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Biomedical subjects

M Holbrook

Publications and source records attributed to M Holbrook.

33 records · Page 2Linked to original sources

Effects of zaprinast and rolipram on platelet aggregation and arrhythmias following myocardial ischaemia and reperfusion in anaesthetized rabbits.

1. This study was designed to compare the effects of two selective inhibitors of certain phosphodiesterase (PDE) isoenzymes on arrhythmias induced by coronary artery occlusion and reperfusion. The drugs used were zaprinast which inhibits guanosine 3':5'-cyclic monophosphate (cyclic GMP)-specific PDE (PDE V) and rolipram which inhibits cyclic GMP-insensitive, adenosine 3':5'-cyclic monophosphate (cyclic AMP)-specific PDE (PDE IV). 2. Pretreatment of anaesthetized rabbits with zaprinast (300 micrograms kg-1 plus 30 micrograms kg-1 min-1) had no significant effect on ischaemia- or reperfusion-induced ST-segment changes, or arrhythmias. In contrast, rolipram (30 micrograms kg-1 plus 3 micrograms kg-1 min-1) and (100 micrograms kg-1 plus 10 micrograms kg-1 min-1) increased the severity of arrhythmias. With the higher dose of rolipram, ST-segment changes were increased in magnitude and mortality due to ventricular fibrillation during ischaemia or reperfusion was increased to 80% compared with 30% in controls (n = 10 per group). 3. Zaprinast caused small but significant increases in heart rate and arterial blood pressure whereas rolipram decreased diastolic arterial pressure, increased left ventricular (LV) dP/dtmax and substantially increased heart rate. 4. At the end of each experiment platelet aggregation was measured ex vivo. Pretreatment of rabbits with either dose of rolipram had no significant effect on platelet aggregation induced by adenosine diphosphate (ADP), collagen, arachidonic acid or thrombin or on isoprenaline- or prostacyclin-induced inhibition of aggregation. Aggregatory responses to ADP and collagen were increased in platelets obtained from rabbits which had received zaprinast. 5. These results indicate that in the dose used here, the PDE V inhibitor zaprinast had no significant effect on arrhythmias. The effects of the PDE IV inhibitor rolipram on haemodynamics, combined with its lack of antiplatelet activity, may have contributed to the exacerbation of arrhythmias observed during myocardial ischaemia and reperfusion.

3',5'-Cyclic-AMP Phosphodiesterases↗

Antihypertensive effects of an aromatase inhibitor in inbred salt-sensitive rats.

Rats susceptible to the hypertensive effect of dietary salt (SS/Jr) have excess urinary 19-nordeoxycorticosterone compared with salt-resistant control rats (SR/Jr). 19-Nordeoxycorticosterone is a hypertensinogenic mineralocorticoid, but whether it contributes to the salt sensitivity of SS/Jr is unknown. This study sought to evaluate the contribution of 19-nordeoxycorticosterone to the salt sensitivity of SS/Jr by lowering its production with an aromatase inhibitor, 10-propargyl-androst-4-ene,3,17-dione (19-acetylenic-androstenedione, 19-AA). This aromatase inhibitor also preferentially inhibits nonaromatizing adrenal 19-hydroxylation, an essential step in the formation of 19-nordeoxycorticosterone. To test this hypothesis, inhibitor (120 mg) or vehicle pellets were implanted into male and female weanling SS/Jr at 42 days of age. A high salt diet (8% NaCl) was started and two additional pellets were implanted at 52 and 62 days of age. Systolic blood pressure was measured in all animals and urinary corticosteroids in males. Compared with vehicle, the inhibitor lowered blood pressure at 50 days of age (when it could first be measured) until 64 days of age in females and 71 days of age in males. Corticosterone and aldosterone levels were not different between 19-AA- and vehicle-treated SS/Jr. 19-Nordeoxycorticosterone levels, however, were mildly reduced with the inhibitor (0.05 less than p less than 0.10). After 28 days of high salt diet all 23 of the 19-AA-treated SS/Jr were alive, whereas almost one half of the control animals had died. These data demonstrate that 19-AA attenuates the hypertension in SS/Jr; this effect may be through reduction in 19-nordeoxycorticosterone production.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

Elevated 18-hydroxy-corticosterone in inbred salt-sensitive rats.

