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Relationship between plasma aldosterone concentration and plasma potassium in patients with essential hypertension during alprenolol treatment.

Plasma aldosterone concentration (PAC), plasma renin concentration (PRC), plasma potassium, plasma sodium and blood pressure (BP) have been measured in 22 patients with essential hypertension before and after treatment for one month with alprenolol. PAC, PRC and BP decreased and plasma potassium increased significantly during treatment. Plasma sodium, however, was unchanged. Changes in PAC were inversely correlated to changes in plasma potassium. No relationship could be demonstrated between PAC and plasma sodium. Mean BP was inversely correlated to PAC during alprenolol treatment, but bot before treatment. No relationship was found between changes in BP and changes in PRC. The results suggest that plasma potassium is an important regulatory factor for aldosterone secretion during alprenolol treatment. Other factors, however, must have a modulating influence and since the renin- angiotensin system is not suppressed to very low values, this system is possibly the most important of these factors. It is suggested that aldosterone secretion is not of primary importance in BP regulation during alprenolol treatment.

Adult↗

Guanfacine in essential hypertension: effect on blood pressure, plasma noradrenaline concentration and plasma renin activity.

1. The acute and chronic effects of guanfacine on blood pressure, plasma noradrenaline concentration and plasma renin activity were investigated in 23 patients (15 males, 8 females) with essential hypertension (WHO grade I-II). 2. Guanfacine induced a decrease in plasma noradrenaline concentration and plasma renin activity concomitant with a fall in blood pressure and heart rate in both the acute and the chronic study. 3. The adrenergic response to upright posture, reflected by an increase in plasma noradrenaline concentration and plasma renin activity, was not abolished after chronic guanfacine therapy. 4. The decrease in blood pressure 15 min after intravenous administration of guanfacine was inversely correlated with the basal sympathetic activity before treatment and with the decrease in plasma noradrenaline. 5. After chronic treatment with guanfacine no significant correlation existed between blood pressure reduction and the concomitant changes in peripheral sympathetic and/or plasma renin activity. 6. Despite the lack of a close correlation it is suggested that the antihypertensive effect of guanfacine in patients with essential hypertension is at least partially mediated by an inhibition of the sympathetic nervous and plasma renin activity.

Adult↗

Effects on plasma and brain tryptophan in the rat of drugs and hormones that influence the concentration of unesterified fatty acid in the plasma.

1 The effects on tryptophan distribution and metabolism of drugs altering plasma unesterified fatty acid (UFA) concentration were investigated in the rat.2 UFA and plasma free (i.e. ultrafilterable) tryptophan altered in the same direction.3 Catecholamines and L-DOPA increased both plasma UFA and free tryptophan. L-DOPA also increased brain tryptophan and 5-hydroxyindoleacetic acid (5-HIAA) but decreased brain 5-hydroxytryptamine (5-HT).4 Aminophylline increased plasma UFA and free tryptophan and also brain tryptophan, 5-HT and 5-HIAA. Food deprivation had qualitatively similar effects.5 Insulin decreased plasma UFA and free tryptophan in both fed and food-deprived rats. However, while in fed rats these changes were associated with small decreases of brain indoles, in food-deprived animals small increases occurred.6 Nicotinic acid had only small effects in fed rats but it opposed both the UFA and indole changes in food-deprived animals. Total plasma tryptophan increased in nicotinic acid treated, food-deprived rats.7 There was a tendency towards inverse relations between changes of plasma free and total tryptophan.8 The results suggest that drugs which influence plasma UFA through actions on cyclic AMP thereby alter the binding of tryptophan to plasma protein and that this leads to altered distribution and metabolism of tryptophan.

Aminophylline↗

Decreased plasma sensitivity to activated protein C by oral contraceptives is associated with decreases in plasma glucosylceramide.

