Search PubMed⌕ Search

Biomedical subjects

M Drezgić

Publications and source records attributed to M Drezgić.

13 recordsLinked to original sources

Temporal coupling of luteinizing hormone and follicle stimulating hormone secretion in polycystic ovary syndrome.

The aim of this study was to assess the luteinizing hormone (LH) and follicle stimulating hormone (FSH) pulsatile secretion and their temporal relation (concordance) in subjects with polycystic ovary syndrome (PCOS). Fifteen subjects were included in the study (age 17-30 years, body mass index (BMI) 19.38-33.46 kg/m2). For the LH and FSH determinations, blood sampling started at 23.00 and lasted for 6 h with an intersample interval of 10 min. Pulse analysis was carried out using the PulsDetekt program. LH/FSH pulse concordance was calculated using the specific concordance index. Gonadotropin co-pulsatility was found in six subjects who were significantly younger than the others (median 18.5 vs. 22.5 years, p = 0.036). BMI, hirsutism grade, insulin sensitivity, estradiol, progesterone, testosterone, prolactin, cortisol and results obtained from the pulsatility analysis did not significantly differ between the groups. A serum cortisol concentration was correlated with the increased LH/FSH lag time (p = 0.851, p = 0.036) all subjects were included. In conclusion, two distinct LH/FSH secretory patterns were found in PCOS patients, manifested by the presence or absence of the concordance of gonadotropin secretion. In the group where LH/FSH co-pulsatility was present, correlation was found between the serum cortisol and the LH/FSH lag. We also confirmed the finding of previous studies that LH and FSH secretion are regulated by two different mechanisms.

Adolescent↗

Effect of weight loss on the pulsatile insulin secretion.

The aim of the study was to assess whether pulsatile insulin secretion is variable in the same individual and is related to changes in insulin sensitivity. Insulin sensitivity and pulsatility were measured before and after weight reduction in nine obese subjects. A pulsatility analysis was done using the PulsDetekt program. Blood was sampled every 2 min over a period of 90 min. The secretion randomness was quantified using approximate entropy (ApEn), and ApEn normalized by SD of the insulin time series (nApEn). Lower values indicate more regular secretion. Insulin sensitivity was measured using the homeostasis model assessment. Data are presented as median, minimum-maximum. After weight loss insulin sensitivity was increased (12.16, 7.60-76.70 vs. 38.96, 19.88-74.96%), the number of insulin pulses was reduced (11, 8-16 vs. 9,6-12), and they were more regular (ApEn, 0.92, 0.53-133 vs. 0.69,0,40-1.27; nApEn, 1.07, 0.74-1.33 vs. 0.97, 0.54-1.42). Before and after the weight loss there was a correlation between ApEn and nApEn and insulin sensitivity. Therefore, insulin secretion regularity is variable in the same individual and is related to insulin sensitivity.

Adult↗

Optimizing the diagnostic criteria for standard (250-microg) and low dose (1-microg) adrenocorticotropin tests in the assessment of adrenal function.

ACTH stimulation is the standard test for assessment of adrenal function. It was suggested that the low dose (1 microg) would be more sensitive for detecting mild secondary adrenal insufficiency than the usual dose of 250 microg. The aim of this study was to find the optimal diagnostic criteria and to compare standard dose test (SDT) with the low dose test (LDT). A group of patients treated with corticosteroids for the 6 months was considered to have hypothalamo-pituitary-adrenal impairment. Studies were performed in 14 corticosteroid-treated and 28 control subjects in random order on 2 consecutive days. Tests were analyzed using the receiver operating characteristic curve method. The best test was cortisol increment at 15 min of the LDT. It was significantly better than the cortisol concentration at 15 min of the SDT, the best test during the SDT (receiver operating characteristic curve area and 95% confidence interval: LDT, 0.997 and 0.956-0.999; SDT, 0.827 and 0.662-0.929; P = 0.0113). For the cortisol increment at 15 min of the LDT at 100% sensitivity, the diagnostic value was 100 mmol/L, and the specificity was 96%. Therefore, the LDT is superior to the standard dose test in the assessment of secondary adrenal insufficiency.

