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Biomedical subjects

G Robuschi

Publications and source records attributed to G Robuschi.

At least 19 recordsLinked to original sources

Comparison of methimazole, methimazole and sodium ipodate, and methimazole and saturated solution of potassium iodide in the early treatment of hyperthyroid Graves' disease.

We have evaluated three regimens for the rapid control (10 days' therapy) of thyrotoxicosis in hyperthyroid Graves' disease: methimazole (MMI, 40 mg/day), MMI and sodium ipodate (MMI + Na Ipodate, 1 g/day and MMI and saturated solution of potassium iodide (MMI + SSKI, 6 drops twice daily). When serum T4 and T3 concentrations were analysed as the percent change from pre-treatment values, the following results were observed. Serum T4 concentration decreased in the three treatment groups and the decrease was similar in the MMI and MMI + SSKI groups but significantly lower than in the MMI + Na ipodate group. The serum T3 concentration decreased to the normal range in all seven MMI + Na Ipodate treated patients by the fourth day of treatment and the per cent decrease in serum T3 from pre-treatment values was significantly greater than in the MMI and MMI + SSKI treated patients. The decrease in serum T3 was similar in the latter two groups. Heart rate decreased in all three groups, but the decrease was significantly more in the MMI + Na Ipodate-treated patients. The present findings suggest that the rapid control of hyperthyroid Graves' disease is similar in patients treated with MMI and MMI + SSKI and that the combination of MMI + Na Ipodate is more efficacious since the decrease in serum T3 concentrations and heart rate was significantly greater in the MMI + Na ipodate-treated patients.

Adult

The effect of diltiazem, a calcium channel-blocking drug, on cardiac rate and rhythm in hyperthyroid patients.

Tachycardia and tachyarrhythmias are frequent in patients with thyrotoxicosis, especially in the elderly. Since myocardial calcium uptake is increased in thyrotoxic rats, the efficacy of the calcium channel-blocking drug diltiazem in decreasing heart rate and the incidence of arrhythmias was evaluated in 11 hyperthyroid patients. All patients were studied with a 24-hour Holter monitor prior to the beginning of sole diltiazem therapy (120 mg given every eight hours), on the tenth day of therapy, and five days after therapy was discontinued. Heart rate significantly decreased by 17% during diltiazem treatment (96.5 +/- 3.7 systoles/min vs 79.9 +/- 3.2 systoles/min [mean +/- SE]) and returned to baseline values five days after the therapy was discontinued (100.7 +/- 3.4 systoles/min). Similarly, the number of premature ventricular extrasystoles per hour was significantly decreased (18 +/- 7 vs 2 +/- 1). In three patients, asymptomatic bouts of supraventricular tachycardia, paroxysmal atrial fibrillation, or ventricular tachycardia disappeared during diltiazem therapy. These findings suggest that calcium-blocking drugs may be extremely useful as adjunctive therapy for thyrotoxicosis in the presence of angina, congestive failure, and tachyarrhythmias.

Adult

Graves' disease and thyroxine-binding globulin deficiency.

Thyroxine-binding globulin (TBG) deficiency has been frequently described in single patients and in many families. Most people with abnormal TBG concentrations are euthyroid. Cases of Graves' disease and TBG deficit have rarely been reported. We describe the case of a person with Graves' disease and TBG deficiency. Because of this condition, the patient had a misdiagnosis during part of his clinical history, and therefore underwent unnecessary therapy.

Diagnostic Errors

Cord blood iodothyronine and thyrotropin concentrations in newborns of mothers exposed to povidone iodine in the last trimester.

In the present study, we have evaluated thyroid function in neonates at delivery and in their mothers who used vaginal povidone-iodine (PVP-I) during the last trimester of pregnancy. Newborns and their mothers without a history of iodine exposure, admitted to the same department and residing in the same geographical area served as controls. Maternal serum thyroxine (T4), triiodothyronine (T3), reverse triiodothyronine (rT3) and thyrotropin (TSH) concentrations at delivery were not significantly different between the two groups of pregnant women. Cord blood thyroid hormone concentrations in the newborns of iodine exposed mothers were not significantly different from those in control newborns. In contrast, cord blood TSH concentrations in the neonates of mothers exposed to PVP-I during the last trimester of pregnancy were significantly higher than values in control neonates (p less than 0.05). These data confirm that the fetal thyroid gland, even in the last trimester of pregnancy, does not adapt completely to the inhibitory action of iodine on thyroid hormone synthesis and/or release.

Adult

Dopaminergic regulation of fetal growth hormone (GH) secretion: study with maternal administration of bromocriptine.