Oral contraceptive (OC) use increases venous thrombosis (VTE) risk and causes activated protein C (APC) resistance. Plasma glucosylceramide (GlcCer) deficiency is associated with VTE and GlcCer functions as an APC anticoagulant cofactor. Because estradiol decreases GlcCer in cultured cells, we hypothesized OC use would decrease plasma GlcCer and contribute to APC resistance. In a pilot study, seven female adults alternatively took second and third generation OCs and plasma samples were analyzed for GlcCer using high performance liquid chromatography and for APC sensitivity using modified prothrombin time assays. Second and third generation OC usage decreased the APC sensitivity ratio by 8.1% +/- 4.7% (P = 0.004) and 11.7% +/- 8.2% (P = 0.013) and plasma GlcCer levels by 10.1% +/- 6.8% (P = 0.008) and 11.0% +/- 5.1% (P = 0.002), respectively. The plasma GlcCer level correlated with the sensitivity of plasma to APC (P = 0.017, r = 0.51, n = 21 plasma samples). Thus, both second and third generation OC usage decreased plasma GlcCer which could cause a reduction in the plasma sensitivity to APC/protein S, thereby potentially increasing VTE risk.

Activated Protein C Resistance↗

Lactoferrin in plasma measured by an ELISA technique: evidence that plasma lactoferrin is an indicator of neutrophil turnover and bone marrow activity in acute leukaemia.

This study describes an ELISA technique with high specificity, sensitivity, accuracy and reproducibility for measurements of plasma lactoferrin. The detection limit was 0.001 microgram/ml and the median value obtained in EDTA plasma from 47 healthy adults was 0.100 microgram/ml (0.05 fractile: 0.046 microgram/ml, 0.95 fractile: 0.257 microgram/ml). The lactoferrin concentration in serum was on the average 2 1/2 times higher than in plasma. The ambient temperature did not influence the plasma concentration during the first 6 h from blood sampling to separation of plasma from the cells. In 8 patients with untreated acute leukaemia plasma lactoferrin was positively correlated to the peripheral neutrophil count. An almost parallel course in plasma lactoferrin and peripheral neutrophil number was observed in 4 patients with AML during chemotherapy. In 2 patients achieving complete remission, plasma lactoferrin increased about 6 d before the concomitant increase in neutrophil count, suggesting plasma lactoferrin as an early predictor of bone marrow regeneration.

Adolescent↗

Assessment of bone turnover in the dry period of dairy cows by measurement of plasma bone GLA protein, total plasma alkaline phosphatase activity and urinary hydroxyproline.

Plasma osteocalcin, or plasma bone GLA protein (BGP), total plasma alkaline phosphatase activity and urinary hydroxyproline excretion of twenty-four pregnant dairy cows (thirteen in their first or second pregnancy, i.e. low parity, and eleven in their third or more pregnancies, i.e. high parity) were measured from 7 weeks before parturition until 1 week after parturition. Seven weeks before parturition the cows' ration was changed to one containing either 0.22% magnesium (low magnesium, LMg) or 0.82% magnesium (high magnesium, HMg) in the dry matter, and the potassium content of both rations was increased to approximately 4.1% in the dry matter to reduce the absorption of magnesium. Plasma BGP levels decreased significantly (P less than 0.01) as parturition approached while total plasma alkaline phosphatase activity and urinary hydroxyproline excretion did not. Magnesium supply and parity had no significant effect on this decrease. The overall plasma concentration of BGP, total plasma alkaline phosphatase activity and the urinary hydroxyproline/creatinine ratio in the prepartum period were affected by parity (P less than 0.05) with higher values in the lower parity cows. A significant positive correlation (r = 0.58, P less than 0.01) was found in all cows between plasma BGP level at parturition and the percentage of the bone surface covered with osteoblasts; however, plasma BGP was not correlated either with other histomorphometric variables or with total alkaline phosphatase activity during this time.

Alkaline Phosphatase↗

Short-term fluctuations in the concentration of cortisol and progesterone in fetal plasma, maternal plasma, and amniotic and allantoic fluids from sheep during late pregnancy.

