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Biomedical subjects

P Hjemdahl

Publications and source records attributed to P Hjemdahl.

At least 19 recordsLinked to original sources

Urinary excretions of high molecular weight beta-thromboglobulin and albumin are independently associated with coronary heart disease in women, a nested case-control study of middle-aged women in the Diagnostisch Onderzoek Mammacarcinoom (DOM) Cohort, Utrecht, Netherlands.

Increased plasma levels of beta-thromboglobulin, a platelet activation marker, are observed in coronary artery disease. Urinary albumin excretion, a marker of endothelial cell perturbation, is related to cardiovascular disease in diabetes. To test the value of these markers in predicting forthcoming coronary disease, the relations between urinary excretions of high molecular weight beta-thromboglobulin (HMW-beta TGf) and albumin and subsequent coronary disease in a cohort of 15,484 middle-aged women were investigated in a nested case-control study. Baseline questionnaire data and urine samples were available from a breast cancer screening program in Utrecht during 1982-1985. Cases were Utrecht hospital admissions for myocardial infarction (n = 50) or angiographically confirmed coronary disease (n = 28) from 1982-1985 to 1990-1991. Classifying events occurred a median of 5.1 years after baseline. Controls were a random sample from the cohort, individually case matched for baseline examination date and age, at a 1:2 ratio. HMW-beta TG/creatinine ratios (ng/mmol, mean +/- standard error) were 5.3 +/- 0.3 in cases and 4.7 +/- 0.3 in controls; albumin/creatinine ratios (mg/mmol, median) were, respectively, 0.37 and 0.22. Crude odds ratios for classification in the highest compared with the lowest tertiles of HMW-beta TG/creatinine and albumin/creatinine distributions were elevated for cases compared with controls: HMW-beta TG/creatinine odds ratio = 2.4, 95% confidence interval 1.1-5.0; albumin/creatinine odds ratio = 2.1, 95% confidence interval 1.0-4.1. These relations persisted after adjustment for smoking, hypertension, Quetelet index, and menopausal status. Both urinary HMW-beta TG and albumin excretion are markers of coronary disease risk in middle-aged women, indicating that increased platelet activation and endothelial cell perturbation precede coronary heart disease events in women.

Adult

Significance of platelet beta-adrenoceptors for platelet responses in vivo and in vitro.

The significance of platelet beta-adrenoceptors for platelet responses to adrenergic stimuli in vivo and in vitro was studied in healthy volunteers. Low dose infusion of the beta-adrenoceptor agonist isoprenaline decreased platelet aggregability in vivo as measured by ex vivo filtragometry. Infusion of adrenaline, a mixed alpha- and beta-adrenoceptor agonist, increased platelet aggregability in vivo markedly, as measured by ex vivo filtragometry and plasma beta-thromboglobulin levels. Adrenaline levels were 3-4 nM in venous plasma during infusion. Both adrenaline and high dose isoprenaline elevated plasma von Willebrand factor antigen levels. beta-Blockade by propranolol did not alter our measures of platelet aggregability at rest or during adrenaline infusions, but inhibited adrenaline-induced increases in vWf:ag. In a model using filtragometry to assess platelet aggregability in whole blood in vitro, propranolol enhanced the proaggregatory actions of 5 nM, but not of 10 nM adrenaline. The present data suggest that beta-adrenoceptor stimulation can inhibit platelet function in vivo but that effects of adrenaline at high physiological concentrations are dominated by an alpha-adrenoceptor mediated proaggregatory action.

Adenosine Diphosphate

Metoprolol does not reduce platelet aggregability during sympatho-adrenal stimulation.

The possibility that beta-adrenoceptor blockers, especially beta 1-selective agents might inhibit platelet function is of considerable interest, as this might be of pathophysiological importance in cardiovascular diseases. Platelet function, however, is difficult to assess and in vivo related data are scarce. The effect of one week of treatment with metoprolol 200 mg/day on platelet aggregability during mental stress (colour word conflict test; CWT) and low and high dose adrenaline infusions has been evaluated in a double-blind, placebo-controlled, cross-over study in 10 healthy male volunteers. Platelet function in vivo was assessed using ex vivo filtragometry, and the urinary excretions of beta-thromboglobulin (HMW beta-TG) and 11-dehydro-TxB2 (a thromboxane metabolite). Conventional in vitro aggregometry and the urinary levels of 2,3-dinor-6-keto-PGF1 alpha (a prostacyclin metabolite) were also studied. During the interventions there was increased platelet aggregability in vivo, as filtragometry readings were shortened by 41 +/- 11% during high dose adrenaline infusion, urinary HMW beta-TG levels increased and urinary 11-dehydro-TxB2 tended to increase. In contrast, platelet sensitivity to ADP in vitro was reduced. The urinary 2,3-dinor-6-keto-PGF1 alpha levels were increased during the interventions. Despite the cardiovascular and biochemical signs of beta-adrenoceptor blockade at rest and during the interventions, metoprolol failed to influence platelet function in vivo, as measured by ex vivo filtragometry, or urinary HMW beta-TG or 11-dehydro-TxB2 levels. It tended rather to enhance the stress response measured by ex vivo filtragometry. Platelet aggregability in vitro and urinary 2,3-dinor-6-keto-PGF1 alpha levels were not altered by metoprolol.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha

