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Biomedical subjects

B Persson

Publications and source records attributed to B Persson.

At least 361 records · Page 20Linked to original sources

Evidence for a role of a vicinal dithiol in catalysis and proton pumping in mitochondrial nicotinamide nucleotide transhydrogenase.

The effect of glutathione, glutathione disulfide and the dithiol reagent phenylarsine oxide on purified soluble as well as reconstituted mitochondrial nicotinamide nucleotide transhydrogenase from beef heart was investigated. Glutathione disulfide and phenylarsine oxide caused an inhibition of transhydrogenase, the extent of which was dependent on the presence of either of the transhydrogenase substrates. In the absence of NADPH glutathione protected partially against inactivation by glutathione disulfide and phenylarsine oxide. In the presence of NADPH glutathione also inhibited transhydrogenase. Reconstituted transhydrogenase vesicles behaved differently as compared to the soluble transhydrogenase and was partially uncoupled by GSSG. It is concluded that transhydrogenase contains a dithiol that is essential for catalysis as well as for proton translocation.

Glutathione↗

Multiple myeloma and engine exhausts, fresh wood, and creosote: a case-referent study.

The effect of potential risk factors for multiple myeloma was evaluated in a case-referent study encompassing 131 cases and 431 randomized referents, all alive. Information on exposure was obtained with questionnaires mailed to the subjects. An analysis of the material by means of the Miettinen confounder score technique resulted in a few rate ratios significantly exceeding unity--namely, occupational exposure to engine exhausts, creosote, and fresh wood. In view of other studies that suggest ionizing radiation as a risk factor, it was somewhat surprising that low-level gamma radiation from background exposure was less common among the cases than the referents.

Adult↗

Glucose-induced insulin response and insulin sensitivity is not related to HLA-type but to age in young siblings of type 1 (insulin-dependent) diabetic patients.

Glucose-induced insulin response and insulin sensitivity were studied in 32 HLA-identical, 38 haplo-identical and 24 non-identical, islet-cell-antibody-negative, healthy siblings of young Type 1 (insulin-dependent) diabetic patients (age range 10-28 years). No significant differences were obtained between HLA-identical, HLA-haplo-identical siblings and HLA-non-identical siblings in insulin response using an i.v. glucose infusion test even when the insulin sensitivity as estimated by the somatostatin-insulin-glucose infusion test was taken into account. A significant inverse correlation to age was found for both insulin response (r = -0.24, p = 0.02) and insulin sensitivity (r = -0.36, p less than 0.01) in the young siblings studied.

Adolescent↗

Acute systemic and renal haemodynamic effects and long-term antihypertensive action of cadralazine in patients pretreated with beta-blockers and diuretics.

The antihypertensive effects of the hydralazine-related compound cadralazine (2-(3-[6-(2-hydroxypropyl)ethylamino]pyridazinyl)ethyl carbazate, ISF 2469), were investigated in 16 patients with primary hypertension concurrently treated with beta-blockers and diuretics. The protocol included a double-blind placebo controlled haemodynamic evaluation after the first tablet and two 4-week double-blind placebo controlled cross-over periods followed by an open evaluation during 2 months. Cadralazine induced a moderate, prolonged fall in blood pressure that was associated with vasodilatation and slight increases in cardiac output (dye-dilution) and heart rate. Renal plasma flow (PAH) and glomerular filtration rate (51Cr-EDTA) were not significantly influenced, but the filtration fraction was reduced. Plasma concentrations of noradrenaline and adrenaline rose, whereas plasma renin activity was unchanged. The haemodynamic parameters were not correlated with the plasma concentrations of cadralazine. During chronic cadralazine treatment the supine blood pressure was significantly lower than during the double-blind placebo phase (160/93 vs 174/102 mmHg). The compound was generally well tolerated but the body weight increased slightly (1.1 kg), probably because of fluid retention. Several patients who had previously experienced side effects with hydralazine, including one with hydralazine-syndrome, tolerated cadralazine well. This suggests that cadralazine does not cross-react with hydralazine.

Acute Disease↗

Pharmacokinetics of ketanserin in patients with essential hypertension.