Fluctuations in the concentrations of cortisol and progesterone in fetal plasma, maternal plasma, and amniotic and allantoic fluids were measured in samples taken at 10-min intervals over a 90-min period from three groups of sheep sampled at different times during late pregnancy. During the last 30 days of gestation there was a significant rise in the mean concentration of cortisol in fetal plasma and amniotic fluid and a significant correlation between the cortisol concentration in these two fluids. The concentration of cortisol in allantoic fluid exceeded that in amniotic fluid. The concentration of cortisol in fetal plasma varied in a pulsatile manner, however the coefficient of variation (CV) within animals was greater (36%) on days -11 to -20, relative to the day of parturition (day 0), than on days -21 to -30 or days -5 to 0(15-19%). The CV values for cortisol in amniotic fluid and maternal plasma during the last 30 days of pregnancy were 20-50% and two at five times greater than the intraassay CV. The concentration of progesterone in amniotic fluid increased after day -20 but was not correlated with that in maternal plasma or fetal plasma. The concentrations of progesterone in paired samples of amniotic fluid and allantoic fluid were similar. The CV values for progesterone (18-34%) were similar in fetal and maternal plasma and amniotic fluid and did not change significantly during late pregnancy. Changes in the concentration of progesterone were unrelated to changes in cortisol. Interpretation of steroid profiles in fetal plasma and fluids through late pregnancy should take into account these short-term fluctuations in hormone concentrations.

Allantois↗

Regulation of plasma lipid levels by plasma viscosity in nephrotic rats.

The viscosity of the extracellular medium of cultured hepatocytes has been shown to be a regulator of the secretion and synthesis of very low-density lipoproteins (Yedgar et al., J. Biol. Chem. 257: 2188-2192, 1982). At present, the role of plasma viscosity in regulation of plasma lipoprotein levels was examined in vivo using nephrotic hyperlipidemic rats. Plasma viscosity was increased by injection of macromolecules: simultaneously with induction of nephrosis by aminonucleoside; and after the lipid level had reached its maximum. In experiment 1 the elevation of plasma viscosity (which persisted for at least 2 days) delayed the development of the hyperlipidemia by at least 2 days. In experiment 2 increasing the plasma viscosity reduced plasma triglyceride and cholesterol levels by 70 and 40%, respectively, within 2 days. The hyperlipidemia was accompanied by increased plasma viscosity. The contribution of lipoproteins to plasma viscosity was 27% in the nephrotic-hyperlipidemic rats, compared with 4% in normal rats. It is suggested that plasma viscosity regulates lipoprotein levels in vivo concordant with the observation in cultured hepatocytes.

Animals↗

Plasma norepinephrine in humans: limitations in assessment of whole body norepinephrine kinetics and plasma clearance.

To investigate catecholamine residence in plasma, constant intravenous infusions of increasing duration (20, 40, and 80 min) of [3H]norepinephrine [( 3H]NE), [3H]isoproterenol [( 3H]IP) IP) and a reference substance: 131I-labeled hippurate were performed in six normal volunteers. In contrast to [3H]IP and 131I-hippurate, whole body clearance from plasma of [3H]NE, as obtained from infusion rate divided by plasma concentration of tracer [1.74 +/- 0.64 (SD) 1/min] was significantly higher than the value obtained by total tracer infusion divided by total plasma area of tracer (1.27 +/- 0.51, P less than 0.01). Mean residence time in plasma (theta) after stopping the infusion of [3H]NE increased along an almost straight line with progressive infusion time, theta of 131I-hippurate increased less, and constant values were recorded after 40 min infusion of [3H]IP. Our results suggest the presence of a very large (cellular) pool from which a reversible transport of [3H]NE back into plasma takes place. The plasma clearance of tracer NE, as determined from infusion rate and plasma concentration of tracer, includes transport to and accumulation in this large store. Thus the "final metabolic clearance," reflecting irreversible removal of NE, is smaller than previously estimated due to recycling through the plasma space. Attention has been drawn to limitations of [3H]NE kinetics.

Adult↗

Restraint stress decreases afternoon plasma prolactin levels in female rats. Influence of neural antagonists and agonists on restraint-induced changes in plasma prolactin and corticosterone.