The sympathetic response to euglycaemic hyperinsulinaemia. Evidence from microelectrode nerve recordings in healthy subjects.

Sympathetic nervous system activation by insulin has been suggested as a mechanism explaining the association between insulin resistance and hypertension. We further examined the effect of insulin by direct microneurographic muscle and skin nerve sympathetic activity recordings during euglycaemic insulin clamps in healthy subjects. The mean plasma insulin level was elevated from 5.3 +/- 0.7 to 92.2 +/- 2.2 mU/l in seven subjects during a 90-min one-step clamp. In six other subjects plasma insulin was further raised from 85.7 +/- 4.0 mU/l to 747 +/- 53 mU/l between 45-90 min (two-step clamp). Four of the latter subjects received a sham clamp with NaCl infusions only on a second recording session. At the low dose of insulin muscle nerve sympathetic activity increased from a resting level of 22.7 +/- 5.0 bursts per min to 27.7 +/- 5.0 bursts per min at 15 min (p less than 0.05). The increases in muscle nerve sympathetic activity were significant (p less than 0.001; ANOVA) throughout insulin infusion, with a slight further increase (from 29.2 +/- 1.6 to 32.3 +/- 1.9 bursts per min) at the supraphysiological insulin concentration. During sham clamps muscle nerve sympathetic activity did not increase. Both insulin clamps induced minor, but significant, increases in forearm venous plasma noradrenaline concentrations. Skin nerve sympathetic activity (n = 3) did not change during insulin infusions. Heart rate increased slightly but significantly (p less than 0.005), during the insulin clamps. Blood pressure was not notably affected. In conclusion, hyperinsulinaemia was associated with increased vasoconstrictor nerve activity to skeletal muscle and with no change of sympathetic outflow to skin.

Adult

Alpha-adrenoceptor blockade by phentolamine inhibits adrenaline-induced platelet activation in vivo without affecting resting measurements.

1. The effects of phentolamine (500 micrograms/min) on platelet aggregability in vivo at rest and during adrenaline infusion were assessed by ex vivo filtragometry and measurements of plasma beta-thromboglobulin levels in 10 healthy male subjects. Plasma levels of von Willebrand factor antigen and free fatty acids were also measured. 2. Adrenaline induced marked and expected increases in heart rate and systolic blood pressure and decreased diastolic blood pressure when venous plasma adrenaline levels were elevated from 0.12 +/- 0.02 to 2.9 +/- 0.3 nmol/l (P less than 0.01). 3. Adrenaline caused platelet activation in vivo. Ex vivo filtragometry readings were shortened by 58 +/- 9% (P less than 0.01), plasma beta-thromboglobulin levels increased by 99 +/- 44% (P less than 0.01) and platelet counts increased by 26 +/- 6% (P less than 0.01). Plasma levels of von Willebrand factor antigen and free fatty acids increased by 53 +/- 5% and 475 +/- 113% (both P less than 0.01), respectively. 4. Phentolamine enhanced the beta-adrenergic vasodilator responses to adrenaline, as both the decrease in diastolic blood pressure and the reflexogenic increase in heart rate were enhanced (both P less than 0.01). Marked elevations in plasma noradrenaline levels were found during infusions of phentolamine and adrenaline (P less than 0.001). 5. Phentolamine did not alter platelet indices at rest, but abolished adrenaline-induced platelet activation, as filtragometry readings, plasma beta-thromboglobulin levels and platelet counts remained at, or below, resting levels. Responses of plasma levels of von Willebrand factor antigen and free fatty acids to adrenaline were not influenced by phentolamine and did not seem to influence platelet responses.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Nonadrenergic sympathetic vascular control of the human forearm in hypertension: possible involvement of neuropeptide Y.