Rats susceptible to the hypertensive effect of dietary salt (SS/Jr) have excess 18-hydroxydeoxycorticosterone (18-OH-DOC) and 19-nor-DOC compared to control rats (SR/Jr). This may be caused by an abnormal adrenal 11 beta-hydroxylase, which catalyzes the 11 beta, 18, and 19-hydroxylations of DOC. A comparison of the urinary products of this enzyme including 18-OH-DOC, 19-nor-DOC, corticosterone (B), and 18-OH-B have not been described in the SS/Jr. Therefore, these steroid products were measured at 7 and 12 weeks of age in 36 weanling male and female, SS/Jr and SR/Jr (n = 9 in each group), on a low-salt diet. In both the male and female SS/Jr urinary free levels of 18-OH-DOC, 19-nor-DOC, and 18-OH-B were elevated, while B was not different at 6 and 10 weeks of age. The largest increases were in 18-OH-B levels, and these levels correlated with 18-OH-DOC and B but not 19-nor-DOC. The high degree of correlation between these steroids probably reflects their closely related dependence on adrenal 11 beta-hydroxylase biosynthesis.

18-Hydroxycorticosterone↗

19-Hydroxylase inhibition of adrenal mitochondrial P450 11 beta/18/19-hydroxylase by a suicide inhibitor.

19-Nor-deoxycorticosterone (19-nor-DOC) is a mineralocorticoid that is increased in some forms of experimental and human hypertension. The pivotal step in 19-nor-DOC biosynthesis is adrenal P450 19-hydroxylase, but this enzyme has not been clearly distinguished from P450 11 beta/18-hydroxylase. This study attempted to specifically inhibit adrenal 19-hydroxylation of deoxycorticosterone (DOC) using a suicide aromatase inhibitor, 19-acetylenic androstenedione (19-AA). Purified bovine P450 11 beta/18/19-hydroxylase was incubated with excess substrate DOC, adrenodoxin, and adrenodoxin reductase in the presence of increasing doses of the inhibitor, 19AA. 11 beta-, 18-, and 19-hydroxylation were measured by quantification of corticosterone, 18-OH-DOC, and 19-OH-DOC respectively. Measurements of these products demonstrated that 11 beta- and 18-hydroxylation was not inhibited whereas 19-hydroxylation was inhibited as manifested by decreased 19-OH-DOC formation (p less than .05). The IC50 of 19-AA was approximately 10(-12) M. The specific inhibition of 19-hydroxylation suggests that the 19-hydroxylase may be an enzyme distinct from the P450 11 beta/18-hydroxylase. This further suggests that 19-nor-DOC biosynthesis may be under independent regulation and may be amendable to specific in vivo inhibition.

Adrenal Glands↗

Comparison of the effects of isobutylmethylxanthine and milrinone on ischaemia-induced arrhythmias and platelet aggregation in anaesthetized rabbits.