Female Sprague-Dawley rats were ovariectomized, given estrogen, and blood samples were obtained via an atrial catheter in the afternoon during the prolactin (PRL) surge. Restraint stress applied at 16.00 h and continued for 3 h resulted in marked decrease in plasma prolactin (PRL) and an increase in plasma corticosterone (B). The neural mechanism(s) involved in the plasma PRL decrease to restraint stress in the afternoon were examined using neural agonists and antagonists. The administration of pimozide, a dopamine antagonist, increased plasma PRL and completely prevented the restraint-induced decrease in PRL. This result suggested that an increase in dopamine secretion mediated the stress-induced decrease of PRL in the afternoon. In unrestrained animals, the intravenous administration of atropine (a muscarinic cholinergic antagonist), arecoline (a muscarinic cholinergic agonist), propranolol (a beta-adrenergic antagonist) and morphine (a beta-endorphin agonist) at 16.00 h decreased plasma PRL from that of vehicle-injected animals. Bicuculline (a GABAergic antagonist) had no effect while phentolamine (an alpha-adrenergic antagonist) and phenoxybenzamine (an alpha-adrenergic antagonist) initially increased and then decreased plasma PRL. Naloxone (a beta-endorphin antagonist) initially decreased and then increased plasma PRL in unrestrained animals. In restrained animals, the intravenous administration of atropine and naloxone had no effect on the decrease in plasma PRL. Bicuculline and propranolol decreased plasma PRL below that observed for restrained animals alone, while phentolamine and morphine slightly retarded the course of the decrease. Arecoline did not alter the PRL decrease to restraint in the early sample periods but was followed by a rebound increase at later times.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of chronic ethanol administration on gamma-glutamyltransferase activities in plasma and in hepatic plasma membranes of male and female rats.

The effects of chronic ethanol administration on the activities of gamma-glutamyltransferase (GGT) in plasma and in hepatic plasma membranes of male and female rats are studied. The effects of alcohol on the lipid level in plasma are also investigated. After 4 weeks of treatment, GGT activity significantly increases in plasma either in male rats (131%, p less than 0.02) or in female ones (64%, p less than 0.05). In addition, chronic alcohol consumption simultaneously increases beta-lipoprotein and triglyceride levels in plasma only in male rats (181%, p less than 0.05 and 171%, p less than 0.01, respectively). In the liver, a significant elevation of GGT activity is observed in plasma membranes (146% in male rats, p less than 0.02, and 84% in female rats, p less than 0.02) but neither in homogenates nor in microsomal fractions. So, the variation of enzymatic activity in plasma as well as in hepatic plasma membranes is higher in male than in female rats. These results demonstrate, as for phenobarbital, that alcohol provokes an induction of GGT in rat liver only in the plasma membrane fraction.

Animals↗

Lipoprotein lipase mass and activity in plasma and their increase after heparin are separate parameters with different relations to plasma lipoproteins.

Lipoprotein lipase (LPL) activity and mass in plasma and their increase after heparin administration were measured in 61 men who had suffered myocardial infarction before the age of 45 years and in 69 population-based age- and sex-matched control subjects without coronary heart disease to study the relations between these parameters in plasma and their correlations with plasma lipoproteins in subjects with a wide range of lipoprotein and LPL levels. There was a relatively large amount of LPL protein compared with LPL activity in preheparin plasma, indicating that the majority of circulating LPL is catalytically inactive. LPL mass and activity in postheparin plasma (postheparin minus preheparin values) were highly correlated, and the calculated mean specific activity (0.35 mU/ng) was in the range expected for catalytically active LPL. Hence, heparin releases mainly active LPL. The four LPL parameters (mass and activity in plasma and their increase after heparin administration) were not related to each other, except for postheparin plasma LPL mass and activity, and they showed different correlations with plasma lipoprotein lipid concentrations. There was a strong positive correlation between LPL mass in preheparin plasma and the HDL cholesterol level as well as weak negative relations to VLDL triglyceride and cholesterol concentrations in the patients. In contrast, preheparin LPL activity showed no correlation with the HDL cholesterol level but weak positive relations to VLDL triglyceride and cholesterol concentrations in the control subjects.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Plasma zinc is an insensitive predictor of zinc status: use of plasma zinc in children with sickle cell disease.