Animal experimental evidence suggests that neuropeptide Y (NPY) is coreleased with norepinephrine (NE) from sympathetic nerve endings and is involved in nonadrenergic neurogenic vascular control of skeletal muscle. We wished to determine whether these findings may be extended to humans. Forearm blood flow (venous occlusion plethysmography) and the regional overflows of NE and NPY-like immunoreactivity (NPY-LI) were studied at rest and during sympathetic nerve activation by lower body negative pressure (LBNP; -10 mm Hg, 10 min) in 10 hypertensive men before and after local alpha-adrenergic blockade by a dose of phenoxybenzamine (60 micrograms x 100 ml-1 x min-1 for 60 min), which most markedly attenuated responses to exogenous NE; propranolol (10 micrograms x 100 ml-1 x min-1) was present throughout. Phenoxybenzamine increased forearm blood flow at rest (11.5 +/- 1.0 vs. 3.9 +/- 0.3 ml x 100 ml-1 x min-1; p less than 0.001). LBNP-evoked reduction of forearm blood flow (37 +/- 2%, p less than 0.001) was attenuated (p less than 0.001) but not abolished (18 +/- 2%, p less than 0.001) by phenoxybenzamine. LBNP increased the overflow of NE from 5.0 +/- 1.7 to 8.2 +/- 3.0 pmol x 100 ml-1 x min-1 (p less than 0.05) and that of NPY-LI from -9.0 +/- 4.4 to 8.0 +/- 4.9 fmol x 100 ml-1 x min-1 (p less than 0.05) after phenoxybenzamine; effects on the evoked overflows of NE and NPY-LI before phenoxybenzamine were slight. Prejunctional inhibitory alpha-adrenoceptors may thus modulate NPY release as well.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Contrasting cardiovascular responses from intrathecal administration of epinephrine and norepinephrine in conscious rats: role of alpha 1- and alpha 2-adrenoceptors.

In conscious rats, intrathecal (i.t.) administration of norepinephrine (NE) produced pressor responses, whereas i.t. epinephrine (Epi) caused depressor responses at low doses (0.1-1 microgram) and pressor responses at a higher dose (10 micrograms). Epi administered i.t. produced bradycardia; however, NE caused tachycardia at low doses and bradycardia at high doses. The cardiovascular responses were dissimilar to those observed after intravenous (i.v.) administration of these doses of NE and Epi. When [3H]NE or [3H]Epi (1.0 microgram, 10 mCi) was injected i.t., minimal radioactivity was detected in peripheral blood (PB) samples, indicating that the effects of i.t.-injected catecholamines on blood pressure (BP) and heart rate (HR) are due to stimulation of central spinal adrenoceptors and not to peripheral effects after leakage. Pretreatment with i.t. administration of the alpha 1-antagonist prazosin (1.0 microgram) attenuated pressor responses and tachycardia produced by i.t. NE (1.0 microgram), whereas i.t. pretreatment with the alpha 2-antagonist yohimbine (10 micrograms) counteracted depressor responses and bradycardia produced by i.t. Epi. Therefore, these spinally released catecholamines appear to produce opposite cardiovascular effects whereby sympathetic preganglionic neurons are excited by NE through spinal alpha 1-adrenoceptors and are inhibited by Epi through spinal alpha 2-adrenoceptors.

Animals

Is DDD pacing superior to VVI,R? A study on cardiac sympathetic nerve activity and myocardial oxygen consumption at rest and during exercise.

Rate responsive ventricular pacing (VVI,R) has been demonstrated to equal atrial synchronous ventricular pacing (DDD) with regard to hemodynamics and exercise tolerance. Whether the two modes are also comparable, with regard to cardiac metabolic effects, is not yet clear. We assessed central hemodynamics, cardiac sympathetic nerve activity (cardiac norepinephrine overflow), and myocardial oxygen consumption in 16 patients treated with rate responsive atrial synchronous ventricular pacemakers (DDD,R) due to high degree AV block. The study was performed at rest and during supine exercise at two workloads (30 +/- 12 and 68 +/- 24 watts, respectively) during VDD and rate matched VVI pacing (VVIm). Ventricular rates at rest and during both workloads were almost identical. Cardiac output at rest tended to be higher in the VDD mode, due to a slightly higher stroke volume. Central pressures including right atrial pressure and pulmonary capillary wedge pressure were similar in the pacing modes. The coronary sinus blood flow, the coronary sinus arteriovenous oxygen difference, and the myocardial oxygen consumption did not differ between the two pacing modes. Cardiac norepinephrine overflow was similar in the two pacing modes, at rest or during exercise. Thus, we found no significant differences between VDD and VVIm pacing with regard to central hemodynamics, cardiac sympathetic nerve activity (cardiac norepinephrine overflow), or myocardial oxygen consumption either at rest or during moderate exercise.