1. The aim of this study was to compare the effects of the non-selective phosphodiesterase (PDE) inhibitor, isobutylmethylxanthine (IBMX) and the selective PDE III inhibitor, milrinone, in a rabbit model of acute myocardial ischaemia. 2. Coronary artery occlusion caused changes in the ST-segment of the ECG and ectopic activity in all control rabbits. Ventricular fibrillation occurred in 10 out of 14 (71%) of these animals. Pretreatment with IBMX 100 micrograms kg-1 plus 10 micrograms kg-1 min-1, starting 10 min before coronary artery occlusion, reduced ischaemia-induced ST-segment changes and ventricular fibrillation occurred in only 10% of this group (n = 10). A similar dose of milrinone had no antiarrhythmic activity, whereas with a lower dose of milrinone, 30 micrograms kg-1 plus 3 micrograms kg-1 min-1 (n = 10), only 30% of rabbits fibrillated and ST-segment changes were attenuated. 3. Acute administration of both IBMX and milrinone reduced arterial blood pressure. With the higher dose of milrinone a significant effect was still present after 10 min of drug infusion. A greater hypotensive response to the higher dose of milrinone was observed in the rabbits which subsequently fibrillated during ischaemia. A marked tachycardia was also observed after administration of the higher dose of milrinone. 4. At the end of the experiment platelet aggregation was studied ex vivo. ADP-induced aggregation was reduced by pretreatment of the rabbits with milrinone but not IBMX. Both PDE inhibitors enhanced the ability of isoprenaline to inhibit ADP-induced platelet aggregation but milrinone was more effective, particularly at the higher dose. The results demonstrate that IBMX was antiarrhythmic but that this activity was not directly related to inhibition of platelet aggregation. Adverse haemodynamic effects may explain the failure of milrinone to have similar activity during myocardial ischaemia.

1-Methyl-3-isobutylxanthine↗

Identification of 19-hydroxy-progesterone in human placenta.

We have tentatively demonstrated the presence of a 19-hydroxylated C21 steroid, 19-hydroxy-progesterone, in normal human placenta. A 19-hydroxylated steroid such as 19-hydroxy-progesterone, if produced by the placenta, could serve as a precursor for such hypertensinogenic 19-nor-steroids as 19-nor-deoxycorticosterone and 19-nor-progesterone. Freshly delivered, homogenized placental tissue was extracted and subjected to thin layer chromatography. A steroid corresponding to standard 19-hydroxy-progesterone was subsequently purified in HPLC, where authentic 19-hydroxy-progesterone and the sample had the same retention time. The identity of the sample was further confirmed by repeat HPLC after acetylation and mass spectrometry. Our experiment indicates that 19-hydroxy-progesterone is present in term placental tissue, where it appears to be synthesized.

Acetylation↗

Selective 19-hydroxylase inhibition by an aromatase inhibitor, 4-hydroxyandrostenedione.

19-Nor-deoxycorticosterone is a newly recognized mineralocorticoid which has been associated with some forms of genetic, experimental, and human hypertension. To further examine this relationship, specific inhibitors of 19-nor-deoxycorticosterone biosynthesis must be developed. Since 19-hydroxylation is the pivotal step in both 19-nor-deoxycorticosterone biosynthesis and aromatization of androgens to estrogens, we evaluated an aromatase inhibitor, 4-hydroxyandrost-4-ene-3,17-dione on the inhibition of 19-hydroxylation in both rat and human adrenal mitochondria in vitro and 19-nor-deoxycorticosterone production and blood pressure in spontaneously hypertensive rats in vivo. Adrenal mitochondria from 48 male Sprague-Dawley rats and 1 patient with an aldosterone-producing adenoma were incubated in the presence of deoxycorticosterone substrate both with and without 4-hydroxyandrost-4-ene-3,17-dione. 4-Hydroxyandrost-4-ene-3,17-dione produced significant inhibition of 19-hydroxy-deoxycorticosterone production in both rat and human adrenal mitochondria, with a smaller and not significant inhibition of corticosterone and 18-hydroxy-corticosterone. 4-Hydroxyandrost-4-ene-3,17-dione given subcutaneously to spontaneously hypertensive rats lowered 19-nor-deoxycorticosterone by 69% and completely abolished hypertension compared to Wistar-Kyoto controls. These data demonstrate that 4-hydroxyandrost-4-ene-3,17-dione is a specific inhibitor of 19-hydroxylase, that it lowers 19-nor-deoxycorticosterone production and prevents hypertension in the spontaneously hypertensive rat. These studies reinforce the possible pathogenic significance of 19-nor-deoxycorticosterone in hypertension in spontaneously hypertensive rats.

Androstenedione↗

Antihypertensive effects of an aromatase inhibitor in the spontaneously hypertensive rat.