To investigate the role of dopaminergic pathways on the control of growth hormone (GH) secretion, bromocriptine (BMC), a dopamine agonist drug, was orally administered at the dose of 5 mg to 46 pregnant women during labor whereas 41 received placebo. Maternal blood was obtained before drug administration and at delivery. Cord blood was obtained at delivery. Following the interval of time elapsed between BMC or placebo ingestion and parturition, maternal and cord blood samples were divided in 7 groups for statistical analysis. Cord blood GH resulted significantly higher than the corresponding maternal value (p less than 0.001). No significant change in GH values was observed nor in samples of mothers treated with BMC compared to mothers treated with placebo neither in cord blood samples of the corresponding neonates. These findings indicate that BMC administration does not modify GH secretion in the term fetus.

Bromocriptine

Effect of sodium ipodate and iodide on free T4 and free T3 concentrations in patients with Graves' disease.

Graves' hyperthyroid patients were treated daily for 10 days with 1 g sodium ipodate, a cholecystographic agent which exerts a blocking effect on the peripheral conversion of T4 to T3, or with 12 drops of saturated solution of potassium iodide (SSKI). Serum concentrations of free T4 (FT4) and free T3 (FT3) were measured before, during and 5 and 10 days after the administration of each drug. Sodium ipodate treatment induced a rapid decrement of serum FT4 concentrations which declined from 48.9 +/- 6.6 pg/ml to 26.0 +/- 2.7 pg/ml. In these patients serum FT3 concentrations declined from 12.4 +/- 2.0 pg/ml to 2.5 +/- 0.4 pg/ml. Ten days after sodium ipodate withdrawal, serum FT4 and FT3 concentrations returned to baseline values. In patients treated with SSKI serum FT4 concentrations declined from 51.1 +/- 8.8 pg/ml to 11.3 +/- 1.4 pg/ml and FT3 from 15.7 +/- 2 pg/ml to 2.6 +/- 0.3 pg/ml. Moreover, after therapy interruption serum free thyroid hormone concentrations returned to baseline values in these patients. Serum FT4 pattern during the study was not different between the two groups of subjects whereas serum FT3 concentrations were significantly lower in patients treated with sodium ipodate. These findings indicate that SSKI and sodium ipodate are effective in inducing a rapid decrement of serum free thyroid hormone concentrations. Therefore the employment of these drugs may be useful in the treatment of patients with thyroid storm and those undergoing thyroidectomy.

Adult

Basal and glucose- and arginine-stimulated serum concentrations of insulin, C-peptide, and glucagon in hyperthyroid patients.

The effect of oral glucose and arginine infusion on plasma glucose, glucagon, serum insulin, and C-peptide concentrations was evaluated in 16 patients with hyperthyroid Graves' disease and in ten euthyroid age- and sex-matched normal subjects. Basal plasma glucose concentrations were significantly higher in the hyperthyroid patients, but the plasma glucose response following glucose and arginine administration was similar in the two groups. The insulin response was similar in the hyperthyroid and normal subjects after glucose administration and significantly lower during arginine infusion in the hyperthyroid patients. The serum C-peptide response to both glucose and arginine administration was markedly blunted in the hyperthyroid patients, and the plasma glucagon response to arginine infusion was decreased. These results suggest that pancreatic beta and alpha cell secretory function is impaired in hyperthyroidism as assessed by C-peptide and glucagon secretion following oral glucose administration and arginine infusion. The apparent discrepancy between C-peptide and insulin secretion in the hyperthyroid patients following glucose administration might be due to diminished hepatic extraction of insulin or enhanced metabolism of C-peptide.

Adult

Cardiopulmonary bypass: a low T4 and T3 syndrome with blunted thyrotropin (TSH) response to thyrotropin-releasing hormone (TRH).

Thyroid hormone serum concentrations, the thyrotropin (TSH) and prolactin (PRL) response to thyrotropin-releasing hormone (TRH) were evaluated in patients undergoing cardiopulmonary bypass (CPB) conducted in hypothermia. During CPB a marked decrease of thyroxine (T4) and triiodothyronine (T3) concentration with a concomitant increase of reverse T3 (rT3) were observed similarly to other clinical states associated with the 'low T3 syndrome'. Furthermore, in the present study elevated FT4 and FT3 concentrations were observed. In a group of patients, TRH administered during CPB at 26 degrees C elicited a markedly blunted TSH response. In these patients, PRL concentration was elevated but did not significantly increase after TRH. The increased concentrations of FT4 and FT3 were probably due to the large doses of heparin administered to these patients. Thus, the blunted response of TSH to TRH might be the consequence of the elevation of FT4 and FT3 in serum, however, other factors might play a role since also the PRL response to TRH was blocked.

Adult

Somatostatin inhibits the dermorphin-stimulated thyrotropin release in man.

