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Biomedical subjects

B Tomlinson

Publications and source records attributed to B Tomlinson.

At least 19 recordsLinked to original sources

Clinical pharmacology of carvedilol.

Animal work has shown that carvedilol is a nonselective beta-blocking drug. It has a vasodilator action from alpha-receptor blockade, but there is evidence that it has further action to relax smooth muscle, possibly from calcium channel antagonism. Carvedilol is lipid soluble and 25% bioavailable, and it has a half-life of about 7 h. It lowers blood pressure at rest and reduces the tachycardia and the rise of blood pressure on exercise. It reduces the level of blood pressure reached during isometric exercise or the cold pressor test. Cardiac output at rest is maintained, and the haemodynamics in the compromised heart is improved. It has an important peripheral vasodilator action, peripheral flow being maintained to important organs, e.g. kidneys, despite the fall in blood pressure. Exercising renin and noradrenaline levels are increased, as are the latter at rest. Carvedilol is lipid neutral. Carvedilol shifts the dose-response curve to isoprenaline to the right, as well as to alpha-stimulants such as phenylephrine. Responses to angiotensin are little affected. The ratio of beta- to alpha-blockade has been found to be 7.6 for 50 mg and 12.5 for 100 mg of carvedilol. There is no evidence of a decline in alpha-blockade after 1 week of continuous administration.

Adrenergic beta-Antagonists

Effect of dobutamine on oxygen supply and uptake in healthy volunteers.

We have measured the changes in VO2 and the VO2:DO2 relationship during infusion of dobutamine in healthy volunteers. Nine healthy, adult, non-obese, male physicians were infused with an incremental infusion of dobutamine starting at 2.5 micrograms kg-1 min-1 increasing to 5.0 and then 7.5 micrograms kg-1 min-1 for 15 min each. VO2 and cardiac index were measured every five minutes. VO2I (VO2m-2) increased from a baseline of 128 (SEM 6.1) ml min-1 m-2 to 159 (8.0) ml min1 m-2 (P < 0.05) at the end of infusion with 7.5 micrograms kg-1 min-1. The corresponding changes for DO2I (DO2 m-2) were from 643 (35) ml min-1 m-2 to 1240 (142) ml min-1 m-2 (P < 0.05). The coefficient of correlation for pairs of VO2 and DO2 values, at baseline and each dobutamine infusion in individual subjects, ranged from 0.89 to 0.99 (mean 0.95, SD 0.03). Dobutamine has potent calorigenic effects; demonstration of a positive correlation between VO2 and DO2 after infusion of dobutamine does not necessarily imply an underlying tissue oxygen debt.

Adult

Isradipine treatment for hypertension in general practice in Hong Kong.

A 6-week open study of the introduction of isradipine treatment was conducted in general practice in Hong Kong. 303 Chinese patients with mild to moderate hypertension entered the study. Side effects were reported in 21% of patients and caused withdrawal from the study in 3 patients. The main side-effects were headache, dizziness, palpitation and flushing and these were not more frequent than reported in other studies with isradipine or with placebo. Supine blood pressure was reduced (P less than 0.01) from 170 +/- 20/102 +/- 6 mmHg to 153 +/- 19/92 +/- 8, 147 +/- 18/88 +/- 7 and 144 +/- 14/87 +/- 6 mmHg at 2, 4 and 6 weeks respectively in evaluable patients. Similar reductions occurred in standing blood pressure and there was no evidence of postural hypotension. Normalization and responder rates at 6 weeks were 86% and 69% respectively. Dosage was increased from 2.5 mg b.d. to 5 mg b.d. at 4 weeks in patients with diastolic blood pressure greater than 90 mmHg and their further response was greater than those remaining on 2.5 mg b.d.

Antihypertensive Agents

The effect of urapidil on responses to phenylephrine, angiotensin and isoprenaline in man.