Adrenal Cortex Hormones↗

Influence of three-week fasting on gonadotropin pulsatility in obese menstruating women.

OBJECTIVE: To evaluate the influence of three-week fasting on gonadotropin pulsatility in extremely obese women of reproductive age. DESIGN: Prospective study of 21-day fasting (400 kcal/day), under medical supervision. SUBJECTS: 20 females, average age of 35.1 +/- 5.9 y, and average BMI of 41.19 +/- 8.39 kg/m2, with regular menstrual cycles (26-34 days). The mean weight loss was 12.5 +/- 3.23 kg. MEASUREMENTS: Blood samples for LH and FSH were taken between 4th and 7th day of the menstrual cycle, before and in the first cycle immediately after weight reduction, for 6 h, starting at 09.00 with 10 min intersample intervals. Pulsatility analysis was done using Pulsar program. Statistical analysis was done using Wilcoxon's matched pairs signed ranking test and McNemar's test. RESULTS: There was no statistically significant difference (p > 0.05) in LH and FSH pulsatile secretion before and after diet including the number of pulses, amplitudes, interpulse intervals and peak lengths. There were no disturbances of menstrual cycle during or after the diet. CONCLUSION: These results suggest that a 21-day fast, accompanied with significant weight loss, does not affect gonadotropin pulse pattern in follicular phase and normal menstrual cycle length in extremely obese females of reproductive age, compared with the pattern before diet.

Adult↗

[Treatment of Grave's ophthalmopathy with high doses of corticosteroids].

UNLABELLED: Severe ophthalmopathy with sight impairment and double vision due to a compressive optic neuropathy, extraocular muscle thickness and corneal exposure occurs in 3-5% of all patients with Graves' hyperthyroidism [1]. Steroids are the choice of treatment for ophthalmopathy in more than 50%, and with orbital radiotherapy or surgical decompression in more than 70% of cases [2]. In severe ophthalmopathy steroids are effective in more than 60% of patients [1, 3], but to be effective high dosage is necessary [1, 4-6]. High-dose intravenous steroid pulse therapy is probably preferable to oral steroids giving a better response with fewer adverse effects [6]. The aim of the study was to evaluate the efficacy of high-dose intravenous methylprednisolone pulse therapy followed by oral steroids in the treatment of patients with severe Graves' ophthalmopathy. PATIENTS AND METHODS: Fourteen euthyroid patients with severe Graves' ophthalmopathy were treated with high-dose intravenous methylprednisolone during 6 months and followed-up for 24-48 months by clinical and ophthalmological assessment. During three days two doses of methylprednisolone were given as 500 mg in 500 ml isotonic saline infusion. The treatment was followed by oral prednisone 40 mg daily and tapered off to 10 mg in four weeks when next course of therapy started. There were no contraindications for steroid treatment. Characteristics of the group are presented in Table 1. Ophthalmological assessment relating to the status of cornea, extraocular muscles, eyelids, proptosis and optic nerve function was done during the study. It provides the measurement of visual acuity, intraocular pressure, visual evoked potentials, palpebral apertures and proptosis, fundoscopy, the assessment of ocular motility, visual fields, color vision, lagophthalmos and corneal changes. For better evaluation of eye disease clinical activity score and patients self-assessment were used. Thyroid hormones and thyroid microsomal antibodies were measured during the study. All patients were photographed before and after treatment. Orbital computed tomograms were performed before and after treatment for extraocular muscles assessment. Data were analyzed by Wilcoxon test. RESULTS: Clinical activity score fell significantly within the first week of therapy in all patients and remained stable during the follow-up period (before treatment: mediana 5, min 3, max 7 and after: mediana 2, min 1, max 4, p < 0.01). Proptosis (Table 2, Figure 1) was significantly reduced (mean values before and after treatment were 24.15 mm and 22.75 mm respectively, the difference was 1.40 mm; p = 0.014). Visual acuity was improved in 2 of 5 patients (Table 3). Ophthalmological assessment of color vision, fundal changes, visual fields and intraocular pressure is presented in Table 4. Five of 9 patients experienced loss or amelioration of diplopia after a 3-6 month treatment. The ocular motility was normalized or improved in 9 of 10 patients. The extraocular muscle enlargement on orbital CT scans decreased in 10 patients (mean score before and after treatment was 6.9 and 3.8 respectively). Minimal and transient side effects were observed during treatment. DISCUSSION: The best parameters of severity of the disease and of response to treatment are those related to assessment of optic nerve function, ocular motility and corneal status [6, 10]. In this series of 14 patients treated with high-dose steroids we found an improvement in visual acuity and color vision and normalization of visual fields, intraocular pressure, visual evoked potentials and fundal changes within a few days of treatment. Clinical activity score (CAS) was significantly and promptly reduced by therapy as most reports revealed [3, 5, 8]. CAS has a high predictive value for the outcome of treatment since it is based on signs of inflammation. The low score level, however, does not preclude a therapeutic success [9]. A mean value of proptosis was significantly reduced by thera