We have studied the effect of the intravenous administration of somatostatin (SRIF) on the thyrotropin (TSH) response to intravenous dermorphin (D), a new potent opioid peptide, in 7 healthy men. D significantly increased the serum TSH concentration. SRIF administration prior to, during and after D completely prevented the D-induced rise in serum TSH. These results confirm that D stimulates TSH release in man and that this stimulatory effect can be prevented by SRIF.

Adolescent

Goiter size and thyroid function in an endemic goiter area in northern Italy.

Thyroid function was studied in a large number of subjects residing in Varsi, a town in the province of Parma, Italy. In this area, endemic goiter associated with moderate iodine deficiency [59 +/- 3 (+/- SE) microgram iodine/g creatinine], as defined by WHO criteria, affects 65% of the population. Serum T4, T3, thyroglobulin (Tg), and TSH concentrations were measured by RIA in 1218 subjects. The TSH response to TRH was determined in 108 subjects selected randomly from the groups with different grades of goiter. No significant change in serum T4 concentrations was found in subjects with different grades of goiter. Serum T3 concentrations were higher in subjects with the larger goiters. Serum Tg concentration progressively increased, and serum TSH progressively decreased with increasing goiter size. The TSH response to TRH was diminished in subjects with larger goiters. The findings of decreasing serum TSH concentrations and blunted TSH responses to TRH as goiter size increased suggest the possibility of autonomous thyroid function in the larger goiters in subjects residing in this area of moderate iodine deficiency.

Adolescent

Human foetal prolactin but not thyrotropin secretion is decreased by bromocriptine.

In the adult, dopamine inhibits prolactin (Prl) secretion and less so thyrotropin (TSH) release. Little information is available concerning the role of dopaminergic stimuli in the regulation of TSH and Prl secretion in the term human foetus. The dopamine agonist, bromocriptine (5 mg), or placebo were randomly administered orally to 120 pregnant women during labour. Maternal and foetal cord blood was obtained at parturition and analyzed for Prl, TSH, T4, T3 and rT3 concentrations. Since the time of parturition is unpredictable, maternal and cord blood hormone values were grouped at intervals of time from the time of bromocriptine or placebo administration to delivery. Hormone values were compared between the bromocriptine and placebo groups by two-way analysis of variance (ANOVA). Bromocriptine markedly inhibited maternal serum Prl concentrations compared to values in the placebo treated women (P less than 0.001) and this decrease was more marked as the time interval between bromocriptine administration and delivery increased (P less than 0.001, regression analysis). Cord blood Prl was also significantly lower in newborns whose mothers received bromocriptine (P less than 0.001). Bromocriptine significantly inhibited maternal serum TSH concentrations as compared to values in women treated with placebo (P less than 0.006). In contrast, bromocriptine administration did not affect cord blood TSH concentrations. These findings suggest that bromocriptine crosses the term human placenta and suppresses foetal Prl secretion. In contrast to the small inhibition of TSH secretion in pregnant women, bromocriptine does not affect foetal TSH secretion suggesting that regulation of TSH secretion in the term foetus may not be under dopaminergic control.

Bromocriptine

Comparative effects of sodium ipodate and iodide on serum thyroid hormone concentrations in patients with Graves' disease.

Patients with thyrotoxic Graves' disease were treated daily for 10 d with 1 g sodium ipodate, an iodine rich X-ray contrast agent which impairs outer ring (5'-) deiodination of T4 to T3, or with 12 drops of a saturated solution of potassium iodide (SSKI). T4, T3 and reverse T3 (rT3) concentrations were measured before, during, and 5 and 10 d after the administration of each drug. SSKI therapy induced a decrease in the serum T4 concentration from 14.7 +/- 1.3 microgram/dl (mean +/- SE) to a nadir of 7.9 +/- 0.9 on days 9 and 10 of therapy, all values reaching the normal range by day 9; a decrease in the serum T3 concentration from 402 +/- 43 ng/dl to a nadir of 143 +/- 20 on day 10, remaining elevated in all patients until day 5 and decreasing into the normal range in all except one patient on days 9 and 10; and no change in the serum rT3 concentration. Serum T4 and T3 concentrations returned to baseline values 10 d after withdrawal of SSKI. In contrast sodium ipodate therapy induced only a modest decrease in the serum T4 concentration from 15.1 +/- 0.7 micrograms/dl to a nadir on day 9 of 11.3 +/- 1.0 and serum T4 remained above the normal range in most patients until day 8; a striking and rapid decrease (within 12 h) in ther serum T3 concentration from 340 +/- 36 ng/dl to mean values ranging from 79 to 85 during the last 5 d of therapy, with most values below the normal range during the last 3 d; and a marked increase in the serum rT3 concentration from 111 +/- 15 ng/dl to a peak value of 376 +/- 59 on day 5.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Amniotic fluid thyrotropin (TSH) following maternal administration of thyrotropin releasing hormone.