Intravenous urapidil, 40 mg bolus followed by an infusion of 18 mg.h-1 for 2 h was administered to 6 female non-patient volunteers. Randomised cumulative dose response curves to angiotensin, phenylephrine and isoprenaline were performed before and commencing 30 min after the start of the infusion of urapidil. Urapidil significantly reduced supine systolic blood pressure, 118.5 mm Hg to 105.3. The diastolic blood pressure was not significantly reduced, heart rate was not affected. Urapidil did not affect the responses to angiotensin or isoprenaline. Urapidil inhibited the pressor response to phenylephrine. The dose required to increase systolic blood pressure by 20 mm Hg increased from 156.9 micrograms.min-1 before to 685 micrograms.min-1 during urapidil; Dose ratio from individual values of 4.58. Urapidil concentrations were not significantly different before and after each agonist infusion. It is concluded that urapidil has alpha 1-adrenoceptor blocking activity in man without any non specific vasodilator action and that it is devoid of beta adrenoceptor blocking action.

Adrenergic alpha-Antagonists

Withdrawal phenomena after atenolol and bopindolol: hormonal changes in normal volunteers.

1. In order to observe and compare the withdrawal phenomena which follow treatment with the beta-adrenoceptor blocking drugs, bopindolol (with partial agonist activity PAA) and atenolol (without PAA), two groups of six normal volunteers were studied before, during and after 16 days drug administration. 2. Measurements of plasma levels of cortisol, prolactin, insulin, noradrenaline, adrenaline, glucose and potassium were made during a pre-treatment baseline period, on maximum dose and for 21 days after drug withdrawal. Isoprenaline infusions were given to determine sensitivity of heart rate responses and haemodynamic changes measured in response to physiological manoeuvres. 3. Following atenolol withdrawal the results show hormonal evidence of adrenergic overactivity in the form of elevation of plasma cortisol, insulin and glucose levels. After bopindolol withdrawal there was, in contrast, an overshoot of plasma prolactin and a persistent elevation of plasma potassium and adrenaline post-isoprenaline. 4. The hormonal changes which follow withdrawal of atenolol and bopindolol are associated with haemodynamic changes reported elsewhere (Walden et al., 1990). 5. These observations provide confirmatory evidence of a post beta-adrenoceptor blockade withdrawal syndrome which differs between the two drugs studied and this may reflect the properties of the drugs, in particular the PAA of bopindolol.

Adrenergic beta-Antagonists

Withdrawal phenomena after atenolol and bopindolol: haemodynamic responses in healthy volunteers.

1. The effect of withdrawal of atenolol and bopindolol administration was studied in 12 normal volunteers; six on each drug. 2. Following sub-maximal cycle-ergometer exercise training six sets of base-line observations were made of heart-rate (HR) and blood pressure (BP) responses; supine, 60 degrees head-up tilt, during graduated isoprenaline infusion and sub-maximal cycle exercise. 3. The results show that withdrawal phenomena occur following both drug treatments. Atenolol produced a hypersensitivity to isoprenaline and a small overshoot of HR in response to physiological manoeuvres. In contrast bopindolol produced a prolonged state of reduced sensitivity to isoprenaline and some evidence of overshoot of HR with physiological manoeuvres. The differences between the responses may be explained by the different properties of the two beta-adrenoceptor blocking drugs. 4. Some subjects showed clear evidence of overshoot of HR and BP on exercise demonstrating that certain individuals may be more prone to have withdrawal effects than others. 5. The length of time during which withdrawal phenomena can occur is probably longer than has previously been realised. 6. Hormonal changes were found in the withdrawal period (Walden et al., 1990).

Adrenergic beta-Antagonists

Selective beta-adrenoceptor partial agonist effects of pindolol and xamoterol on skeletal muscle assessed by plasma creatine kinase changes in healthy subjects.