BACKGROUND: This study was designed to explore the use of plasma zinc in determining zinc deficiency in children with sickle cell disease-SS (SCD-SS) as indicated by a growth response to zinc supplementation. METHODS: Fasting plasma zinc was assessed in children with SCD-SS (ages 4 to 10 years) who were randomly assigned to receive 10 mg zinc/d in cherry syrup (zinc) or cherry syrup alone (placebo) for 12 months. Evaluations for growth, dietary intake, and other biochemical parameters were made at baseline and 3, 6, and 12 months. Longitudinal mixed effects analysis evaluated differences between groups over 12 months. RESULTS: A total of 38 prepubertal children (20 male and 18 female; 18 zinc and 20 placebo) completed the study (7.1 +/- 1.7 years old). At baseline, plasma zinc was low (< or = 70 microg/dL) in 7 male subjects. Despite the significant increase in height over 12 months (+0.7 cm) with zinc supplementation (p = .019), plasma zinc did not change over the 12 months of study, and there was no association between plasma zinc and linear growth. Those children with low plasma zinc who received zinc supplementation showed improved linear growth. CONCLUSIONS: These findings suggest that plasma zinc is an insensitive indicator of zinc status in children with SCD-SS. Children with low plasma zinc will benefit from zinc supplementation. However, some children with normal plasma zinc and poor growth may also have growth-limiting zinc deficiency and exhibit a growth response to zinc supplementation. Although this study focused on children with SCD-SS, results may be generalized to other pediatric clinical illnesses where nutrition-related growth failure is investigated.

Journal Article↗

Low plasma carnitine in patients on prolonged total parenteral nutrition: association with low plasma lysine.

Plasma carnitine levels were determined in 17 patients maintained on long-term total parenteral nutrition (TPN) for a mean (+/- SEM) period of 69 +/- 11 months (range 12-196). All had severe malabsorption and were dependent on intravenous feeding. Plasma carnitine was determined by a modified Cederblad enzymatic method. Mean plasma carnitine was significantly below the mean normal for females (p less than 0.02) and borderline low for males (p = 0.07). In six patients the levels were below the low normal range, and in five others they were at the lowest levels of normal. Of the six patients with normal levels, three had elevated serum creatinine, indicating renal dysfunction which may by itself elevate plasma carnitine. In 10 patients the plasma levels of lysine (a carnitine precursor) were determined and found to be lower than normal (p less than 0.05). Plasma carnitine levels correlated positively with serum albumin (r = 0.62, p less than 0.05), and negatively with serum alkaline phosphatase (r = -0.64, p less than 0.05). Thus, patients maintained on long-term TPN may have low plasma carnitine, which could represent carnitine deficiency. The low plasma carnitine may be related to a deficiency of the carnitine precursor lysine. Further studies are required to determine the significance of the low plasma carnitine and whether carnitine supplementation should be required in long-term TPN.

Adult↗

The increase of plasma homocysteine concentrations with age is partly due to the deterioration of renal function as determined by plasma cystatin C.

One of the main determinants of plasma homocysteine in healthy subjects is serum creatinine. In the present study, we therefore investigated the relation between plasma homocysteine concentration, serum creatinine and a new marker for glomerular filtration rate, plasma cystatin C concentration. Cystatin C reflects the glomerular filtration better than serum creatinine and is not related to the muscle mass and formation of creatinine. The study group consisted of 255 healthy subjects from a well-defined area in the southern part of Sweden. The concentration of plasma homocysteine was increased in men compared to women. This difference disappeared when men and women were stratified by serum creatinine values. Statistically significant correlations were noted between plasma homocysteine and age, plasma cystatin C and serum creatinine. It is shown that plasma homocysteine is not only correlated to serum creatinine as a result of renal function but also as a result of the relationship between homocysteine production and creatine-creatinine synthesis. Using linear regression we were able to show that plasma cystatin C had a higher explanatory value than age. Serum creatinine showed a lower explanatory power than age. The findings in the present study might suggest that the increase of plasma homocysteine concentration with age could be partly due to the deterioration of renal function.

Adult↗

Effects of aging on human plasma renin: simultaneous multiple assays of enzyme activity and immunoactivity of plasma renin.

