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Biomedical subjects

I I Ibrahim

Publications and source records attributed to I I Ibrahim.

At least 19 recordsLinked to original sources

Endocrine profiles in pediatric andrology. I. Thyroid-stimulating hormone response to thyrotropin-releasing hormone in normal and protein-calorie malnourished infants.

Thryotropin-releasing hormone (TRH) was intravenously administered to eight normal control infants and ten infants with kwashiorkor. Stimulation caused by TRH was measured at various time intervals. The basal total protein mean value +/- SE was 6.9 +/- 0.3 and 4.0 +/- 0.3 g/dl for the control and kwashiorkor groups, respectively. Serum total thyroxine was 7.7 +/- 0.6 and 4.8 +/- 0.8 micrograms/dl for the control and kwashiorkor groups, respectively. Serum levels of thyroid-stimulating hormone (TSH) were 3.2, 13.5, 9.0, 7.4, and 8.0 microU/ml for the controls before stimulation and 20, 60, 90, and 120 min after stimulation, respectively. The corresponding values for the infants with kwashiorkor were 5.7, 13.9, 14.9, 15.2, and 15.3 microU/ml, respectively. The delayed TSH response to TRH stimulation in the infants with kwashiorkor was attributed to disturbance in the hypothalamic-pituitary-thyroid axis.

Female↗

Endocrine profiles in pediatric andrology. II. Insulin-dependent diabetic adolescents.

Seventy-five diabetic male and female children and 75 matched controls were classified according to pubertal staging. Blood samples were assayed for gonadotropins and gonadal hormones. The ultimate adult height in diabetic patients was 5 cm less than that of controls. Almost all diabetic children had a retarded bone age. Levels of serum gonadotropins and gonadal hormones did not differ markedly between diabetic and healthy children. The delay in growth and maturation was not due to hormonal failure, but probably to chronic undernutrition of body cells and failure to utilize the amino acids for protein anabolism related to relative insulin deficiency.

Adolescent↗

Endocrine profiles in pediatric andrology. III. Human chorionic gonadotropin stimulation test in cryptorchid boys.

Serum testosterone (T) concentration and urinary 17-ketosteroid (17-KS) excretion were measured under basal conditions and after stimulation with human chorionic gonadotropin (hCG) in 36 prepubertal males (10 normal children and 26 cryptorchid patients). As a function of hCG stimulation, the increase in serum T level was evident in both groups, although the magnitude of the rise was higher in the control group than in cryptorchid boys. No significant differences in serum T or urinary 17-KS were observed between patients with unilateral and bilateral undescended testis, either before or after hCG stimulation. In spite of the wide individual variations in testicular response in all subjects, the test is valuable in assessing Leydig-cell function and in prognosis for virilization at puberty.

17-Ketosteroids↗

Effect of urinary bilharzial infection on male pubertal development and endocrine functions.

One hundred seventy-five males aged 9-20 years were selected. The subjects comprised two groups; controls and patients infected with urinary bilharziasis not associated with any other parasite. Pubertal development was assessed. Serum levels of follicle-stimulating hormone (FSH), luteinizing hormone (LH), testosterone, and progesterone were determined by radioimmunoassay procedure. Delay in pubertal development was evident in the normal control group as indicated by higher chronological age mean values at the various stages as compared to other world norms. Urinary bilharziasis exaggerated the delay in pubertal development as compared to that in the control group. In relation to the control group, the group with urinary bilharziasis had higher levels of serum FSH and LH, which were significant only at stages III and IV. No significant difference was noted between the two groups for serum testosterone and progesterone levels, except for the high progesterone mean value at stage V in the group with urinary bilharziasis.

Adolescent↗

FSH, LH, E2, progesterone, and testosterone in peripheral blood, spermatic vein, and semen of subfertile men with varicocele.