Recent studies from this laboratory have demonstrated that 19-nor-deoxycorticosterone, a potent mineralocorticoid, has been excreted in excess in the urine of young spontaneously hypertensive rats (SHR). Although urinary 19-nor-deoxycorticosterone levels decline before the onset of hypertension, preliminary evidence suggests that 19-nor-deoxycorticosterone is further oxygenated to other steroid products in older SHR. Since 19-hydroxylation is the essential first step in the formation of 19-nor-deoxycorticosterone from deoxycorticosterone and since the mechanism-based aromatase inhibitor 10-propargyl-androst-4-ene,3,17-dione preferentially inhibits 19-hydroxylation, this agent was administered to weanling SHR to determine whether inhibition of 19-nor-deoxycorticosterone formation could modify or prevent hypertension. Accordingly, either 10 mg of 10-propargyl-androst-4-ene,3,17-dione or vehicle (control) was injected daily for several weeks in 4.5 week-old SHR. Injection of 10-propargyl-androst-4-ene,3,17-dione reduced urinary free 19-nor-deoxycorticosterone and retarded the development of hypertension compared with the effect of vehicle injection (p less than 0.05). Mean blood pressure levels in SHR receiving 10-propargyl-androst-4-ene,3,17-dione were lower than those in SHR receiving vehicle for each of the first 8 weeks of treatment (p less than 0.05). These data support the importance of 10-nor-corticosteroids in the pathogenesis of hypertension in SHR.

Aging↗

An activities index for use with stroke patients.

Scales of 'Activities of Daily Living' measure only a patient's ability for self-care. There is no brief scale to measure lifestyle, although this would be useful in determining rehabilitation goals. This paper describes such a scale, developed for use with stroke patients. The data obtained relate to pre-morbid and post-stroke levels of activities. Factor analysis indicates three major factors (domestic chores, leisure/work, outdoor activities). Two of these factors are sex-linked, as predicted. Some evidence is noted of the sensitivity of the index to severity of stroke.

Activities of Daily Living↗

The Bristol Stroke Unit.

The Bristol Stroke Unit was set up in 1975 in order to provide a service for stroke patients and to undertake both service and biomedical research. During the first 5 years, 472 stroke patients were seen and 388 were treated. Detailed information was kept on most patients and this has been used for studies on prediction and outcome. General principles of management evolved and these are itemized. Important developments include the expansion of the Unit remit to include the management of other disabling disorders such as multiple sclerosis, a greater emphasis on service research, and the development of a voluntary service.

Adult↗

19-Nor-corticosteroids in experimental and human hypertension.

Recent reports demonstrate that the 19-nor-corticosteroids (19-nor-DOC) are naturally-occurring substances in hypertensive animal models as well as man. Since some 19-nor-corticosteroids are potent mineralocorticoids, they may have a role in regulating systemic arterial pressure and be involved in the pathogenesis of hypertension. This paper reports the probable biosynthetic pathway, factors regulating the secretion or production, and measurement of 19-nor-DOC in man and the spontaneously hypertensive rat (SHR). These studies demonstrate (1) 19-nor-DOC is greatly influenced by ACTH and dexamethasone but less so by high and low salt diets in normotensive subjects; (2) 19-nor-DOC is greatly increased in some but not all hypertensive patients; (3) 19-nor-DOC is increased in prehypertensive SHR compared to WKY rats. The likelihood of metacorticoid hypertension and possible role of other 19-nor-corticosteroids, including 19-nor-progesterone, are discussed. It can be concluded that 19-nor-corticosteroids are synthesized by extra-adrenal tissues in biologically active quantities. They are increased and possibly pathogenetic in certain states of human and experimental hypertension.

Adrenal Cortex↗

Urinary free 18-hydroxy-11-desoxycorticosterone excretion in normal and hypertensive patients.

