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V Mijatovic

Publications and source records attributed to V Mijatovic.

24 records · Page 2Linked to original sources

A randomized controlled study of the effects of 17beta-estradiol-dydrogesterone on plasma homocysteine in postmenopausal women.

OBJECTIVE: To investigate the effects of oral 17beta-estradiol (E2) -dydrogesterone on fasting plasma homocysteine concentrations in healthy postmenopausal women. METHODS: We studied 27 postmenopausal women who were assigned randomly to either a treatment group (n = 14) or a control group (n = 13). During the first 12 months of the study, treatment consisted of oral E2, 1 mg daily, combined sequentially with dydrogesterone 5 or 10 mg (14 days per 28-day treatment cycle). Thereafter, women were treated with oral E2, 2 mg daily, combined sequentially with dydrogesterone, 10 mg daily (14 days per 28-day treatment cycle) for a period of 3 months. The control group received no treatment. Fasting plasma total homocysteine concentrations were determined at baseline and 3, 12, and 15 months after study entry. RESULTS: At baseline, plasma homocysteine levels did not differ between the groups. After 15 months of hormone treatment mean plasma homocysteine concentration was lowered by 12.6% compared with baseline (P < .001; analysis of variance for repeated measures). Plasma homocysteine levels were not altered in the control group. The interaction between treatment and time for homocysteine levels was significantly different between the groups (P < .001; analysis of variance for repeated measures). The decrease in plasma homocysteine levels correlated inversely with the increase in serum E2 levels after 3 and 12 months of hormone treatment (r = -.54, P < .05 and r = -.56, P < .05, respectively). CONCLUSION: Plasma fasting homocysteine concentrations are lowered by E2-dydrogesterone therapy in postmenopausal women.

Dydrogesterone↗

Ambulatory--not office--blood pressures decline during hormone replacement therapy in healthy postmenopausal women.

Hormone replacement therapy (HRT, estrogen plus progestagen) in postmenopausal women has beneficial effects on the cardiovascular system. However, effects on blood pressure, determined with office measurements, remain controversial. We studied the effects of HRT in 29 healthy normotensive postmenopausal women (mean age 52.3 [3.8] years, median duration of amenorrhea 34.5 months), using ambulatory blood pressure monitoring at baseline and at 3 and 12 months of follow-up. Women were randomized to two groups: an HRT group (N = 14), treated with 1 mg 17beta-estradiol once daily and 5 or 10 mg dydrogesterone once daily during the third and fourth week of every 4 weeks; and a control group (C-group, N = 15), which did not receive therapy. Blood pressures did not differ between the groups at baseline (HRT group 117.1 (9.2)/74.4 (6.6) mm Hg, C-group 113.8 (11.2)/71.3 (7.4) mm Hg). During the follow-up period, changes from baseline of office blood pressures did not differ significantly between the groups. However, changes (95% CI) of mean 24-h blood pressures differed significantly between the two groups after 1 year of follow-up: a decrease of blood pressures was observed in the HRT group (delta systolic/delta diastolic = -5.54 [-8.86 to -2.21]/-4.23 [-6.66 to -1.80] mm Hg), whereas an increase was found in the C-group (+3.33 [-0.69 to +7.35]/+1.67 [-1.75 to +5.09] mm Hg; P [HRT v control group] = .001/.005). We conclude that HRT may have blood pressure lowering properties in healthy, normotensive postmenopausal women.

Analysis of Variance↗

Hormone replacement therapy and cardioprotection: basic concepts and clinical considerations.

A large body of epidemiological evidence shows that estrogen use after the menopause reduces the incidence of cardiovascular disease up to 50%. The use of progestin as co-medication in HRT appears not to attenuate the cardioprotective effects of estrogen. Menopause-related changes in metabolic cardiovascular risk factors are identifiable, as are HRT-related changes in these factors. Estrogens may act in a gender-specific way on vascular endothelial cells and other components of the vessel wall enhancing the synthesis and release of NO and other vasodilators and by inhibiting the synthesis and release of vasoconstricting agents, thus favoring vasodilation. Angiographic studies demonstrated in postmenopausal women with ischemic heart disease a reduction in coronary stenosis by estrogen monotherapy. Several studies, including the PEPI-trial, failed to demonstrate any major effect of HRT on blood pressure. The information on HRT and cardioprotection which is available so far is very promising and merits recommending HRT not only in healthy women but also in women with cardiovascular disease as well as in women with increased risk for this disease.

