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M F Scanlon

Publications and source records attributed to M F Scanlon.

At least 145 records · Page 8Linked to original sources

Hypothalamic D2 receptors mediate the preferential release of somatostatin-28 in response to dopaminergic stimulation.

We have studied the effect of dopamine (DA) together with agonist and antagonist drugs of varying specificity on the release of immunoreactive forms of somatostatin (SS) from the perfused, adult rat hypothalamus in vitro. Levels of SS increased from 14.7 +/- 3.7 pg (mean +/- SE) under basal conditions to 137 +/- 23.0 pg after exposure to 10(-6) M DA. This dopaminergic effect was mimicked by the specific D2 agonists bromocriptine (10(-7) M) and LY 171555 (10(-6) M) but not by the D1 agonist SKF 38393A (10(-6) M). The stimulatory action of DA (10(-6) M) was blocked by the active (d) but not the inactive (l) isomer of butaclamol (10(-7) M). Similar blockade was achieved with the specific D2 antagonists metoclopramide (10(-8) M) and domperidone (10(-8) M), whereas the D1 antagonist SCH 23390 partially blocked the stimulation of DA but only when used at X100 greater concentration (10(-6) M). SCH 23390 (10(-8) M) did not affect the dopaminergic stimulation of SS release. HPLC characterization of the immunoreactive forms of SS yielded two peaks which corresponded to SS-28 and SS-14. The ratio of these forms varied significantly under different conditions. In the basal state the ratio of SS-28 to SS-14 was 1:4.4; in response to stimulation with DA, the ratio was 1:1.7 and in response to depolarization with 60 mM K+ the ratio was 1:3.1. In conclusion, the stimulatory action of DA on SS release is mediated via hypothalamic D2 receptors. Furthermore dopaminergic stimulation increases the molar ratio of SS-28 to SS-14 in the total immunoreactive SS which is released.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Atropine blockade of growth hormone (GH)-releasing hormone-induced GH secretion in man is not exerted at pituitary level.

The role of acetylcholine (Ach) in the regulation of human GH secretion was assessed using atropine, which selectively blocks cholinergic muscarinic receptors. Paired tests were performed in seven normal subjects using GH-releasing hormone (GHRH) 1-44 (1 microgram/kg iv), with and without atropine pretreatment (1 mg im). The GHRH 1-44-induced GH secretory peak [20.7 +/- 4.5 (SEM) ng/ml] was completely blocked by atropine administration (2.3 +/- 0.6 ng/ml) (P less than 0.01). To determine whether this atropine blockade was at the pituitary level, a series of in vitro studies were conducted using monolayer cultures of cells from bovine anterior pituitary glands. GHRH 1-44 (10(-8) M) stimulated bovine GH release (11.1 +/- 1.5 micrograms/ml) as compared to control values (5.1 +/- 0.4 microgram/ml) (P less than 0.01). This response was not altered by 10(-6) M atropine (14.9 +/- 0.9 microgram/ml). Similar results were obtained with GHRH, 10(-9) M, with or without atropine, 10(-7) M. Addition of 10(-6) M Ach to the incubation medium significantly increased bovine GH release (12.7 +/- 1.2 microgram/ml) and the effect of 10(-6) M Ach and 10(-8) M GHRH was additive (20.9 +/- 2.1 micrograms/ml) (P less than 0.01). Similar results were obtained with Ach, 10(-5) M, and GHRH, 10(-9) M. Atropine or eserine alone did not alter basal GH secretion, and atropine blocked Ach-stimulating activity. In conclusion, atropine blockade of GHRH-induced GH secretion appears to be exerted at a site other than pituitary.

Acetylcholine↗

Growth hormone responses to growth hormone-releasing factor (1-29) in euthyroid, hypothyroid and hyperthyroid rats.