Aged

Influence of angiotensin II, alpha- and beta-adrenoceptors on peripheral noradrenergic neurotransmission in canine gracilis muscle in vivo.

Interactions between angiotensin II and adrenoceptor-mediated effects on peripheral sympathetic neurotransmission were investigated in constant flow blood-perfused canine gracilis muscle in situ, without and with pretreatment by non-competitive alpha-adrenoceptor blockade. Angiotensin converting enzyme (ACE)-inhibition by benazeprilat increased nerve stimulation (2 Hz, 4 min)-evoked noradrenaline (NA) overflow (+ 21 +/- 5%) with alpha-adrenoceptors intact, but reduced NA overflow (- 18 +/- 6%) when alpha-adrenoceptors were blocked. Vasoconstrictor responses were slightly reduced by benazeprilat. Subsequent infusion of angiotensin II (Ang II, 20 and 500 ng kg-1 min-1 i.v., raising arterial concentrations from 0.6 +/- 0.2 pM to 1390 +/- 240 and 25,110 +/- 3980 pM, respectively) failed to increase NA overflow or to enhance stimulation-evoked vasoconstriction. Adrenaline (0.4 nmol kg-1 min-1 i.v.) did not change evoked NA overflow before or after benazeprilat, either with or without alpha-adrenoceptor blockade, despite high concentrations (approximately 10 nM) in arterial plasma. Following benazeprilat, propranolol reduced NA overflow (- 24 +/- 3%) only if the alpha-adrenoceptors were blocked. In conclusion, benazeprilat reduced evoked NA overflow in the presence of alpha-adrenoceptor blockade to a similar degree as previously shown in the presence of neuronal uptake inhibition in this model. However, contrasting to our previous findings, benazeprilat enhanced NA overflow and reduced the post-junctional response to nerve stimulation in the absence of alpha-adrenoceptor blockade. This could be related to bradykinin accumulation during ACE-inhibition, in addition to the reduction of Ang II generation. Our data are not compatible with facilitation of NA release by circulating Ang II even at pharmacological dose levels. Although activation of prejunctional beta-adrenoceptors may facilitate evoked NA overflow in this model, circulating adrenaline is ineffective under physiological conditions even after alpha-adrenoceptor blockade. Also, beta-adrenoceptor-mediated prejunctional effects do not seem to involve Ang II in canine skeletal muscle in vivo.

Angiotensin II

Influence of beta-adrenergic receptor function during terbutaline treatment on allergen sensitivity and bronchodilator response to terbutaline in asthmatic subjects.

Nine asthmatic patients with an allergy to birch or timothy underwent bronchial allergen provocations on three different trial days, with intervals of 2 to 5 wk. Two weeks prior to one of the provocations, no medication was allowed. Before the other two provocations the patients had been on continuous treatment with oral terbutaline (7.5-mg slow-release pill bid) for 2 wk, which was discontinued 12 or 48 h before the allergen provocation. After allergen challenges, terbutaline was inhaled in increasing doses (0.5 mg, 1.0 mg, and 2.0 mg), and pulmonary function was measured after each dose. Before each allergen provocation, blood samples were drawn for measurements of catecholamine and terbutaline concentrations and for in vitro measurements of beta-adrenergic receptor function on lymphocytes (isoproterenol-induced accumulation of cyclic AMP). Beta-adrenergic receptor function on blood lymphocytes was impaired after the two treatment periods, compared with the drug-free period, and was significantly more depressed at 12 h than 48 h after dosing. The bronchial responsiveness to allergen, defined as PC20PEF (median values), was 1,700 biologic units (BU) after the period of no treatment and 220 BU and 445 BU at 12 and 48 h after discontinuation of the terbutaline treatment (p less than 0.1 after 48 h). Five of the nine patients exhibited increased bronchial responsiveness 48 h after treatment, compared to results without treatment. The responsiveness was similar on all occasions in three patients. The bronchodilator response to inhaled terbutaline after allergen-induced bronchoconstriction was attenuated (p less than 0.01) at both 12 and 48 h after terbutaline, compared to results without treatment, indicating desensitization also of the bronchial beta-adrenergic receptors. We conclude that the early bronchial responsiveness to allergen is increased following a period of continuous treatment with a beta-adrenergic receptor agonist in some asthmatic patients and that the capability of a beta-agonist to reverse allergen-induced bronchoconstriction is attenuated after beta-agonist treatment.