Adult↗

[Ovarian Leydig cell tumor].

INTRODUCTION: Leydig cell tumors are sex cord-stromal tumors with sexual steroid production (predominantly testosterone). They account for less than 0.6% of ovarian neoplasms and mostly appear at the age of 28. HISTOPATHOLOGY: It is a solid yellowish nodular tumor, less than 5 cm in diameter. It consists of polygonal Leydig cells, eosinophillic cytoplasm with lipid vacuole and lipochrome pigments. Nuclei are oval, pleomorphic with rare nucleoli. Hyperthecosis is around the tumor. CASE DESCRIPTION: Signs and symptoms depend on age of women and testosterone levels. Women complain about hirsutism, hoarseness, muscular hypertrophy, increased libido, clitoromegaly, temporal hair loss and menstrual disturbances. DIAGNOSIS: Basal hormone analysis reveals extremely high testosterone levels, mildly high androstenedione and 17 OH progesterone, and suppressed follicle stimulating hormone and luteinizing hormone. Estradiol, dehydroepiandrosterone sulfate and other hormones are normal. Dexamethasone screening test decreases dehydroepioandrosterone sulfate and androstenedion, whereas testosterone levels are only partly suppressed. Human choriogonadotropin test is clearly stimulatory for testosterone. Suppressed gonadotropin levels do not respond to luteinizing hormone releasing hormone stimulation. Ultrasonography, nuclear magnetic imaging, Doppler sonography, ovarian vein catheterization can be used for visualization. The removal of tumor is followed by normalization of testosterone levels, increase of gonadotropins and gradual disappearance of all symptoms and signs. THERAPY: The only effective therapy is operative.

Child↗

[Why aren't Leydig cell tumors of the ovary diagnosed in time?].

INTRODUCTION: Leydig cell tumor is a rare sex-cord tumor with sex steroid secretion (mostly testosterone). All clinical symptoms and signs are the consequence of extremely high testosterone level. The diagnosis is confirmed using hormone analysis. CASE DESCRIPTION: A 46-year-old woman with previously normal reproductive function was admitted to the hospital due to hirsutism, temporal hair loss, hoarse voice, increased libido, amenorrhea and clitoromegaly. The examination revealed hirsutism score 36 and signs of defeminization and virilisation. Basal testosterone levels were extremely high before operation, while follicle stimulating hormone and luteinizing hormone were suppressed. Androstenedione was above normal level, while other hormones were normal. Testosterone increased twice in response to Pregnyl. In regard to dexamethasone test there was no response of testosterone, indicating a virilizing ovary tumor. The ultrasound of pelvis was normal. Intraoperatively, a solid 2.3 cm Leydig cell tumor was diagnosed. Testosterone decreased promptly. CONCLUSION: This study points to a long-term diagnostic procedure in Leydig cell tumor detection and effects of endogenous testosterone secretion on hypothalamic-pituitary-ovarian axis.

Female↗