The pharmacokinetics of ketanserin and its main metabolite ketanserin-ol, and the antihypertensive effects of intravenous, single oral and chronic oral (40 mg once daily) administration of ketanserin, have been investigated in a single blind study of 10 patients with uncomplicated mild hypertension. Ketanserin had a terminal half-life of 29.2 h, a plasma clearance of 518 ml/min and a volume of distribution of 18.0 l/kg. Chronic oral intake of 40 mg ketanserin (tablet formulation) gave a peak concentration of unchanged ketanserin of 88 ng/ml after 1.1 h. Its absolute bioavailability was 48%. During chronic therapy the maximal concentration of ketanserin-ol was 208 ng/ml and its half-life of elimination was 35.0 h. As this metabolite can be oxidized back to ketanserin, it contributes to the prolonged half-life of unchanged ketanserin seen during chronic therapy. The blood pressure was reduced by approximately 15% by oral ketanserin. The maximal reduction in blood pressure coincided with the peak concentration of unchanged ketanserin. During chronic therapy with 40 mg once daily blood pressure was reduced over 24 h. The heart rate was slightly reduced and the cardiovascular responses and the plasma noradrenaline concentrations during isometric exercise were only slightly influenced by ketanserin therapy. Thus, unchanged ketanserin has a relatively long half-life during chronic oral therapy and its pharmacokinetics in middle-aged hypertensive patients is similar to that in normal young volunteers.

Administration, Oral↗

Plasma atrial natriuretic peptide and blood pressure during chronic salt loading in spontaneously hypertensive rats with right atrial appendectomy.

Spontaneously hypertensive rats (SHR) were subjected to right atrial appendectomy (ATRX) or sham operated. Five days after this procedure the rats were put on tap water or 1.5% NaCl as drinking water for 1 week. The blood pressure (carotid artery), 24 hours urinary sodium and kalium excretion, plasma levels of immunoreactive atrial natriuretic peptide (ir-ANP) and the rise in plasma ir-ANP concentrations after an acute volume expansion by homologous whole blood (10%) were evaluated after 1 week on the different diets. At the start of the dietary period the rise in plasma ir-ANP values was blunted in ATRX rats. After 1 week the salt loaded animals excreted tenfold more sodium than control rats. At this time basal ir-ANP values in plasma were not significantly influenced by the ATRX and/or the high salt diet but the rise in plasma ir-ANP concentrations to acute volume expansion was blunted in the salt loaded rats. However, the basal blood pressure was not influenced by the salt diet and/or the ATRX. These data do not support the notion that an alleged deficiency in ANP release mechanisms in the SHR is a major determinant for the blood pressure development in this rat strain.

Animals↗

Energy-linked nicotinamide nucleotide transhydrogenase: hydrodynamic properties and active form of purified and membrane-bound mitochondrial transhydrogenase from beef heart.

The mitochondrial nicotinamide nucleotide transhydrogenase from beef heart was investigated with respect to minimal assembly of the purified enzyme and of the enzyme in the mitochondrial inner membrane. Studies of the hydrodynamic properties of the purified enzyme in the presence of 0.3% Triton X-100 allowed determination of the Stokes radius, sedimentation constant, partial specific volume, frictional ratio, and molecular weight. Under these conditions transhydrogenase existed as an inactive monomer, suggesting that monomerization may be accompanied by inactivation. Radiation inactivation was used to determine the functional molecular size of purified detergent-dispersed transhydrogenase and transhydrogenase in beef heart submitochondrial particles. Under these conditions the catalytic activity of both the purified and the membrane-bound enzyme was found to be catalyzed by a dimeric form of the enzyme. These results suggest for the first time that the minimal functional assembly of detergent-dispersed as well as membrane-bound transhydrogenase is a dimer, which is not functionally associated with, for example, complex I or ATPase. In addition, the results are consistent with the possibility that the two subunits of transhydrogenase are catalytically active in an alternating fashion according to a previously proposed half-of-the-sites reactivity model.

Animals↗

Novel N-terminal fragments of pro-gamma-melanocyte-stimulating hormone isolated from pig pituitary.

Two novel N-terminal fragment pairs of porcine pro-gamma-melanocyte-stimulating hormone (MSH)-(1-103), viz. pro-gamma-MSH-(1-30)/(2-30) and pro-gamma-MSH-(1-67)/(2-67) were characterized. A third pair of peptides of still larger size was also detected. The two characterized peptide pairs terminate at sites different from the dibasic sequences typical of prohormone cleavage. This suggests either a different processing event or proteolysis during purification; in both cases cleavages are selective since the two peptides end at distinct positions. Unlike most previously described pro-gamma-MSH forms, which begin with Trp at position 1 in pro-opiomelanocortin (position -105 in relation to the start of ACTH), the novel peptide pairs show N-terminal heterogeneity with one of the components beginning with Trp as in other forms, and the second component (present in relative amounts of 10-70%) beginning with Cys at position 2 (corresponding to position -104).

