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Biomedical subjects

A G Frantz

Publications and source records attributed to A G Frantz.

11 recordsLinked to original sources

Measurement of beta-endorphin in human plasma.

beta-endorphin has been identified in human plasma by means of gel filtration and a sensitive radioimmunoassay for human beta-endorphin (beta h-endorphin). Mean baseline plasma beta h-endorphin concentration in 5 individuals was 21 +/- 7.3 (SD) pg/ml (6.2 +/- 2.2 (SD) fmole/ml). Following metyrapone stimulation mean plasma concentration increased to 55.4 +/- 10.1 (SD) pg/ml (16.3 +/- 3.1 (SD) fmole/ml). The molar ratio of human beta-lipotropin (beta h-LPH) to beta h-endorphin was 2.2 in baseline plasma and 2.4 after metyrapone stimulation.

Chromatography, Gel

Plasma beta-endorphin and beta-lipotropin in the human fetus at delivery: correlation with arterial pH and pO2.

Beta-endorphin-like immunoactivity was measured in the umbilical cord plasma of 45 term human fetuses. Mean concentration was 91 +/- 16 (SEM) pg/ml,an the normal adult level of 30.7 +/- 2.7 pg/ml. This immunoactivity was further characterized in 10 cases by Sephadex G-50 chromatography to separate beta-endorphin from beta-lipotropin (beta-LPH). Mean beta-endorphin and beta-LPH concentrations were 57 +/- 12.8 and 455 +/- 101 pg/ml, respectively. Both were higher (P less than 0.01) than the mean beta-endorphin and beta-LPH concentrations reported in the adult. The mean molar beta-endorphin to beta-LPH ratio was 0.35 in the fetus and 0.36 in the adult. In 17 fetuses whose umbilical arterial and venous concentrations were measured separately, mean beta-endorphin-like immunoactivity was higher in the artery than in the vein. A highly significant negative correlation (r = -0.831; P less than 0.001) was present between umbilical arteiral pH and beta-endorphin-like immunoactivity. A negative correlation (r = -0.611; P less than 0.005) with arterial pO2 was also noted. We conclude that high levels of beta-endorphin-like immunoactivity, composed of both beta-endorphin and beta-LPH, circulate in the human fetus at term, and that hypoxia and secondary acidosis may be major stimuli to the release of these peptides.

Adult

Prolactin.

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Amenorrhea

The pathophysiology of hyperprolactinemic states and the role of newer ergot compounds in their treatment.

Studies of prolactin secretion in humans have confirmed the concept, derived originally from animal investigations, that prolactin is predominantly controlled by tonic inhibition from the hypothalamus. The locus of action of dopamine and dopaminergic agents such as the ergot alkaloids inhibiting prolactin secretion appears to be primarily at the pituitary level, though a hypothalamic action to increase secretion of prolactin inhibitory factor may also contribute. Prolactin hypersecretion, through any of several possible mechanisms, is frequently but not always found in patients with galactorrhea. Recent studies have shown that hyperprolactinemia is considerably more common than was previously appreciated among patients without galactorrhea. It is present in at least two-thirds of all patients with pituitary tumors and in a significant minority of patients with secondary amenorrhea. Its clinical measurement in these conditions is therefore of considerable diagnostic importance. Whatever the pathophysiology of its production, hyperprolactinemia of all forms is responsive to treatment with the newer ergot alkaloids. The potential use of these agents for therapeutic purposes, particularly in the treatment of infertility, appears to be wider than was originally anticipated.

Acetonitriles

Studies on the nature of thyroidal suppression during acute falciparum malaria: integrity of pituitary response to TRH and alterations in serum T3 and reverse T3.

The nature of the suppression of the pituitary-thyroid axis during infection was studied by testing the integrity of thyrotropin (TSH) and prolactin (PRL) responses to thyrotropin-releasing hormone (TRH) during acute falciparum malaria in human volunteers. During infection, TSH responses to TRH were found to be intact while PRL secretion was slightly increased. That serum T3 levels abruptly declined during infection while serum T4 was stable or increasing suggested an alteration in peripheral degradative pathways and prompted the measuremnt of reverse T3. Changes in serum T3 concentration were found to be accompanied by reciprocal changes in reverse T3. These observations allow some clarification of previously unknown aspects of thyroidal economy during infection.

Humans

Acute and chronic estrogen effects upon serum somatomedin activity, growth hormone, and prolactin in man.

Estrogen (E) reduces bioassayable GH-dependent serum somatomedin (SM) activity in acromegalics without affecting plasma growth hormone (GH) levels and inhibits the rise of SM activity normally produced by GH administration in GH-deficient subjects. We have now investigated the effect of E administration on serum SM activity and on plasma GH and prolactin (PRL) in 6 adult male subjects without pituitary pathology. Chronic E administration (ethinyl estradiol 0.5 mg/day for 7 to 70 days) reduced serum SM activity by 40 to 62% in each of 4 subjects (P less than 0.02 to less than 0.001). In 3 of the subjects, basal GH levels increased by 75 to 300% (P less than 0.05 to less than 0.001) and basal PRL levels increased by 90 to 200% (P less than 0.01 to less than 0.001). While iv administration of normal saline did not significantly affect either SM or GH, iv administration of E (bolus injection of 25 mg conjugated estrogens, USP) to 5 subjects resulted in: a) a 46 to 80% decrease in serum SM activity in all subjects, proceeding with an apparent half-life of 2 hours, becoming significant (P less than 0.05) at 2 hours (1 subject) to 3 hours (4 subjects), maximal at 6 hours, and persisting for 12 to 24 hours; b) GH elevation to 3 to 16 times baseline level (P less than 0.01) at 2 to 3 hours in 4 subjects; and c) no significant change of PRL levels in any subject. The mean GH response to iv E was maximal at a time (2 hours) when the mean SM activity had decreased only 20% and subsided well before the nadir of SM activity. The one patient without GH response to chronic or acute E administration may have been affected by absorption of triamcinolone being applied topically during the study. These results demonstrate that in males with normal pituitary function, E reduces serum SM activity, enhances basal GH and PRL secretion, and, upon iv injection, stimulates acute GH release. Although opposite chronic E effects upon GH and SM activity support a putative negative SM-GH feed-back mechanism, iv E administration apparently provokes acute GH release by a different mechanism. The half-life of serum SM activity in the human is probably much shorter than previously estimated.

Adult

Thioridazine stimulates prolactin secretion in man.

Thioridazine, unlike most other effective antipsychotic drugs, appears to be only a weak dopamine antagonist in various regions of the brain. We decided to test, indirectly, thioridazine's effects on another brain dopaminergic system, the tuberoinfundibular tract, which regulates prolactin secretion by stimulating hypothalamic secretion of prolactin-inhibiting factor. Chlorpromazine and several other phenothiazines have been shown to stimulate prolactin secretion. Five healthy men ingested 50 mg of chlorpromazine concentrate on one occasion, and 50 mg of thioridazine concentrate on another. Both drugs noticeably stimulated prolactin secretion within two hours. It is concluded that thioridazine is a potent dopamine antagonist in the tuberoinfundibular system, and it is suggested that this system's regulation of prolactin secretion may provide a useful method for studying antipsychotic drug effects in man.

Administration, Oral