The effects of aging on plasma renin in normotensive volunteers were evaluated by conventional indirect RIA of angiotensin I and a newly developed direct RIA. Plasma renin activity and the plasma concentration of active renin measured by radiometric assay with monoclonal antibody were significantly lower in 14 subjects over 60 years than in 15 subjects under 60 years (plasma renin activity: 0.5 +/- 0.1 vs 1.7 +/- 0.4 nmol.1-1.h-1, P less than 0.01; plasma active renin: 0.50 +/- 0.05 vs 0.87 +/- 0.13 pmol/l, P less than 0.01, means +/- SEM), whereas neither the total renin activity nor the total plasma renin concentration measured by the newly developed immunometric assay were different in the two groups. In another study, the plasma renin concentration, total renin concentration and immunoreactive total renin concentration measured by direct RIA with polyclonal antibody were determined in 17 young (less than 60 years) and 12 elderly (greater than or equal to 60 years) subjects. Plasma renin concentration was significantly lower in the elderly subjects (1.7 +/- 0.2 nmol.l-1.h-1) than in young subjects (3.2 +/- 0.7 nmol.l-1.h-3, P less than 0.05), but the total renin concentration and immunoreactive total renin concentrations in the two groups were not significantly different. These results indicate that the total renin content of the plasma does not change, whereas the active renin content decreases with age in normal subjects, and suggest that activation of prorenin to active renin may be impaired in elderly subjects.

Adult↗

Effects of insulin on plasma renin activity, plasma atrial natriuretic peptide and body fluid volume in diabetes mellitus.

The effects of insulin treatment on plasma renin activity (PRA), plasma atrial natriuretic peptide (ANP) and body fluid volume were studied in 16 hospitalized patients with insulin-independent diabetes mellitus. Parameters were recorded for 2 days during treatment by diet alone and for 3 weeks after starting insulin. Blood samples were obtained weekly from 9 patients for the measurement of fasting plasma glucose, hematocrit, PRA and plasma ANP. A 24-hr urine sample was collected to determine the urinary excretion of glucose and sodium. In a separate group of 7 patients, plasma volume and extracellular fluid volume were determined by the Evans blue and sodium thiocyanate dilution tests, respectively. In the group of 9 diabetic patients, significant (p less than 0.05) reductions in fasting plasma glucose, hematocrit and the urinary excretion of sodium and glucose were seen with insulin treatment. PRA fell significantly (p less than 0.05) from 5.2 +/- 1.2 ng/ml/hr (mean +/- SEM) on the control days to 2.3 +/- 0.5 on the 21st day after starting treatment. Plasma levels of ANP averaged 35 +/- 5 pg/ml on the control days and these did not change significantly. In the other group of 7 patients, both plasma volume and extracellular fluid volume increased significantly (p less than 0.05) with insulin treatment. A sodium-retaining effect of insulin and a decrease in osmotic diuresis may have increased the body fluid volume and caused the fall in PRA. Thus, a vasodilatory action of insulin may assist in compensation for the increase in body fluid volume, preventing a rise in plasma ANP levels.

Atrial Natriuretic Factor↗

Distribution of selenium in human plasma detected by high performance liquid chromatography-plasma ion source mass spectrometry.

The distribution of selenium in human plasma has been investigated by high performance liquid chromatography (HPLC) connected directly to inductively coupled plasma mass spectrometry (ICP-MS). Human plasma was loaded on to a size exclusion column and eluted with 0.01 M sodium phosphate buffer (pH 7.0) at a flow rate of 0.6 ml/min. Four peaks of selenium were detected in the chromatogram. The first selenium peak was obtained in the void volume. The retention time of the third peak was in accord with that of bovine serum albumin as a standard. The forth peak was thought to be a ghost. The method was applied to identify the chemical form of selenium in blood plasma immediately after intestinal absorption. The chromatographic pattern of selenium in postprandial human plasma was compared with that in fasting plasma. The first and third peaks in the postprandial plasma sample were slightly higher than those in the fasting plasma sample. This finding suggests that absorbed selenium is associated with the high molecular weight fraction and mercaptalbumin in blood plasma.

Adult↗