In order to investigate whether the impaired GH secretion associated with hypothyroidism and hyperthyroidism is due to a hypothalamic or a pituitary disorder, we have studied plasma GH responses to GH-releasing factor (1-29) (GRF) in euthyroid, hypothyroid and hyperthyroid rats. Hypothyroid rats showed a significant (P less than 0.001) reduction in GH responses to GRF (5 micrograms/kg) at 5 min (350 +/- 35 vs 1950 +/- 260 micrograms/l), 10 min (366 +/- 66 vs 2320 +/- 270 micrograms/l) and 15 min after GRF injection (395 +/- 72 vs 1420 +/- 183 micrograms/l; mean +/- S.E.M.) compared with euthyroid rats. Hyperthyroid rats showed a significant (P less than 0.05) decrease in GH responses to 5 micrograms GRF/kg after 30 min (200 +/- 14 vs 325 +/- 35 micrograms/l) but not at other time-points, or after the administration of 1 microgram GRF/kg. These data indicate that in hypothyroidism and perhaps hyperthyroidism there is an alteration in the responsiveness of the somatotroph to GRF administration.

Animals↗

Effects of thyroid status on brain catecholamine biosynthesis in adult rats: assessment by a steady-state method.

Effects of thyroid status on brain catecholamine turnover in adult rats were investigated using a steady-state method. Rats were treated for 3 weeks with s.c. injections of L-thyroxine (0.4 mg/kg), aminotriazole in drinking water (0.1%, w/v) or vehicle. After 2 weeks of treatment rats were implanted chronically with lateral intracerebroventricular (i.c.v.) cannulae. They were injected i.c.v. with [3H]tyrosine 1 week later. Catecholamine and tyrosine content and specific activity were measured in mediobasal hypothalamus, anterior hypothalamus and striatum, using high-performance liquid chromatography with electrochemical detection. Thyroxine treatment resulted in a significant increase in noradrenaline and dopamine synthesis localized to the mediobasal hypothalamus. Conversely, aminotriazole treatment resulted in a significant decrease in noradrenaline synthesis localized to the mediobasal hypothalamus. The localization of these changes in catecholamine turnover to the mediobasal hypothalamus suggests that they may be specific functional effects which are of importance in the overall integrated control of thyroid function.

Amitrole↗

Management of selected patients with hyperprolactinaemia by partial hypophysectomy.

Results are reported in 35 patients with prolactinomas who underwent pituitary surgery within the past five years. After surgery prolactin concentrations became normal in 26 patients and symptoms were alleviated, and nine normal pregnancies were achieved in seven women, including all those who had complained of infertility. Normal prolactin concentrations were restored in 16 of 17 patients with tumours 5-19 mm in diameter but in only six of 11 with tumours less than or equal to 4 mm and four of seven with tumours greater than or equal to 20 mm. Normal prolactin concentrations were restored in all those with preoperative concentrations below 1000 mU/l but in none of those with concentrations above 10 000 mU/l. Although not all of the patients were followed up for five years, hyperprolactinaemia did not recur in any patient whose prolactin concentration had returned to normal six weeks after surgery. This included 16 patients with macroprolactinomas (greater than 10 mm in diameter), who were followed up for from two to five years. These data contrast strikingly with those reported by others at similar stages of follow up and show clearly that partial hypophysectomy offers an acceptable alternative treatment for selected patients with prolactinomas.

Adenoma↗

Characterization and partial purification of the sodium-potassium-ATPase inhibitor released from cultured rat hypothalamic cells.

An inhibitor of sodium-potassium-ATPase has been partially purified from the culture medium obtained from hypothalamic cells maintained in a capillary membrane perfusion system, and some of the properties of this inhibitory factor have been investigated. Gel filtration (Sephadex G-25 Superfine) of heat-treated medium (80 degrees C for 10 min) resulted in elution of inhibitory activity in the post-salt fraction. These fractions inhibited active (i.e. sodium-potassium-ATPase-mediated) sodium transport in intact human erythrocytes, displaced [3H]ouabain from its binding site, and directly inhibited canine kidney sodium-potassium-ATPase as measured by NADH oxidation. High-performance liquid chromatography (on Hypersil ODS) of these fractions after desalting yielded one region which showed inhibitory activity on all three assays. Inhibition of sodium-potassium-ATPase was dose-related and filtered through an Amicon UM10 membrane. Incubation of this material with dispase, carboxypeptidase A, chymotrypsin, and prolidase destroyed inhibitory activity, whereas trypsin and leucine aminopeptidase were ineffective. These studies show that hypothalamic neurones release a low molecular weight heat-stable peptide which inhibits active sodium transport, ouabain binding, and sodium-potassium-ATPase.