Blood Pressure↗

Oral 17 beta-estradiol continuously combined with dydrogesterone lowers serum lipoprotein(a) concentrations in healthy postmenopausal women.

Lipoprotein(a) [Lp(a)] is an independent risk factor for atherosclerosis. Serum Lp(a) concentrations increase after menopause, and postmenopausal estrogen replacement appears to decrease Lp(a) levels. In a randomized, double blind study, we examined the effects of 6-month treatment with daily 17 beta-estradiol (E2; 2 mg, orally) continuously combined with one of four dosages [2.5 mg (n = 41), 5 mg (n = 38), 10 mg (n = 38), and 15 mg (n = 20)] of dydrogesterone on fasting serum Lp(a) concentrations in 137 healthy postmenopausal women. At baseline, no significant differences were noted among the four treatment groups. During the study period of 6 months the median serum Lp(a) concentration decreased significantly from 128 mg/L (range, 5-1660) to 110 mg/L (range, 1-1530) in the total population, corresponding to a reduction of 13% (P < 0.001). The percent changes in serum Lp(a) correlated positively with the percent changes in serum E2 at 3 as well as 6 months of therapy (r = 0.38; P < 0.001 and r = 0.35; P < 0.001, respectively). A dose response of dydrogesterone on serum Lp(a) was not found. In addition, serum lipids and (apo)lipoproteins improved significantly in all four treatment groups. In conclusion, oral E2 continuously combined with dydrogesterone has beneficial effects on the lipid and lipoprotein profile and is effective in lowering Lp(a) concentrations in postmenopausal women.

Apolipoproteins↗

Urinary gonadotropin peptide (UGP) and serum CA 125 in gynaecologic practice, a clinical prospective study.

BACKGROUND: Beta human chorionic gonadotropin (beta-hCG) is expressed in human fetal tissue and cancer cells of various histologic types. It is degraded to the beta-core fragment (beta cf-hCG) which is concentrated in urine, and is known as urinary gonadotropin peptide (UGP). The objective of this study was to assess 1) the value of urinary gonadotropin peptide (UGP) as a single test and the combination of UGP with CA 125 as a diagnostic test in predicting the benign or malignant origin of gynecologic disease, 2) the influence of surgical removal of the tumor on the levels of UGP and CA 125, 3) the influence of the urinary concentration on the UGP levels in relation to the test results. PATIENTS, MATERIALS, METHODS AND STATISTICS: Serum and urine were collected from 31 gynecological patients with malignant and non-malignant disease, preoperatively, and 1 week and 6 weeks after surgery. Optimal cut-off levels were determined by Receiver Operating Characteristic-curves (ROC). Sensitivity (SENS), specificity (SPEC), positive (PPV) and negative predictive value (NPV) and overall test accuracy (ACC) for their ability to discriminate benign from malignant masses were calculated. Logistic regression analysis was performed to calculate the contribution of CA 125, UGP and UGP/creatinine (UGP/creat) to a model predicting malignancy. RESULTS: The optimal cut-off level for UGP was found 1 fmol/l, for UGP/creat 1.33 fmol/mg creatinine and for CA 125 100 kU/L. The distribution of the urinary creatinine values varied considerably (median = 8.3 mmol/l, range 0.6-25.8 mmol/l). The correlation coefficient (r) between log UGP and log CA 125 was 0.44 (p = 0.001) and between log UGP/creat and log CA 125 0.53 (p < 0.0001). CONCLUSIONS: UGP may be used as a tumor maker in gynecological disease. However, CA 125 as single test discriminates malignant from benign disease better than UGP or UGP/creat. In a logistic model the combination of CA 125 with UGP and UGP/creat predicts the benign or malignant character in 89% of the study population. Significant changes in UGP and UGP/creat levels were seen after removal of benign tumors, however, this was not found in ovarian cancer patients. Correction of the UGP values for the urinary concentration improved the results slightly.

Biomarkers, Tumor↗