood pressure and corticosteroid secretion.

Adrenal Cortex Hormones↗

Effect of haemodialysis on plasma ADH levels, plasma renin activity and plasma aldosterone levels in patients with end-stage renal disease.

Changes in plasma ADH levels and plasma aldosterone levels (PA) were studied in patients with end-stage renal disease (N = 40). The patients were divided into two groups according to their plasma renin activity (PRA) into a low renin (LR, n = 9) and a high renin group (HR, n = 31). The metabolic clearance rate (MCR) of plasma ADH was also investigated in 4 patients and 5 normal volunteers. Additionally, it was examined whether plasma ADH, aldosterone and renin were permeable through the dialysis membrane. Pre- and post-dialysis plasma ADH levels in LR were similar to those in the HR group. However, pre- and post-dialysis PA in the HR group were significantly greater than those in the LR group. Post-dialysis PRA was significantly increased in HR compared to pre-dialysis, but not in LR. Pre- and post-dialysis plasma osmolality was increased in both groups, but effective plasma osmolality (EPosm) was within the normal range. There was a significant correlation between EPosm and plasma ADH level both before and after haemodialysis, but the majority of the abnormally high values of ADH compared to the normal values was found within the normal range of EPosm. The patients exhibited high blood pressure and a rise in body weight, and haemodialysis caused a significant fall in body weight and blood pressure in both groups. MCR of ADH was significantly lower in the patients than that in normal subjects. Plasma ADH proved to be permeable through the dialysis membrane in all cases, but aldosterone in only a few cases. Renin was not permeable.

Adolescent↗

Changes in plasma renin substrate, plasma and renal renin, and plasma osmolarity during glycerol-induced acute renal failure in rabbits.

Seven groups of rabbits were studied before or at various intervals after the subcutaneous administration of 50 percent glycerol in isotonic saline (14 ml/kg). A sharp increase in plasma crystalloid osmolarity, due to glycerol reabsorption from the subcutaneous tissue, was detected at 1.5 and 6 hours and was maximal between 12 and 20 hours. Plasma renin activity did not change at 1.5 hours, but it was significantly elevated at 6 hours and maximally increased between 12 and 20 hours. The increase of plasma crystalloid osmolarity might contribute to renin release in this experimental model. Changes in renal renin levels after the administration of glycerol were not significant, although lower renal renin values were consistently found in rabbits with more severe impairment of renal function. Plasma renin substrate increased later than plasma renin activity (20 hours) and remained high after plasma renin activity had returned to normal (48 hours). The increase of plasma renin substrate was interpreted as mainly due to the impairment of renal function, since a positive correlation was found between plasma creatinine and plasma renin substrate.

Acute Kidney Injury↗

Prognostic value of plasma catecholamines, plasma renin activity, and plasma atrial natriuretic peptide at rest and during exercise in congestive heart failure: comparison with clinical evaluation, ejection fraction, and exercise capacity.

Survival in congestive heart failure is related to plasma catecholamines and atrial natriuretic peptide at rest, but the prognostic importance of changes during exercise is unknown. The aim of this study was to evaluate the prognostic value of catecholamines and atrial natriuretic peptide at rest and during maximal exercise in congestive heart failure, and to compare it to clinical and exercise test variables and left ventricular ejection fraction. One hundred ninety consecutive patients (136 men and 54 women; median age, 66 years; range, 42-75 years) with clinically stable congestive heart failure were included. Sixteen patients were in New York Heart Association class I, 87 in class II, 83 in class III, and 4 in class IV. Left ventricular ejection fraction was 0.30 (range, 0.06-0.74). Total survival after 1 year was 79%, after 2 years, it was 68%. Prognostic variables at univariate analysis were: plasma noradrenaline at rest (P < .0001), plasma adrenaline at rest (P = .049), and atrial natriuretic peptide at rest (P = .016). During exercise, plasma catecholamines and plasma atrial natriuretic peptide increased significantly; the change, however, was not related to survival. Six variables carried significant, independent prognostic information in a multivariate analysis: left ventricular ejection fraction (P = .03), plasma noradrenaline at rest (P = .009), New York Heart Association class III + IV (P = .005), increase in heart rate during exercise < or = 35 min-1 (P < .0001), serum creatinine > 121 mumol/L (P = .004), and serum urea > 7.6 mmol/L (P = .007). Patients with congestive heart failure have a poor survival despite intensive medical treatment. Plasma catecholamines and plasma atrial natriuretic peptide are elevated at rest and rises further during exercise; the increase, however, is not related to mortality. Plasma noradrenaline at rest contributes with further prognostic information despite knowledge of clinical and exercise variables and was the only neurohormonal variable with independent, significant prognostic information on survival.