Animals↗

Diagnostic value of thyrotrophin releasing hormone tests in elderly patients with atrial fibrillation.

A prospective study was carried out to compare clinical and biochemical thyroid states with responses of thyroid stimulating hormone (TSH) to thyrotrophin releasing hormone (TRH) in elderly patients with either atrial fibrillation (n = 75; mean age (SD) 79.3 (6.0) years) or sinus rhythm (n = 73; mean age 78.4 (5.6) years) admitted consecutively to the department of geriatric medicine. No patient in either group had symptoms or signs of hyperthyroidism. Overall, the TSH responses to TRH did not differ significantly between the two groups. Ten (13%) of the patients with atrial fibrillation (of whom four had raised thyroid hormone concentrations) and five (7%) of the patients with sinus rhythm showed no TSH response to TRH while 26% of each group (20 and 19 patients, respectively) showed a much reduced response. Only one of 13 patients with apparently isolated atrial fibrillation showed no TSH response to TRH, and none of these 13 patients was hyperthyroid. In particular, three patients (two with atrial fibrillation and one with sinus rhythm) who showed no TSH response to TRH at presentation exhibited a return of TSH response to TRH at follow up six weeks later. In conclusion, reduced or absent TSH responses to TRH are common in sick elderly patients whether they have atrial fibrillation or sinus rhythm and whether they are euthyroid or hyperthyroid biochemically. An absence of response is therefore an uncertain marker of hyperthyroidism in these groups of patients, and diagnosis and ablative treatment should be based at least on the presence of raised circulating free triiodothyronine or free thyroxine concentrations, or both.

Aged↗

Prolactinomas.

Explore the source record for details and available documents.

Humans↗

Hidradenitis suppurativa: evidence for an endocrine abnormality.

Women patients with premenstrual exacerbation of hidradenitis suppurativa have been studied to determine if an endocrine abnormality can be detected. A functional disorder of the hypothalamopituitary axis was found in 13 patients with hidradenitis when compared with 9 controls. In response to a combined thyrotrophin releasing hormone and gonadotrophin releasing hormone test, the prolactin and TSH responses were significantly greater in the hidradenitis patients than the controls. No significant differences were found in the mean basal levels of oestrogen, progesterone, testosterone, dehydroepiandrosterone sulphate, T3 and T4. These results may reflect a disturbance of feedback signals from peripheral hormones, rather than a primary dysfunction of the control of specific anterior pituitary cells.

Adult↗

Differential effects of acute DA receptor blockade with domperidone on LH and TSH release in patients with hyperprolactinemia.

Since dopamine (DA) has been implicated in the inhibitory control of both TSH and LH, we have compared TSH and LH levels following dopamine (DA) receptor blockade with domperidone in patients with hyperprolactinemia due to presumed prolactinomas. Eight euthyroid patients (aged 19-37 yr) with presumed prolactinomas each received domperidone (10 mg iv) at 11:00 and 23:00 h and tests were separated by at least one week. Basal TSH levels were significantly greater at 23:00 than at 11:00 h (2.7 +/- 0.5 vs 1.7 +/- 0.4 mU/l, mean +/- SE, p less than 0.01) whereas basal LH levels did not differ. All subjects showed clear rises in basal TSH levels following drug administration and these were significantly greater at 23:00 than at 11:00 h (p less than 0.02 at each time point). In contrast there was no alteration in LH levels following drug administration at either time of day. These data suggest that the mechanisms underlying the dopaminergic control of TSH and LH are different in these patients. Furthermore the data argue against an anterior pituitary or median eminence site of action of DA in the inhibition of LH release in hyperprolactinemia since domperidone does not penetrate the blood brain barrier to any appreciable extent.

Adult↗

An in vivo steady-state method for the determination of catecholamine biosynthesis in the rat brain using high-performance liquid chromatography with electrochemical detection.