Amino Acid Sequence↗

ANP--a cardiac hormone and a putative central neurotransmitter.

Isolation, purification and determination of the amino acid sequences of biologically active peptides were performed in 1983-84 by several groups. By that time the existence of such a humoral diuretic/natriuretic factor had been proposed for many years. The main, and perhaps the only, circulating form of atrial natriuretic peptide (ANP) is a 28 amino acid peptide structure with a disulphide bridge. This peptide is distributed mainly peripherally in the right and left cardiac atria. Smaller amounts are found in neonatal cardiac ventricles as well as in autonomic ganglia. In the central nervous system, high concentrations are found in hypothalamus, while lower concentrations are found in midbrain and brain stem regions. The amino acid sequence of ANP in the brain may be shorter than the form originating from cardiac atria. A 1 126 amino acid prohormone is present in granulae of atrial myocytes. After atrial distention the circulating 28 amino acid form is cleaved off. The main actions of this hormone include a diuretic/natriuretic effect, relaxation of vascular smooth muscle, and inhibition of basal or stimulated aldosterone secretion from the adrenal cortex. In the central nervous system, ANP has antidipsogenic actions, decreases salt appetite and lowers blood pressure. ANP may be of pathophysiological importance in several cardiovascular disorders such as congestive heart failure, paroxysmal supraventricular tachycardia and possibly also arterial hypertension. ANP seems to be a circulating hormone as well as putative neurotransmitter with important regulatory actions on salt and water homeostasis as well as blood pressure regulation.

Adrenal Cortex↗

Visualization of defective measles virus particles in cerebrospinal fluid in subacute sclerosing panencephalitis.

Measles virus particles were visualized in the CSF of two patients with verified subacute sclerosing panencephalitis (SSPE) by using scanning electron microscopy. Immunologic identification of the accumulated particles was performed with monoclonal antibodies, directly conjugated to carboxylated microspheres, specific for different measles virus antigens. The beads were amassed on the filter surface after a 1-hr incubation in the CSF. Spherical particles with a diameter ranging between 150 and 500 nm were detected. Such particles bound specifically to latex beads covered by monoclonal antibodies to measles virus hemagglutinin but not to beads conjugated with monoclonal antibodies specific for nucleoprotein. Adding the two monoclonal antibodies to measles virus hemagglutinin to the CSF agglutinated the virus particles in a dose-dependent way. Further, no particles in the CSF bound to microspheres conjugated with monoclonal antibodies to non-related antigens of Sendai virus, cytomegalovirus, or human immunodeficiency virus. Similarly sized particles were also identified by transmission electron microscopy after concentrating the CSF.

Antigens, Viral↗

Correlations between histopathologic white matter changes and proton MR relaxation times in dementia.

Our previous studies have shown that incomplete white matter infarctions are common in senile dementia of the Alzheimer type. To visualize and interpret these changes on magnetic resonance imaging (MRI), knowledge of MR relaxation times associated with this histopathology is important. The proton MR relaxation times T1 and T2 were determined in vitro for 3 groups of specimens. Fifty specimens of normal and incompletely infarcted white matter from 21 patients with senile dementia and 38 normal and pathologic white matter specimens from 19 elderly cases with infarcts were analyzed. The specimens were evaluated for infarct type, grade of incomplete infarction, and the proportion of old complete or incomplete infarction versus normal tissue in each sample. The incomplete infarct had longer relaxation times than normal white matter, with prolongation of T1 and T2 being proportional to the severity of the tissue changes. Old complete infarcts had longer relaxation times than both normal white matter and incomplete infarctions. These differences in relaxation times, reflecting various degrees of tissue damage, are important for the interpretation of MR images in vivo. Visualization of incomplete infarctions is essential for an in vivo diagnosis of these frequent and sometimes extensive changes.

Alzheimer Disease↗

Haemodynamic and haemorheological effects of hypervolaemic haemodilution in men with primary hypertension.