1. The effects of selective beta-adrenoceptor partial agonist activity on plasma creatine kinase (CK) and skeletal muscle symptoms were studied in normal volunteers. 2. A drug with beta 1-selective partial agonist activity (xamoterol) and one with partial agonist activity acting mainly through beta 2-adrenoceptors (pindolol) were each given for 3 weeks in a randomised double-blind crossover study in 10 subjects. Five additional subjects received only one drug. Plasma CK levels were monitored during a baseline placebo run-in phase, the active treatment period and a placebo washout phase which continued until CK levels returned to baseline. 3. The degree of beta-adrenoceptor antagonism was determined by the inhibition of exercise-induced tachycardia and was similar for the two drug doses used. 4. During pindolol administration plasma CK levels rose compared with pretreatment baseline levels and with levels during xamoterol administration which did not rise. After pindolol was withdrawn CK levels reached higher peaks in some subjects after 1-5 days. 5. Muscle cramps were reported by five subjects during pindolol administration and by one of these subjects but to a lesser extent during xamoterol administration. 6. Pindolol may produce this effect, which was not seen with xamoterol, because of its specific beta 2-adrenoceptor partial agonist activity. Elevations in plasma CK produced by this type of drug or its withdrawal may cause confusion in the diagnosis of muscle disease or myocardial infarction unless the myocardial isoenzyme is measured.

Adrenergic beta-Agonists

Family dynamics during pregnancy.

Pregnancy as a transition in family life is perceived as a crisis by many families. Sociodemographic characteristics of families during pregnancy can serve as important sources of information to nurses in drawing out family strengths and providing assistance during this crisis. Family dynamics were measured in 160 women in the third trimester of pregnancy. Half were in their first pregnancy and half were in their second pregnancy. The research question addressed the relationship between family dynamics and several sociodemographic characteristics. Statistically significant relationships were found between the sociodemographic variables of marital and social status, and several dimensions of family dynamics. Families in which couples were married and who enjoyed a higher social status had more positive family dynamics in the dimensions of individuation, stability, flexibility, mutuality and communication. Race, maternal age and parity were not related to level of family dynamics. Strengths in families who have more positive dynamics may be explained by availability of resources, their expertise in using the system, societal approval of marriage and internal family support from the husband. It is essential for nursing care to include systematic family assessment, socialization in effectively using the health care system and individualized family guidance.

Adolescent

Urapidil, a multiple-action alpha-blocking drug.

Investigations in animals indicate that urapidil has a number of actions that may be relevant to its antihypertensive effect. It has an alpha 1-blocking action, a weak beta 1-blocking effect, an interaction with a serotonin receptor and a central depression of sympathetic tone. Urapidil is well absorbed orally with a bioavailability of about 70% and a time to peak concentration of about 4 hours after a sustained release capsule. It is metabolized in the liver at a half-life of 4.7 hours. Peripheral alpha 1-blocking activity has been demonstrated in humans. A shift to the right in the dose-response curve to phenylephrine has been found after urapidil, whereas responses to angiotensin are not affected. Evidence for beta 1-blocking activity is marginal. Urapidil does not inhibit the exercise increase in heart rate. Some investigators have suggested a possible inhibition of isoprenaline tachycardia; others have found no evidence. There is some evidence suggestive of a central action of urapidil in humans as lower single doses result in a decrease in blood pressure and an increase in heart rate. With higher doses the hypotensive effect continues but the tachycardia no longer occurs. However, urapidil has been reported to increase noradrenaline levels, although there has been a report with a high dose reducing vanillylmandelic acid excretion. Evidence for changes in renin is inconsistent. Hemodynamic studies have revealed findings that are compatible with peripheral alpha 1 blockade. After intravenous administration, peripheral resistance is reduced along with arterial pressure, and cardiac output is increased.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Antagonists

Effects of noradrenaline infusion on platelet catecholamine levels and platelet aggregation.