A technique is described for the measurement of steady-state catecholamine (CA) synthesis in the rat brain in vivo, using [3H]tyrosine incorporation with high-performance liquid chromatography (HPLC) and electrochemical detection. Adult male rats chronically implanted with lateral intracerebroventricular (i.c.v.) cannulas, were injected i.c.v. with [3H]tyrosine. CA and tyrosine content and specific activity were measured in mediobasal hypothalamus, anterior hypothalamus and striatum. A time-dependent increase in CA synthesis occurred in all tissues over 20 min post-i.c.v. injection. The technique described may prove to be useful in the assessment of central neurotransmitter turnover in various physiological and pharmacological settings.

Animals↗

Anticonvulsant therapy and cortisol elimination.

The effect of anticonvulsant therapy on early morning concentration of cortisol in saliva and plasma was assessed in a group of epileptic patients receiving regular phenytoin medication and the results compared with those obtained from a group of normal subjects not receiving drug therapy. Values of cortisol in matched samples of plasma (331 +/- 23 nmol l-1, mean +/- s.e. mean, n = 6) and saliva (11.4 +/- 0.9 nmol l-1, mean +/- s.e. mean, n = 9) provided by epileptics did not differ significantly from those in the plasma (334 +/- 41 nmol l-1, mean +/- s.e. mean) and saliva (12.0 +/- 2.0 nmol-1, mean +/- s.e. mean) of healthy volunteers (n = 12). Six anticonvulsant-treated epileptics, together with six age and sex matched normal volunteers, each received intravenous dexamethasone (1 mg h-1) to determine the half-life of cortisol in plasma and saliva. In the anticonvulsant-treated group, the half-life of cortisol in plasma (73 +/- 5 min, mean +/- s.e. mean) and saliva (83 +/- 5 min, mean +/- s.e. mean) was reduced significantly (P less than 0.01 plasma, P less than 0.05 saliva) from that observed in healthy volunteers. In patients, the half life of cortisol and antipyrine showed a significant correlation (r2 = 0.75, P less than 0.05 plasma, r2 = 0.71, P less than 0.05 saliva). The antipyrine half-life in saliva was reduced significantly (P less than 0.02) and the antipyrine clearance rate, increased significantly (P less than 0.005) in the treated epileptic group, reflecting drug-induced microsomal enzyme production.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

The effects of cholinergic blockade on the growth hormone and prolactin response to insulin hypoglycaemia.

The effect of cholinergic blockade on growth hormone (GH) and prolactin (PRL) secretion during insulin-induced hypoglycaemia was assessed in six normal male volunteers (mean age 23, age range 21-25). Each subject underwent two insulin tolerance tests with and without atropine. GH responses were significantly lower 45 min after insulin administration with atropine (17.5 +/- 2.5 mU/l (mean +/- SEM) than with placebo (37.6 +/- 3.6 mU/l, P less than 0.0006). In contrast PRL responses were higher (P less than 0.01) at 45 and 90 min after insulin during treatment with atropine. These data demonstrate that cholinergic mechanisms are involved in stimulatory and inhibitory pathways in the medication of the respective GH and PRL responses to insulin induced hypoglycaemia in man.

Adult↗

The influence of oestrogens on the sensitivity of PRL, TSH and LH to the inhibitory actions of dopamine in hyperprolactinaemic patients.

The effects of oestrogen priming on the response of serum PRL, LH and TSH to dopamine (DA) infusion have been studied in hyperprolactinaemia. Seven hyperprolactinaemic females (aged 22-57 years; basal PRL 911-5130 mU/l, normal less than 420 mU/l), had submaximal DA infusions (0.06 micrograms/kg/min) over 3 h. The DA was repeated at the same dose after pretreatment with ethinyl oestradiol (E2) 100 micrograms daily by mouth for 3 d, and after a further 2 week interval, following pretreatment with tamoxifen (TAM) 20 mg twice a day by mouth for 3 d. Ethinyl oestradiol pretreatment stimulated a rise in basal PRL levels in all subjects (mean +/- SE, mU/l; 2903 +/- 761 vs 2293 +/- 684, P less than 0.05) while TAM produced a higher but more variable increase in basal PRL levels (mean +/- SE, mU/l; 3402 +/- 757, P = n.s.). The individual increments in basal PRL levels after both E2 and TAM pretreatment showed a significant positive correlation with the greater decrement in PRL levels during E2 and TAM primed DA infusions (E2, r = 0.93, P less than 0.01, TAM, r = 0.83, P less than 0.05). E2 pretreatment produced a rise in basal LH levels in 5/7 patients, and there was a significant positive correlation between the rise in basal LH levels after E2 and the decremental change in LH levels in E2 primed DA infusions (r = 0.94, P less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Lack of effect of the TRH related dipeptide histidyl-proline diketopiperazine on TSH and PRL secretion in normal subjects, in patients with microprolactinomas and in primary hypothyroidism.

