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D Rabin

Publications and source records attributed to D Rabin.

84 records · Page 5Linked to original sources

Combined treatment with an LHRH agonist and testosterone in man. Reversible oligozoospermia without impotence.

We have previously shown that LHRH agonist [D-Trp6,Pro9-NEt]LHRH (LHRHA) results in reversible oligozoospermia when given to normal subjects for up to ten weeks. A fall in plasma testosterone was accompanied by loss of libido and potency. We now report six subjects who were evaluated by semen analysis and hormone profile at two-week intervals during ten-week basal, 20-week treatment, and post-treatment periods lasting at least ten weeks. Treatment consisted of LHRHA (50 microgram subcutaneously daily), and testosterone enanthate (100 mg intramuscularly every two weeks). Sperm density (mean basal 76.7 +/- 8.7 x 10(6)/ml) fell consistently in each subject to a mean nadir of 12.3 +/- 4.5 x 10(6)/ml (p less than 0.001). This is similar to the mean nadir of 11.6 +/- 5.8 x 10(6)/ml achieved when LHRHA was given alone. In each individual subject, sperm density returned to his basal level after cessation of treatment. No consistent changes were seen in sperm motility of morphology, or in semen volume. Libido and potency were maintained in all subjects. An additional three subjects received testosterone enanthate alone in identical dosage for 20 weeks. No change in sperm density was observed. In contrast to treatment with LHRHA alone, combination treatment produces reversible oligozoospermia without attendant change in potency.

Adult↗

Heterogeneity of sperm density profiles following 20-week therapy with high-dose LHRH analog plus testosterone.

Eight normal male volunteers received an LHRH analog, 100 to 500 micrograms daily, for 20 weeks. Testosterone enanthate, 100 mg, was given by injection every second week. Sperm density fell to 5.5 X 10(6)/ml and to 0 in two of the subjects receiving 100 micrograms, but was unchanged in the third. Three of the subjects who received 500 micrograms displayed azoospermia, whereas the other two showed no significant change in sperm density. The reasons for the heterogeneity are not clear. Only one of the three nonresponders had testosterone values that were higher than the other subjects. Gonadotropin levels were similar in responders and nonresponders. It is possible that the response to LHRH analog in man is determined by the extent of the reduction in LH bioactivity.

Adult↗

Heterogeneity of sperm density profiles following 16-week therapy with continuous infusion of high-dose LHRH analog plus testosterone.

LHRH agonist analogs have been investigated as potential male contraceptives. It has been shown that the LHRH agonistic analog [D-Trp6,Pro9-NEt] LHRH (LHRHA) given to men in single doses up to 500 micrograms daily for up to 20 weeks with the coadministration of testosterone enanthate produces reversible oligozoospermia. Individual responses to the treatment, however, were variable. In this study, we gave the same analog to eight normal male volunteers as a continuous infusion of 500 micrograms daily for 16 weeks. Testosterone enanthate, 100 mg, was given by injection every second week. Six of the subjects became oligozoospermic but the other two retained sperm counts that were greater than 20 million/ml, although their treatment continued for 20 weeks. The reasons for this variability of response are not clear. Serum immunoreactive LH values increased during the infusion period whereas testosterone declined. FSH values fell during treatment in all subjects except the two non-responders. The acute pituitary response to LHRHA during the treatment or shortly thereafter (48 h) was completely abolished, and bioactive LH values were suppressed totally. FSH, LH, testosterone and sperm counts returned to normal in all subjects following discontinuation of LHRHA infusion. Continuous infusion of 500 micrograms of LHRHA daily for 16 weeks with 100 mg of testosterone enanthate every 2 weeks induced desensitization of the pituitary, loss of LH bioactivity, and decreases of FSH and testosterone. This mode of administration, however, did not improve sperm density results obtained earlier by single daily injections of the analog. Heterogeneity of sperm density profiles still persists for reasons that are not yet clear.

Adult↗

Serial dexamethasone suppression tests in depressed patients treated only with electroconvulsive therapy.

Several systematic studies have evaluated serial dexamethasone suppression tests (DST) in patients with major depression who were treated with antidepressant medications. DST changes were noted to parallel clinical improvement in most recovering patients. If serial DSTs are a valid state-related correlate of depressive pathophysiology, all types of effective antidepressant treatment should result in DST 'normalization'. However, no treatment modalities other than antidepressant medications have been studied serially with systematic assessments. To test whether serial DSTs reflect clinical progress in depressives treated solely with electroconvulsive therapy (ECT), we studied weekly DSTs and Hamilton Rating Scales for Depression (HRSD) in 22 drug-free depressed patients. We observed progressive DST 'normalization' in most patients and moderately high correlations between weekly DST and HRSD values throughout treatment. Most patients receiving ECT became DST suppressors. In most patients the DST appeared to reflect the severity of depressive pathophysiology, perhaps providing serial feedback to clinicians monitoring the progress of treatment with ECT.

Depressive Disorder↗

The endocrine manifestations of hemochromatosis.

We have evaluated the endocrine changes in 10 male subjects with hemochromatosis. Two subjects initially had aplastic anemia, and the remainder had idiopathic hemochromatosis. Four of the ten patients had diabetes mellitus. Sexual dysfunction (impotence and/or decreased libido) was observed in 8 subjects. Six patients had subnormal testosterone levels; FSH levels were almost uniformly low, but LH concentrations were more variable. Only three patients had normal testosterone responses to hCG. Hypothyroidism, free T4 less than 0.9 ng/dl, was present in 4 subjects, and the etiology was heterogeneous. Basal prolactin levels were elevated in 2 patients and failed to respond adequately to TRH in 2 other patients. Growth hormone reserve was normal in all but 1 patient, and pituitary-adrenal reserve was normal in all but 1 patient. We conclude that disturbances in both pituitary and end-organ function are observed in hemochromatosis. These central and end-organ defects may exist alone or simultaneously. Hypogonadism is almost universal, and is a consequence of defective function of the hypothalamic-pituitary axis and/or primary Leydig cell disturbance. Other evidence of pituitary disturbance are observed but are rather uncommon.

Endocrine System Diseases↗