One hundred fourteen hypertensives and 20 normal controls were examined using a new clinical technique of measuring 24-h urinary free 18-hydroxy-11-desoxycorticosterone (18-OH-DOC) excretion in response to dietary salt manipulations and ACTH injections. The object was to avoid potential errors of random plasma sampling. Mean urinary free 18-OH-DOC in normals on 110 milliequivalent sodium diet was 1.84 +/- 0.69 microgram (mean +/- SD) and represented about 2% of the daily secretion rate of this steroid. Both in normals and hypertensives, urinary free 18-OH-DOC approximately doubled on low salt (P less than 0.01 for each) and rose about 10 times in response to ACTH injection (P less than 0.05 and P less than 0.01, respectively). Plasma and urinary free 18-OH-DOC showed good correlation in patients with essential hypertension on a low salt diet (r = 0.45, P less than 0.01). Suppressed renin patients showed no propensity toward excess 18-OH-DOC excretion and hypertensives with elevated 18-OH-DOC could not be distinguished by their aldosterone levels, cortisol levels, nor their responses to various stimuli. These data suggest 18-OH-DOC is predominantly secreted under ACTH control and, to a smaller extent, in response to salt changes. Hypertension characterized by chronic overproduction of 18-OH-DOC forms only a small percentage of the hypertensive population. It is proposed that measuring 24-h urinary free 18-OH-DOC excretion may be the best method of assessing its rate of secretion without resorting to injection of radiolabeled material.

18-Hydroxydesoxycorticosterone↗

19-Nor-corticosteroids in health, in hypertensive states in humans including 17 alpha-hydroxylase deficiency and in the spontaneously hypertensive rat (SHR).

Since Gomez-Sanchez isolated 19-nor-DOC from the urine of rats with adrenal regeneration hypertension, we have demonstrated that 19-nor-DOC is a naturally occurring substance in other hypertensive animal models as well as in man. Certain 19-nor-corticosteroids are potent mineralocorticoids and may have a role in the regulation of systemic arterial blood pressure and could be involved in the pathogenesis of hypertension. We have previously demonstrated that 19-nor-DOC is greatly influenced by ACTH and dexamethasone but less so by high and low sodium diets in normotensive human subjects and, that 19-nor-DOC is greatly increased in some but not all hypertensive patients. Studies by Gomez-Sanchez and by our own group have shown that 19-nor-DOC is not secreted by the adrenal gland directly but rather the adrenal secretes a 19-oic-DOC precursor which is converted peripherally by extra-adrenal tissues. Biosynthesis of 19-oic-DOC has been demonstrated to occur by prior hydroxylation of DOC and progressive oxydation to the acidic form. More recently it has been shown that 19-nor-DOC is excreted in the urine of mammals as a free unconjugated compound but to a greater extent as a 21-monoglucuronide. In the studies described we will report the quantification of urinary excretion of 19-nor-DOC as a free and unconjugated compound and also as a 21-monoglucuronide in patients with hypertension as well as in patients with specific forms secondary hypertension such as that found in 17 alpha hydroxylase deficiency which is a syndrome associated with hypogonadism, hypertension and hypokalemia. In this disorder of cortisol biosynthesis adlosterone production, is not elevated and therefore other known and unknown mineralocorticoid account for the excess in mineralocorticoid activity observed. Our study demonstrated that 19-nor-DOC, the potent hypertensinogenic mineralocorticoid was elevated in both plasma and urine from a young woman with 17-alpha hydroxylase deficiency. This patient was examined for various corticosteroids in basal and ACTH-stimulated, dexamethasone-suppressed and cortisol-treated states. In the basal state, urinary and plasma 17 alpha-hydroxy corticosteroids were decreased but the 17-deoxycorticosteroids were extremely elevated including corticosterone, 18-hydroxy corticosterone, tetrahydro corticosterone, tetrahydro-deoxycorticosterone and 18 hydroxy-tetrahydro-DOC. Both basal urinary free 19-nor-DOC was markedly elevated both by HPLC and radioimmunoassay measurements.(ABSTRACT TRUNCATED AT 400 WORDS)

Adrenal Glands↗