Search PubMed⌕ Search

Biomedical subjects

D M Martin

Publications and source records attributed to D M Martin.

At least 91 records · Page 5Linked to original sources

The thyroid-stimulating hormone response to thyrotropin-releasing hormone in mania and bipolar depression.

The release of thyroid-stimulating hormone (TSH) from the pituitary after infusion of 500 microgram of thyrotropin-releasing hormone (TRH) was decreased (p < 0.01) in manic patients and increased (p < 0.01) in bipolar depressed patients compared to a control group of patients with personality disorders. These results suggest that the TRH test may be useful in the diagnosis of psychiatric disorders and in the prediction of response to pharmacotherapy. We discuss the role of central monoaminergic systems in changes in the TSH response to TRH.

Affective Disorders, Psychotic↗

A method for the study of internal spaces in hard tissue matrices by SEM, with special reference to dentine.

Infiltration of a porous hard tissue with methyl methacrylate, followed by dissolution of the tissue provides a three-dimensional methacrylate cast of spaces within the tissue. Examination of such a cast by scanning electron microscopy provides information on the nature and extent of the pore system to a degree that cannot readily be visualized by the direct examination of fractured surfaces. The findings described concern human dentine but the technique may have a wider application in studies on the internal structure of other hard tissues.

Dental Enamel Permeability↗

Glucose modulation of amino acid-induced glucagon and insulin release in the isolated perfused rat pancreas.

Interactions between glucose and arginine and a mixture of 20 amino acids found in normal rat serum were studied in the isolated perfused rat pancreas of normal rats, with release of immunoreactive glucagon and insulin as parameters. Secretion of both pancreatic hormones was low during the steady state, whether glucose (5 mM) was included in the perfusion medium or not. This glucose concentration significantly stimulated insulin release twofold and resulted in an 80% inhibition of basal glucagon release. Arginine and the amino acid mixture were potent stimulants of both hormones. Secretion of both hormones followed identical biphasic response patterns after addition of arginine or the amino acid mixture. However, stimulation of insulin release occurred only when glucose was included, whereas both phases of glucagon release were elicited in the absence of glucose and markedly reduced in its presence. The dose-dependency curves of hormone release due to arginine on one hand and the amino acid mixture on the other differed substantially: with arginine, release of insulin and glucagon was linear between a concentration of 0.3 and 20 mM. In contrast, the amino acid mixture resulted in half-maximal release for both hormones between a concentration of 3 and 4.5 mM, and maximal release between 6 and 8 mM. The dose-dependencies of glucose modulation of alpha- and beta-cell activity were also different: when the amino acid mixture was maintained at 15 mM and glucose varied (0-6.25 nM), no insulin release occurred until glucose was above 2.5 mM, whereas incremental inhibition of glucagon occurred through the complete dose range. It was also observed that glucose inhibition of amino acid-stimulated glucagon release was dissociated from glucose-dependent increase of insulin release. THESE STUDIES INDICATE THAT: (a) the alpha-cell, like the beta-cell, secretes at a low basal rate; (b) hypoglycemia per se is a weak stimulus for glucagon secretion compared to the high efficacy of a physiologic amino acid mixture; (c) glucose plays opposite roles in the mechanisms leading to amino acid-induced hormone release from the alpha- and beta-cells, functioning as an inhibitor in the first case and a permissive agent in the second, and (d) the data are compatible with the postulated existence of glucose and amino acid receptors in both the alpha- and beta-cells.

Amino Acids↗