Peripheral blood (PB), spermatic vein (Sp. V.), and semen samples were collected from 31 subfertile men with varicocele. Levels of FSH, LH, estradiol, progesterone, and testosterone were determined in the three biological fluid compartments using RIA. Remarkable increases in both testosterone and estradiol in the spermatic vein samples, as compared to either peripheral blood or semen, were evident. Correlation coefficient indicated significant positive correlation between PB FSH and each of PB LH, Sp. V. FSH, and Sp. V. LH. Significant positive correlation existed between PB LH and each of Sp. V. FSH, LH, and testosterone. Significant positive correlations were found between PB testosterone and each of Sp. V. testosterone and semen testosterone, as well as between PB estradiol and each of Sp. V. FSH and progesterone. Significant positive correlations between Sp. V. FSH and Sp. V. testicular progesterone was significantly correlated with seminal estradiol.

Adult↗

Subdermal levonorgestrel implants and pituitary function.

This study was designed to report changes in circulating FSH, LH, and prolactin levels in women users of subdermal levonorgestrel implants. The subjects comprised 21 women implanted with 6 silastic rods, each containing 34 mg levonorgestrel, between days M0 and M+4 of the menstrual cycle. Blood samples were drawn prior to, 1 month and 6 months after implantation, during the early follicular phase in menstruating (n=12), and randomly in amenorrheic (n=9) subjects. No significant differences were noted between the mean values of estimated hormones at the 3 intervals of estimation in both regularly menstruating and amenorrheic groups.

Age Factors↗

Subdermal levonorgestrel implants: serum androgens.

Serum levels of androstenedione, dihydrotestosterone, and testosterone were determined by radioimmunoassay procedures in 25 female volunteers using subdermal levonorgestrel implants as a contraceptive. Mean serum androstenedione levels were increased after 1 and 6 months in comparison with preimplantation levels, the increase being significant only after 1 month. This could be attributed to increased production from the adrenal or ovaries and/or changes in clearance rate. Testosterone levels showed approximately 24% increase above basal values after 6 months' use of levonorgestrel implants, which was attributed to concomitant increases in androstenedione levels. The implication of these results is discussed.

Age Factors↗

Serum cortisol in women users of subdermal levonorgestrel implants.

The aim of this study was to reveal changes in serum cortisol levels in users of subdermal levonorgestrel implants (Norplant). The study was undertaken on 18 regularly menstruating females subdermally implanted with 6 silastic rods, each containing 34 +or- 2 mg levonorgestrel, between days M0-M+4 of the menstrual cycle. Venous blood samples were collected between 10:00 and 11:00 a.m. under basal conditions, before and 1, 6, and 12 months after implantation. Sera were analyzed for cortisol by radioimmunoassay procedures. Mean +or- S.E.M. cortisol levels were 15.94 +or- 1.23, 10.20 +or- 0.84, 11.21 +or- 1.14, and 11.14 +or- 1.05 mcg prior to and 1, 6, and 12 months after implantation, respectively. All postimplantation values were significantly lower in comparison to basal levels. However, results obtained fell within the normal range of serum cortisol, with no subjects reporting symptoms of adrenocortical insufficiency.

Clinical Laboratory Techniques↗

Endocrine profile of semen in subfertile males with varicocele.

The semen levels of FSH, LH, estradiol, progesterone, and testosterone were estimated in normal fertile males and in patients with oligozoospermia and varicocele. The only significant difference between the mean values of the two groups was noted for semen LH. Patients with oligozoospermia and varicocele had lower level than the normal fertile males. As a function of prostatic infection, no significant difference was obtained.

Aged↗

Clinical and hormonal studies of subfertile males with varicocele.

To evaluate the hormonal factor in subfertile males with varicocele, FSH, LH, estradiol (E2), and testosterone (T) were assayed both from cubital and spermatic veins. The hormonal profile of patients showed no significant differences from the normal control group. Blood hormonal levels of E2 and T in the testicular veins were much higher than those in the cubital veins while FSH and LH levels showed no significant difference. FSH, LH, and testosterone blood levels in cubital and spermatic veins were statistically correlated. A preoperative hormonal study would be helpful in excluding cases in which varicocele is not the underlying cause of infertility.

Adult↗