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Biomedical subjects

A Pende

Publications and source records attributed to A Pende.

23 records · Page 2Linked to original sources

Circadian variations of autologous mixed lymphocyte reactions and endogenous cortisol.

The degree of proliferation of human T cells stimulated with autologous PHA-T cells and with autologous non-T cells displays circadian variations. The highest proliferation occurs with cells isolated from blood drawn at 8 a.m. in mixed lymphocyte reactions (MLR) with autologous PHA-T cells and from blood drawn at 8 p.m. in MLR with autologous non-T cells. The circadian variations of autologous MLRs appear to reflect changes in the proliferative response of T cells. In autologous MLRs with non-T cells as stimulators the extent of proliferation was inversely correlated with the level of endogenous cortisol. The circadian variations of autologous MLRs do not reflect non-specific changes in the proliferative and stimulatory properties of T and non-T cells, since circadian variations were not observed in the proliferative response of T cells to mitogens and in allogeneic MLRs. Circadian variations of autologous MLRs must be taken into account when analyzing abnormalities of these reactions in pathological conditions.

Circadian Rhythm↗

Morphine-induced TSH release in normal and hypothyroid subjects.

The effects of morphine (10 mg i.v.), an opioid agonist, and of naloxone (10 mg i.v.), an opioid antagonist, on serum levels of TSH and PRL were studied in 7 hypothyroid patients and in 5 normal volunteers. Morphine administration induced a prompt, significant increase in serum TSH and PRL in all subjects. The degree of PRL release after morphine was similar in the two groups, while, as regards TSH, the increase was more evident in hypothyroid subjects. Pretreatment with naloxone (4 mg i.v. 5 min before morphine administration) blocked these effects in all subjects. In contrast, naloxone alone was not able to affect significantly TSH and PRL secretion. Moreover, in 5 other euthyroid volunteers, morphine significantly enhanced the response of TSH and PRL to TRH stimulation (200 micrograms i.v.). These data demonstrate that morphine exerts a stimulatory action on TSH and PRL secretion: the possible mode of action of this drug and the physiologic significance of these findings are discussed.

Adult↗

Effects of the H2 receptor antagonist ranitidine on anterior pituitary hormone secretion in man.

The effect of an i.v. bolus of the H2-receptor antagonist ranitidine 50, 100, 200 and 300 mg on serum levels of prolactin, TSH, GH, LH, FSH and cortisol was studied in 12 normal males. Ranitidine 200 and 300 mg significantly stimulated prolactin release without affecting any of the other hormones. Ranitidine 300 mg caused a rise in prolactin comparable to that observed following cimetidine 200 mg. The results show that ranitidine releases prolactin in man, but only when a large intravenous injection is given.

Adult↗

Pituitary hormone secretion after inhibition of L-aromatic amino acid decarboxylase activity in man.

The effect of acute administration of 200 mg benserazide, an L-aromatic amino acid decarboxylase inhibitor, on pituitary hormone secretion in humans was studied. Benserazide induced in all subjects a quick and marked increment of serum prolactin (Prl) and TSH levels: at 180 min TSH and Prl levels were still significantly higher than the baseline values. Women with normal menstrual cycles showed a Prl response to benserazide which was significantly greater than that observed in post-menopausal women and men. In another experiment six normal men received 10 mg of domperidone, a peripheral dopamine receptor blocker. The hormonal changes induced by domperidone were comparable to those obtained with benserazide. Since domperidone and benserazide are thought not to cross the blood-brain barrier, these results suggest that dopamine regulates Prl and TSH secretion through extra blood-brain barrier structures.

Adult↗

Neuroendocrine effects of interferon alpha 2-a in healthy human subjects.

The acute effects of interferon alpha-2a (3 x 10 IU im) on catecholamine and immunoreactive beta endorphin plasma levels, cortisol serum levels and lymphocyte beta 2-adrenoceptor density were evaluated in ten healthy volunteers. Interferon induced a significant increase in plasma norepinephrine; there was an increased norepinephrine standing response, too. On the contrary, epinephrine standing response was reduced by interferon. Lymphocyte beta 2-adrenoceptors decreased significantly after interferon administration; dissociation constant of binding was unchanged. Cortisol serum levels increased significantly with respect to control test, whereas immunoreactive beta endorphin did not change. These results support the hypothesis of functional relationships between neuroendocrine and immune systems; moreover they may be useful in clinical trials given the administration of interferon alpha in an increasing number of diseases.

Adult↗