Noradrenaline infusions were administered to 10 normal subjects through stepped doses and continued at 60 ng/kg per min for 2 h. Plasma noradrenaline rose from 1.7 +/- 0.3 to 7.7 +/- 0.7 pmol/ml and platelet noradrenaline rose from 2.1 +/- 0.2 to 2.6 +/- 0.2 pmol/mg protein. There was no change in plasma or platelet adrenaline. Platelet aggregation studies using ADP, adrenaline, collagen and thrombin as aggregants showed no overall change during the course of the infusion. Blood was sampled from a heated hand vein (hot box at 60 degrees C) to test the degree of arterialization. Plasma noradrenaline and blood pO2 and pCO2 showed intermediate levels at this sampling site compared with venous and true arterial values. Changes in platelet noradrenaline content can occur over 2 h when plasma levels are considerably increased by noradrenaline infusion. No change in platelet sensitivity to aggregation was observed. The heated hand vein did not provide true arterial levels of noradrenaline.

Adult

A log-dose-response study of xipamide and its effect on metabolic parameters.

An extended dose-response study with xipamide, using seven doublings of the dose, from 0.3125 to 40 mg/day at 4-week intervals, was carried out in 12 hypertensive patients. Blood pressure showed a progressive decline with doses from 5 to 20 mg, and 40 mg xipamide produced no greater fall. Some subjects showed a maximum fall in blood pressure with a single dose increase but most showed a declining blood pressure over two or more dose increases. Plasma urea increased with doses of 5-40 mg to a similar extent, but there was no fall in the mean potassium level except with the 40-mg dose. Urinary calcium was reduced (from 4.2 to 1.7 mmol/24 h) on the 40-mg dose and the corrected plasma calcium level rose from 2.28 to 2.32 mmol/l. Triglycerides, very-low-density lipoprotein cholesterol and plasma aldosterone increased at the maximum dose; the cholesterol ratio, however, was unchanged.

Blood Pressure

Clinical pharmacology of multiple action compounds.

There are two principal divisions of the beta adrenoceptor blocking drugs in widespread clinical use, non-selective and selective agents, with or without intrinsic sympathomimetic activity. These properties confer differing pharmacological properties. A beta blocking drug with significant intrinsic sympathomimetic activity can be regarded as a multiple action drug. A third division of beta adrenoceptor blocking drugs is a newer development; these, which beside blocking the beta receptor, have an important peripheral vasodilator activity. Labetalol was the first drug of this group, prizidilol followed, but has been withdrawn because of toxicity. Several other agents are now under evaluation including bucindolol, carvedilol, dilevalol (one of the isomers of labetalol) and medroxalol. Celiprolol is an agent which is beta 1 selective and in addition has peripheral vasodilator activity. There are three mechanisms which have been described as responsible for peripheral vasodilation, alpha receptor blockade, beta 2 agonism, and a dilator action independent of either the alpha or beta receptors. Evidence for these various mechanisms is more readily obtainable from animal experiments, but some confirmatory evidence has been obtained in man. Inhibition of alpha stimulation has been found with labetalol, to a small degree with medroxalol and carvedilol, and has been suggested with celiprolol. Beta 2 mediated vasodilatation has been shown by celiprolol, dilevalol and medroxalol, and evidence of a vasodilatation independent of alpha or beta receptors has been obtained with celiprolol and carvedilol. More evidence is required to be sure of the exact contribution of each of these mechanisms. Combined action results in important haemodynamic differences from beta blockade, notably, peripheral resistance is reduced and less effect is seen on cardiac output.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Antagonists

Progress in antihypertensive therapy with a multiple-action drug.