We have studied the effects of the TRH related dipeptide histidyl-proline diketopiperazine [cyclo (His-Pro)] on basal and stimulated TSH and PRL secretion in normal volunteers, in patients with microprolactinomas and in patients with primary hypothyroidism. Cyclo (His-Pro), 400 micrograms intravenously did not alter basal TSH or PRL levels in normal males and females and was also without effect upon the elevated basal TSH and PRL levels in patients with primary hypothyroidism and microprolactinomas respectively. The same dose of cyclo (His-Pro) did not affect the TSH or PRL response to TRH (100 micrograms i.v.) in normal male volunteers. These data indicate that cyclo (His-Pro) does not affect TSH and PRL secretion in man at this dosage. It is also unlikely that this molecule will be of any therapeutic benefit in states of hyperprolactinaemia.

Adult↗

Prediction of response to endocrine therapy in pronounced cyclical mastalgia using dynamic tests of prolactin release.

Many of the endocrine agents currently used to treat symptomatic benign breast disease modify the action or secretion of prolactin. We have compared the responses to hormonal therapy with dynamic assessment of prolactin control in 29 patients with cyclical mastalgia and in 7 patients with non-cyclical mastalgia. The tests of prolactin release used were direct stimulation by TRH or dopaminergic blockade by domperidone. These were carried out before treatment in the mastalgic patients and also in 22 age-matched asymptomatic controls. The response to treatment was assessed using a special pain chart and visual linear analogue scale. Patients with cyclical mastalgia could be divided into two groups: those in whom the peak prolactin release was exaggerated (greater than 4000 mU/l) and those in whom the prolactin release was less marked and similar to control subjects and patients with non-cyclical mastalgia. Patients in the cyclical mastalgia group with a high peak prolactin release responded to hormonal treatment significantly more frequently (90%) than those with a normal prolactin release (50%). Basal prolactin levels did not correlate with the response to treatment. In the non-cyclical mastalgia group, no patient had peak prolactin release greater than 4000 mU/l and none responded to therapy. This study indicates that dynamic tests of prolactin release in cyclical mastalgia may be useful in predicting the subsequent satisfactory response to endocrine therapy if a high peak prolactin release is induced.

Adult↗

Relationships between the circadian rhythms of TSH, prolactin and cortisol in surgically treated microprolactinoma patients.

Pharmacological doses of glucocorticoids inhibit TSH release both in vivo and in vitro and since the circadian rhythms of TSH and cortisol show a reciprocal relationship, the hypothesis has been advanced that changes in cortisol levels may be a primary determinant of circadian TSH changes. We have tested this hypothesis by studying the relationship between circadian cortisol and TSH rhythms in subjects before and during blockade with metyrapone. Seven patients were studied during their routine post-operative assessment following selective transethmoidal adenomectomy for microprolactinomas. PRL levels were restored to normal (less than 420 mU/l) in all patients by surgery (pre-op: 930-2752 mU/l, post-op: 33-376 mU/l) and the patients also had normal pituitary function in other respects. Blood was sampled hourly for 24 h before and on the third day of treatment with metyrapone (250 mg, 2 hourly). In order to compare circadian rhythms, hormonal data were subjected to cosinor analysis which involved fitting of the data with a cosine function using the method of least squares. The 6% cross reactivity of the cortisol antibody with 11-deoxycortisol was taken into account during the calculation of results. All subjects showed a normal cortisol rhythm which was strikingly blunted during metyrapone treatment. Group mean (+/- SD) TSH mesors, amplitudes and acrophases for control and metyrapone treated subjects were 1.5 +/- 0.26, 1.29 +/- 0.48; 0.46 +/- 0.26, 0.23 +/- 0.13 and -49 degrees +/- 9.8 degrees; -62 degrees +/- 2.7 degrees respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