The haemorheological disturbances observed in primary hypertension arise mainly from haemoconcentration, which leads to an elevation of blood and plasma viscosity and increased aggregation of red blood cells (RBCs). We evaluated the rheological properties of blood and central haemodynamic indices in 13 men with untreated primary hypertension (WHO stage I and II), during a baseline period and after intravenous infusion of 1000 ml of 0.9% NaCl (within 12-15 min). The rheological properties studied were: whole blood viscosity (WBV), plasma viscosity (PV), haematocrit (HCT) and plasma fibrinogen concentration (PF). The central haemodynamic indices were: mean intra-arterial blood pressure (MAP), central venous pressure (CVP), cardiac index (CI), stroke volume index (SVI), total peripheral resistance index (TPRI) and the vascular hindrance index (VHI). Plasma renin activity (PRA) and plasma noradrenaline concentration (P-NA) were also measured. Volume expansion with saline caused haemodilution as expressed by a fall in HCT (P less than 0.001), WBV (P less than 0.001) and PV (P less than 0.01). At the same time, CVP, MAP and VHI increased (P less than 0.05) while PRA decreased (P less than 0.05) and P-NA remained unchanged. Mean values of the cardiac index (CI) and stroke volume index (SVI) did not change significantly. We did not observe any significant relationship between haemodynamic and haemorheological parameters, during baseline or between their respective changes after the infusion. The results indicate that although hypervolaemic haemodilution produced by saline infusion in hypertensive patients may improve blood flow properties (HCT, WBV, PV), blood pressure (BP) is not reduced; rather the converse is true. The reduction in HCT and hence the improved blood rheology, did not affect calculated vascular resistance. Thus, correction of WBV does not acutely normalize BP in primary hypertension.

Adult↗

Significant relationship between renin suppression and atrial natriuretic peptide (alpha-hANP) during volume loading in hypertensive men.

We have studied eight men with moderate hypertension to determine the atrial natriuretic peptide (alpha-hANP) response to acute volume expansion. Rapid infusion of 1,000 ml 0.9% saline (10-20 min) caused an increase in central venous pressure (4.7 +/- 1.6 cmH2O) while blood pressure and pulse pressure (arterial baroreceptor load) did not change. Stroke volume and heart rate were not affected by the volume load but plasma renin activity (PRA) was significantly suppressed (from 0.83 +/- 0.14 to 0.68 +/- 0.34 microgram AI I/ml-h; p less than 0.01). A significant hemodilution was also observed. Renal sodium excretion was significantly increased. Arterial alpha-hANP increased significantly from 21.1 +/- 6.1 to 30.5 +/- 4.0 pmol/l (p less than 0.02) during volume expansion. There was a significant correlation between corrected plasma volume increase (urine volume subtracted from the infused volume) and alpha-hANP plasma elevation (r = 0.78; p less than 0.05). There was also a significant negative correlation between changes alpha-hANP and PRA (r = -0.78, p less than 0.05). We conclude that only moderate volume loading in human hypertensives is a mechanism for increase in plasma alpha-hANP levels. The significant negative correlation between changes in alpha-hANP and PRA suggests that alpha-hANP may be the humoral factor at least partly responsible for suppression of renin in hypertensive man. Since increased fluid volume also affects sympathetic renal efferents as well as vasopressin secretion, our observed relationship between volume load and renin may well be related also to such mechanisms.

Adult↗

Chronic 5-HT2-receptor blockade by ritanserin does not reduce blood pressure in patients with essential hypertension.

The selective 5-HT2-receptor-blocking agent ritanserin is an analogue of the antihypertensive agent ketanserin. By evaluating the antihypertensive effects of ritanserin the aim of this investigation was to indirectly elucidate the mechanism of action of ketanserin. Thirteen patients with essential hypertension were treated with placebo and ritanserin, 10 mg b.i.d., in a double-blind, cross-over design (4-week periods). At the end of the treatment periods blood pressure as well as plasma concentrations of ritanserin were evaluated for 24 hours. Despite high steady state and peak plasma concentrations of ritanserin the compound did not lower the blood pressure compared with placebo. Since chronic selective 5-HT2-receptor blockade by means of ritanserin did not lower the blood pressure, it is concluded that the 5-HT2 blocking properties of ketanserin cannot alone be responsible for the antihypertensive effects of ketanserin.

Aged↗

Chronic salt loading and adrenergic mechanisms in the Sprague-Dawley rat.