The beta-blockers in clinical use have been classified into 2 major divisions, nonselective or selective agents, and those with or without intrinsic sympathomimetic activity (ISA). These properties confer differing pharmacological properties with some relevance to the treatment of hypertension. A beta-blocker with significant beta 2-ISA can be regarded as a multiple-action drug. A third division of beta-blockers is a newer development; these agents, besides blocking the beta-receptor, possess important peripheral vasodilator activity. Labetalol was the first drug of this group and prizidolol followed, but has been withdrawn because of toxicity. Several other agents now under evaluation include bucindolol and medroxolol, and carvedilol and dilevalol (1 of the isomers of labetalol), which have been the most widely studied in hypertension. Combined action results in important haemodynamic differences compared with pure beta-blockade. Notably, peripheral resistance is reduced, and there is less reduction in, or no effect on, cardiac output. The 3 following mechanisms have been described as responsible for peripheral vasodilatation: alpha-receptor blockade, beta 2-agonism, and a dilator action independent of either the alpha- or beta-receptors. Evidence for these various mechanisms is more readily obtainable from animal experiments, but some confirmatory evidence has been obtained in man. Inhibition of alpha-stimulation has been found with labetalol and to a small degree with medroxalol and carvedilol. beta 2-Mediated vasodilatation has been shown by dilevalol and medroxolol, and evidence of vasodilatation independent of alpha- or beta-receptors has been obtained with carvedilol. More evidence is required to confirm the exact contribution of each of these mechanisms.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Antagonists

Vasodilating mechanism and response to physiological pressor stimuli of acute doses of carvedilol compared with labetalol, propranolol and hydralazine.

There is conflicting evidence regarding the main mechanism of the vasodilating effect with carvedilol at therapeutic doses, and to examine this, single doses of carvedilol 50mg and 100mg were compared with labetalol 400mg, propranolol 160mg, propranolol 80mg plus hydralazine 50mg and placebo in healthy subjects. Dose-response studies (required to increase heart rate or systolic blood pressure by 25 beats/min and 20mm Hg, respectively) were performed with phenylephrine, angiotensin and isoprenaline after each drug, and placebo administration and the effects of physiological pressor stimuli were compared. Phenylephrine systolic pressure dose-response curves were shifted by labetalol (dose ratio 2.4) and both carvedilol doses (dose ratios 50mg 1.9, 100mg 20.2). The slight shift to the right of the angiotensin dose-response curves with hydralazine plus propranolol (dose ratio 1.4) and carvedilol 50mg (dose ratio 1.4) was not significant. beta-Blockade was greatest with propranolol 160mg, followed by carvedilol 100mg, propranolol 80mg plus hydralazine 50mg, carvedilol 50mg and was least with labetalol 400mg (isoprenaline dose ratios required to increase heart rate by 25 beats/min were 55.2, 27.2, 20.2, 14.2, 11.5, respectively). Blood pressure rise with cold pressor and isometric exercise was inhibited most by labetalol. At these acute doses carvedilol displayed some alpha-blockade, but the lower ratio of alpha-blockade to beta-blockade differed from that seen with labetalol, which may account for the different haemodynamic responses at rest and during physiological pressor stimuli with the 2 drugs. There was no definite evidence of direct vasodilator effect.

Adrenergic beta-Antagonists

Clinical pharmacology of urapidil.

Animal investigations suggest that the mechanism of the antihypertensive effect of urapidil may be complex. Suggestions have included an alpha 1-blocking action, a weak beta 1-blocking effect, an interaction with a serotonin receptor and a central depression of sympathetic tone. Peripheral alpha 1-blocking activity has been demonstrated in man, and a shift to the right in the dose-response curve to phenylephrine has been found after administration of urapidil, while responses to angiotensin are not affected. Evidence for beta 1-blocking activity is marginal, but urapidil does not inhibit the exercise-induced increase in the heart rate, and there is only some suggestion of a possible inhibition of isoprenaline-induced tachycardia. Possible central activity may be deduced from the observation that while lower single doses reduce blood pressure and increase the heart rate, with higher doses the hypotensive effect continues but the tachycardia no longer occurs. However, lower doses of urapidil lead to an increase in noradrenaline levels, while changes in renin are less constant, but there has been a report that a high dose reduced vanillylmandelic acid excretion. Urapidil reduces peripheral resistance along with arterial pressure, and cardiac output is increased. In spite of a reduced arterial pressure, renal blood flow is maintained, presumably due to dilation of renal vessels. Urapidil is well absorbed orally with a bioavailability of about 70% and a tmax at about 4 h after a sustained release capsule. It is metabolized in the liver with a t1/2 of 4.7 h. In conclusion there is evidence that urapidil is an alpha 1-blocking drug in man.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Antagonists

Haemodynamics of carvedilol in normal subjects compared with propranolol, pindolol, and labetalol.