Cord blood and amniotic fluid thyrotropin (TSH), T4, T3, and rT3 concentrations were measured in 49 women who received 400 micrograms thyrotropin releasing hormone (TRH) iv during labor and in 16 control women who received saline. Cord blood serum TSH concentrations were elevated for as long as 4 hours after TRH administration and peak values (38.0 +/- 4.2 microU/ml) were observed from 61-120 minutes after TSH as compared to control values of 5.0 +/- 0.3 microU/ml. The elevations in fetal TSH concentration stimulated the fetal thyroid, resulting in a progressive increase in cord blood T4 and T3 but not rT3 concentrations. These TRH induced elevations in fetal cord blood TSH concentrations were not accompanied by increases in unconcentrated and 4 fold concentrated amniotic fluid TSH concentrations which were almost always below 0.6 microU/ml, the limit of assay sensitivity. Unconcentrated amniotic fluid T4 concentrations were barely detectable and no variation was observed between the TRH treated and saline treated mothers; amniotic fluid T3 was not detectable in any of the groups; and amniotic fluid rT3 concentrations ranged between 46.4 and 55.6 ng/dl and did not differ between groups. These findings suggest that term amniotic fluid TSH values do not reflect transient but marked elevations in fetal serum TSH concentrations and that amniotic fluid TSH determination is probably not useful in the detection of primary fetal hypothyroidism. It is possible, but unlikely, that long-term and even greater elevations in fetal serum TSH concentrations would result in increased amniotic fluid TSH concentrations.(ABSTRACT TRUNCATED AT 250 WORDS)

Amniotic Fluid

Dermorphin, a new opioid peptide, stimulates thyrotropin secretion in normal subjects.

The effect of a recently described, potent opioid peptide, dermorphin (DER), on TSH secretion in euthyroid subjects has been studied. DER infused at a rate of 5.5 micrograms/Kg/min for 30 min induced a significant increase in serum TSH concentration at 60, 90, and 120 min after the infusion was begun. Treatment with naloxone administered 30 min before the DER infusion with a bolus dose of 4 mg, followed by a constant infusion of 1 microgram/Kg/min for 150 min, prevented the rise in serum TSH. Naloxone administered alone did not induce any change in TSH concentration. The present findings suggest that DER has a stimulatory effect on TSH secretion, probably mediated by opioid receptors. These results, however, do not solve the question as to whether opioids have a physiological role in the control of pituitary TSH secretion.

Adolescent

Absent prolactin (PRL) response to thyrotropin releasing hormone (TRH) and somatostatin (SRIF) in at term fetus.

To study the effect of thyrotropin-releasing hormone (TRH) and somatostatin (SRIF) on prolactin (PRL) secretion in at term human fetus these peptides have been administered to at term pregnant women during labor. Evidence has been reported that TRH and SRIF cross the placental barrier and affect the secretion of pituitary hormones. 400 micrograms TRH were administered to 37 pregnant women. As control 11 women received saline. In cord blood (CB) of neonates whose mothers received TRH CB PRL concentration was not different from those treated with saline, with values ranging between 192 +/- 18 and 342 +/- 48 ng/ml. 500 micrograms cyclic SRIF diluted in saline was infused over a period of 30 min in 55 women. Control subjects were infused with saline. At birth CB PRL concentration in SRIF treated neonates ranged between 266 +/- 32 and 327 +/- 48 ng/ml. In neonates whose mothers were treated with saline, CB PRL was 305 +/- 31 ng/ml. This value was not significantly different from that in SRIF-treated groups. Our findings suggest that in at term human fetus TRH does not stimulate PRL secretion probably because fetal pituitary secretes PRL at maximal releasing activity. Furthermore SRIF administration does not have any effect on fetal PRL secretion as consistently observed in adults.

Female

Inhibition of foetal growth hormone (GH) and thyrotrophin (TSH) secretion after maternal administration of somatostatin.

Somatostatin (SRIF) was infused (500 micrograms over 30 min) into 68 pregnant women during labour. As a control, saline was infused into 26 pregnant women. Maternal blood was obtained prior to the infusion and at delivery and cord blood was obtained at delivery. The subjects were divided into 4 groups based upon the interval of time from the termination of SRIF infusion and delivery. There was a marked decrease in cord blood thyrotrophin (TSH) from 0 to 180 min and in cord blood growth hormone (GH) from 0 to 120 min following SRIF infusion. SRIF infusion did not affect cord blood iodothyronine and thyroglobulin concentrations. SRIF administration induced a small but significant (P less than 0.05) decrease in serum GH concentration but had no other effect on maternal hormone values. These studies strongly suggest that SRIF crosses the human placenta and transiently suppresses foetal anterior pituitary TSH and GH secretion.

Blood Glucose