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Biomedical subjects

R Hall

Publications and source records attributed to R Hall.

At least 577 records · Page 32Linked to original sources

Pituitary-thyroid function in Pendred's syndrome.

Pendred's syndrome is reported in three siblings. All were euthyroid, with large goitres and deaf mutism and all had an unusual deposition of pigment in the retina. All had raised circulating levels of triiodothyronine (T-3) and an exaggerated response of thyroid-stimulating hormone (TSH) to thyrotrophin-releasing hormone (TRH). It appears that their compensated euthyroid state was maintained by the raised T-3 levels. We suggest that preferential T-3 production is maintained by increased TSH secretion in subjects with intrathyroidal iodine deficiency secondary to thyroid organification defect.

Adult↗

Growth hormone release inhibiting hormone in acromegaly.

Growth hormone release inhibiting hormone (GHRIH) was administered by constant infusion over 75 minutes to eight acromegalic patients at different doses. 100 to 1,000 mug were equally effective in reducing circulating growth hormone (GH) levels; 25 mug lowered GH levels in only five patients, and at this dose the extent of the fall was smaller than from doses of 100 mug or more. 10 mug was ineffective. Injection of single doses of 500 mug by intravenous, subcutaneous, and intramuscular routes caused only small and transient reductions in GH levels, though the effect was improved by injecting the hormone intramuscularly in 2 ml of 16% gelatin. Injection of a suspension of 4 mg GHRIH in 1 ml of arachis oil lowered growth hormone levels for between three and four hours.In four acromegalic patients an oral 50-g glucose tolerance test was performed during a continuous infusion of either saline or 1,000 mug GHRIH. The "paradoxical" rise in growth hormone seen in these patients during the saline infusion was suppressed by GHRIH. The blood glucose responses were, moreover, modified by GHRIH in that the peak was delayed and occurred at the end of the infusion in each case. A "normal" glucose tolerance curve was converted to a "diabetic" type of response in two patients. This effect could be accounted for by the inhibition of insulin secretion known to occur with large doses of GHRIH.We speculate that acromegaly may be primarily a hypothalmic disease due to deficiency of GHRIH resulting in excessive secretion of growth hormone from the pituitary and adenoma formation due to inappropriate and prolonged stimulation of the pituitary.

Acromegaly↗

Luteinizing hormone and follicle stimulating hormone-releasing hormone test in patients with hypothalamic-pituitary-gonadal dysfunction.

A standard intravenous 100 mug luteinizing hormone/follicle stimulating hormone-releasing hormone (LH/FSH-RH) test was used to assess the pituitary gonadotrophin responses in 155 patients with a variety of diseases of the hypothalamic-pituitary-gonadal axis. In all but nine patients there was an increase in circulating levels of either LH or FSH in response to the releasing hormone though 137 (88%) were clinically hypogonadal. It was not possible with this test to distinguish between hypothalamic and pituitary causes of hypogonadotrophic hypogonadism, since a variety of LH and FSH responses emerged within the disease groups. However, primary gonadal failure characteristically resulted in exaggerated gonadotrophin response. The potential therapeutic use of the gonadotrophin releasing decapeptide is suggested in certain patients with hypogonadotrophic hypogonadism.

Adolescent↗

Treatment of hypothyroidism: a reappraisal of thyroxine therapy.

Twenty-two subjects with hypothyroidism have been studied in detail before and during replacement therapy with L-thyroxine (T-4). All subjects were stabilized on the minimum dose of T-4 which was necessary to suppress their serum thyroid-stimulating hormone (TSH) concentration to normal, and on this dose most subjects had a normal or impaired TSH response to thyrotrophin-releasing hormone (TRH). The daily dose of T-4 required to suppress TSH was 0.1 mg (13 subjects), 0.15 mg (six subjects), and 0.2 mg (three subjects). It was shown that all subjects were euthyroid on these doses and, using a range of thyroid function tests, that they were normal in all respects when compared with a group of euthyroid controls, with the exception of a small group who had a marginally raised serum triiodo-L-thyronine (T-3) concentration. It has been shown that those subjects who required the larger doses of T-4 had a more advanced degree of thyroid failure than those who were stabilized on 0.1 mg T-4 daily. It is concluded that conventional doses of T-4 (0.2-0.4 mg daily) are often associated with subclinical hyperthyroidism.

Humans↗