Single doses, in log steps, of carvedilol from 12.5 to 200 mg, propranolol 40 to 320 mg, pindolol 2.5 to 20 mg, labetalol 50 to 400 mg, and placebo control were given randomised double blind to six healthy volunteers. Noninvasive measurements of blood pressure and heart rate were made supine, standing, and during cycle exercise 1 and 2 h postdose. All drugs produced a dose-dependent reduction in exercise heart rate, but this was greater for propranolol and pindolol than for carvedilol and labetalol at the dose studied. Exercise systolic blood pressure was similarly reduced but there was less separation in the dose response curves between the various drugs. Supine and standing heart rate was reduced only by propranolol, but supine systolic blood pressure was reduced by carvedilol (50, 100, and 200 mg), propranolol (40, 160, and 320 mg), pindolol (5, 10, and 20 mg), and labetalol (400 mg). Standing systolic blood pressure was reduced by carvedilol (50, 100, and 200 mg) and pindolol (2.5 and 20 mg). The effects of carvedilol on resting blood pressure suggest additional blood pressure lowering properties other than the pure beta-antagonism of propranolol. Effects on exercise heart rate and systolic blood pressure were similar to carvedilol (12.5-200 mg) with labetalol (50-400 mg), but changes in resting systolic blood pressure were less consistent with labetalol.

Adrenergic alpha-Antagonists

The additional properties of beta adrenoceptor blocking drugs.

Beta adrenoceptor blocking drugs are all competitive inhibitors of the beta receptor although they may or may not possess, beta 1-(cardio)selectivity, intrinsic sympathomimetic activity (ISA) or partial agonist activity, alpha-blocking properties, while membrane stabilizing activity is now thought not to be important. Drugs with ISA give less of a reduction in resting and maximal exercising heart rate and consequently in cardiac output, than those without ISA. The possession of alpha-blocking activity also leads to less fall in cardiac output. Overall evidence suggests that peripheral resistance and peripheral blood flow is less reduced by ISA drugs. Post-beta blockade hypersensitivity which may be important in patients with ischemic heart disease if beta blocking drugs are suddenly stopped, is absent after beta-blocking drugs with ISA as they result in down regulation of beta receptors. Beta 1-selective drugs may result in less of a rise in blood pressure in response to isometric exercise, insulin hypoglycemia or smoking. There do not appear to be important differences in the effect on coronary flow. While presently available drugs can produce asthma in susceptible subjects there seems little doubt that beta 1 selective agents have less effect than other beta-blocking drugs, and give less inhibition of sympathomimetic bronchodilators. Nonselective, non ISA, beta-blocking drugs elevate triglycerides, cardioselective drugs possibly less so. Those with ISA may elevate HDL unlike those beta-blocking agents without this property. Beta adrenergic blocking drugs without ISA do not lower resting plasma noradrenaline, evidence suggests an increase; whereas those agents with marked ISA, suggests an increase; whereas those agents with marked ISA, e.g., pindolol, reduce it. Renin levels are lowered, but less so with ISA possessing agents. Some agents, e.g. atenolol, nadolol, sotalol, are hydrophilic, show poor brain penetration, are long-acting, are not liver metabolized, but are excreted by the kidneys unchanged. Others are lipophilic, e.g., metoprolol, propranolol, penetrate the brain, and are liver metabolized. Pindolol is metabolized about 50% by each route. Similarities between beta blocking drugs are dominant but differences are often clinically relevant.

Adrenergic beta-Antagonists