Adult

Influence of angiotensin-converting enzyme inhibition on sympathetic neurotransmission: possible roles of bradykinin and prostaglandins.

Effects of angiotensin-converting enzyme (ACE) inhibitors on sympathetic neurotransmission have generally been ascribed to their ability to block angiotensin II (Ang II) formation, but they also inhibit the degradation of vasoactive kinins, such as bradykinin. The latter may, in turn, lead to enhanced prostaglandin formation. Prostaglandins have been reported to influence sympathetic neurotransmission at different sites; much less is known about the influence of bradykinin due to the lack (until recently) of specific and effective bradykinin receptor antagonists, and difficulties with measurements of true plasma or tissue levels of bradykinin. Bradykinin may modulate sympathetic activity via a central stimulatory action and via activation of sensory input to the central nervous system; however, the importance of bradykinin for central effects of ACE inhibition remain to be established. At the sympathetic neuro-effector junction, results are more conflicting. Thus, bradykinin has been reported to enhance or reduce peripheral noradrenergic transmission or even lack any effect. Possible explanations for the differing results obtained include species and/or tissue differences in the responses to bradykinin. Also, the effects of bradykinin may be influenced by enhanced formation of prostaglandins and/or endothelium-derived relaxing factor (EDRF), which may contribute to the confusion. As most studies have been performed under in vitro conditions and with high doses of bradykinin, the physiological relevance of the data may be questioned.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors

Detection of benzodiazepine intake in therapeutic doses by immunoanalysis of urine: two techniques evaluated and modified for improved performance.

We evaluated the EMIT (enzyme-multiplied immuno technique) and FPIA (fluorescence polarization immunoassay) urine screening systems for detection of benzodiazepine intake. Healthy male volunteers were given single oral therapeutic doses of alprazolam (2 mg), chlordiazepoxide (25 mg), flunitrazepam (1 mg), lorazepam (3.75 mg), nitrazepam (5 mg), and triazolam (0.25 mg), after which urine was collected for the next 32 h. The EMIT method failed to detect the intake of flunitrazepam, lorazepam, and nitrazepam. FPIA did not detect the intake of chlordiazepoxide, flunitrazepam, lorazepam, nitrazepam, and triazolam. Modification of the EMIT method to include enzymatic hydrolysis did not significantly alter the results obtained with this method. A modification of the FPIA method to include enzymatic hydrolysis and a lower cutoff value improved the results considerably, so that we reliably detected all studied substances but flunitrazepam. We conclude that (a) both EMIT and FPIA techniques, when used as intended by the manufacturers, are unreliable for the detection of intake of therapeutic doses of these benzodiazepines, and (b) the described modification of the FPIA should provide a much improved tool for detection of benzodiazepine intake.

Adult

Effects of sympatho-adrenal activation on the finger microcirculation in mild hypertension.

Finger skin circulatory responses to three forms of sympatho-adrenal activation were investigated in 14 patients with mild hypertension and 14 matched normotensive controls. Finger nailfold skin capillary blood cell velocity was measured by video-photometric capillaroscopy and finger pulse volume by strain-gauge plethysmography (digital arterial pulse amplitude; DAPA). DAPA decreased more markedly in the normotensive as compared with the hypertensive group during mental arithmetic stress (38 vs. 19%; P less than 0.05) and a cold pressor test (55 vs. 32%; P less than 0.05). Intravenous infusions of adrenaline (0.1-0.8 nmol/kg/min) decreased DAPA in normotensives but not in hypertensives (P less than 0.05). Capillary blood cell velocity was similar in the two groups at rest and decreased promptly and to a similar extent in both groups following mental arithmetic, adrenaline infusion and the cold pressor test (by approximately 60, 60 and 35%, respectively). It is concluded that mental stress and the cold pressor test induce instantaneous and marked effects on the skin circulation via neurogenic activation. The less marked effect on DAPA in the hypertensive group may reflect an elevation of basal vascular tone and/or early structural vascular changes in mild hypertension. The discrepancy between total finger and capillary circulatory responses to adrenaline may be attributable to different adrenoceptor populations and/or sensitivity in arteriovenous shunts, as compared with precapillary vessels.

Adrenal Glands