Adult↗

Effect of divergent selection for total plasma phosphorus on plasma and yolk very low density lipoproteins and plasma concentrations of selected hormones in laying Japanese quail.

Japanese quail lines were divergently selected over 32 generations for laying hen plasma yolk precursor, as measured by total plasma phosphorus (TPP). The high (HP) and low (LP) lines were developed from a randombred control population (R1) that was maintained without conscious selection. The purpose of the present study was to characterize the composition of very low density lipoproteins (VLDL) in laying Japanese quail hens (VLDLy) and the concentration of selected hormones in laying hens from the HP, LP, and R1 lines. The changes in TPP because of genetic selection in the Japanese quail lines were associated with large alterations in plasma VLDLy concentration (HP > R1 > LP), but only minor changes in lipid composition and size (HP > LP = R1; P< or =0.01) of plasma VLDLy particles. Basal plasma levels of hormones associated with reproduction and lipid metabolism were also different among lines, with luteinizing hormone (LH) ranking HP >R1 = LP and triiodothyronine (T3), thyroxine (T4), and 17beta-estradiol ranking HP > R1 > LP (P< or =0.05). The results suggest possible increased rates of hepatic lipogenesis, hepatic VLDLy assembly and secretion, and plasma VLDLy concentration in association with increases in concentrations of plasma LH, T3, T4, and 17beta-estradiol. Concentrations of total lipids in yolk VLDL were not different among lines, and only minor line differences in the concentration of different classes of yolk VLDL neutral lipids were detected. The data indicate a preferential uptake of a specific plasma VLDLy subpopulation into rapidly growing ovarian follicles, resulting in a constant composition of yolk VLDL of laid eggs among lines of Japanese quail with large differences in plasma VLDLy concentration.

Animals↗

Plasma growth hormone suppressive effect of bromocriptine in acromegaly. Evaluation by plasma GH day profiles and plasma GH concentrations during oral glucose tolerance tests.

In most studies reporting favourable results of chronic bromocriptine treatment in acromegaly, plasma GH levels are measured at fixed intervals during the day. Negative results are reported in one major study measuring plasma GH levels during oral glucose tolerance tests (Lindholm et al., 1981). This study does not mention the time interval between the last dose of bromocriptine and the performance of an OGTT, but due to the short duration of action of bromocriptine this may be critical. Therefore, in the present report the plasma GH suppressive effect of bromocriptine in acromegaly is studied using plasma GH day-profiles as well as OGTT's during continued bromocriptine administration and OGTT's at two different time intervals after the last dose of bromocriptine. Twelve patients with clinically active acromegaly were treated with 10-20 mg bromocriptine for 6-9 months. After 6-9 months during continued bromocriptine administration the plasma GH suppressive effect of bromocriptine was evaluated by the mean of four plasma GH determinations during the day and by the mean of seven plasma determinations during oral glucose tolerance tests (OGTT's) performed 1 h, 10 h and 34 h after the last dose. The percentage decrease of the mean plasma GH level during the day induced by chronic bromocriptine treatment showed a good correlation (r = 0.86, P less than 0.001) with the percentage decrease of the mean plasma GH level during OGTT, if the post-treatment test was carried out one hour after the last dose of bromocriptine.(ABSTRACT TRUNCATED AT 250 WORDS)

Acromegaly↗