The effect of chronic salt loading on adrenergic mechanisms was evaluated in Sprague-Dawley rats (and NMRI mice) maintained on a high sodium (8%) or normal sodium (0.3%) regime for 4 weeks. The basal blood pressure (carotid artery) was not influenced by the high salt diet but the heart rate and blood pressure increases to mental stress (jet air) were larger in the salt loaded rats. There were indications of an increased sympathetic tone in rats on the high salt diet since in these rats sympathoinhibitory treatment with ganglionic blockade or clonidine induced larger falls in blood pressure and heart rate than in the controls. Central catecholamines (brain stem, striatum, hemispheres) were determined spectrofluorimetrically after cation exchange chromatography. The high salt diet influenced neither the endogenous levels of noradrenaline nor central noradrenaline turnover (disappearance of noradrenaline after synthesis inhibition by alpha-methyltyrosine and accumulation of dihydroxyphenylalanine after decarboxylase inhibition by 3-hydroxybenzylhydrazine). There were no changes in central alpha 2-adrenoceptor responsiveness when assessed as clonidine-induced deceleration of noradrenaline turnover in the brain and in central alpha 1-adrenoceptor responsiveness (clonidine-induced increase of flexor reflex in spinalized rats and clonidine-induced increase of motor activity in reserpinized mice). Peripheral sympathetic function was assessed in pithed rats. The pressor responses to intravenously administered noradrenaline (0.01-10 micrograms/kg) and electrical stimulation of the spinal sympathetic nerves (SNS, 0.25-2 Hz) were similar in the two groups, suggesting that salt did not influence vascular alpha-adrenoceptor responsiveness or transmitter release.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

The urinary C-peptide excretion in normal healthy children.

The 24 h urinary C-peptide excretion was determined in 137 normal healthy children, 52 girls and 85 boys, 3-15 years of age. No significant difference was found between boys and girls. Median value of urinary C-peptide for boys and girls was 0.24 nmol/kg/24 h with a range of 0.07-0.61 nmol/kg/24 h. Urinary C-peptide correlated positively and significantly with age, weight, height, body surface area and the 24 h urinary creatinine excretion. Since the values of C-peptide excretion were not normally distributed they were log transformed and plotted against body weight. The linear regression and the 95% confidence limits were then calculated. Girls at puberty, 11-15 years of age, had significantly higher C-peptide excretion per kg body weight and per body surface area than younger girls, 3-10 years of age. Boys 13-15 years of age had significantly higher C-peptide excretion per body surface area than younger boys, 5-12 years of age. This indicates that children during the maximal growth spurt have an increased insulin secretion as measured by urinary C-peptide per body surface area.

Adolescent↗

Effects of chronic salt loading on plasma atrial natriuretic peptide (ANP) in the spontaneously hypertensive rat.

Plasma concentrations of immunoreactive atrial natriuretic peptide (ANP) was measured in spontaneously hypertensive rats (SHR) during chronic salt loading (1.5% NaCl in drinking water). During the 3-week experimental period mean arterial blood pressure, heart rate, urinary sodium excretion and body weight was assessed in salt-loaded as well as in control rats. The sodium excretion was more than 10-fold increased in the rats on the high salt diet. The plasma ANP concentration was significantly increased only 24 h after the start of the high salt intake. Thereafter plasma ANP concentrations were not significantly different from values obtained in control rats. The blood pressure was significantly increased after 3 weeks on the high salt diet. At the end of the 3-week experimental period the rats were subjected to a 10 and 20% acute volume expansion with homologous whole blood. During this intervention the increase in plasma ANP concentrations was blunted in the high salt rats compared to the control group. It is concluded that during chronic salt loading in SHR there is an initial rise in plasma ANP levels and that other hormonal and neuronal systems are more important in the long term maintenance of fluid and electrolyte balance.

Animals↗

Renal and cardiovascular effects of atrial natriuretic peptide in Wistar-Kyoto and spontaneously hypertensive rats during a chronic salt loading.

Spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) rats were maintained on tap water or 1.5% NaCl for 3 weeks. During the high sodium regime 24-h urinary sodium excretion increased 10-fold and the basal blood pressure increased in the SHR. After 3 weeks the rats received arterial (carotid artery), venous and bladder catheters (suprapubic). Saline was infused continuously and in conscious rats atrial natriuretic peptide (alpha-hANP) was administered as bolus injections (8 and 16 nmol kg-1) and the blood pressure and heart rate and the urinary excretions of sodium, potassium (flame photometry), noradrenaline and dopamine (HPLC) were followed at 5-min intervals. The administration of ANP caused a short-lasting blood pressure reduction, tachycardia, diuresis and increased urinary excretions of sodium, potassium, noradrenaline and dopamine. The blood pressure responses to ANP did not differ between the rat strains, irrespective of the diet. The natriuresis and diuresis to ANP was reduced in animals on a high sodium diet, especially in the SHR. This may be interpreted as a down-regulation of target organ responsiveness to ANP during a high sodium diet and the inappropriately large decrease in the responsiveness that was observed in the SHR may be related to increase in blood pressure during the high sodium diet.

Animals↗