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Biomedical subjects

Andrea R Genazzani

Publications and source records attributed to Andrea R Genazzani.

At least 19 recordsLinked to original sources

Effects of dydrogesterone and of its stable metabolite, 20-alpha-dihydrodydrogesterone, on nitric oxide synthesis in human endothelial cells.

OBJECTIVE: To investigate the effects of P, medroxyprogesterone acetate (MPA), and dydrogesterone (DYD) and its metabolite, 20-alpha-dihydrodydrogesterone (DHD) on endothelial synthesis of nitric oxide (NO) and characterize the signaling events recruited by these compounds. The Women's Health Initiative trial reports an excess of heart disease in postmenopausal women receiving MPA. DESIGN: Cell culture. SETTING: Research laboratory. PATIENT(S): Human endothelial cells from umbilical vein. INTERVENTION(S): Treatments with P, MPA, DYD, or DHD. MAIN OUTCOME MEASURE(S): Measure of NO release, endothelial nitric oxide synthase (eNOS) activity and expression, and activation of ERK 1/2 and Akt. RESULT(S): The administration of DYD alone or in combination with estrogen to endothelial cells results in neutral effects on NO synthesis and on the activity and expression of eNOS. In parallel, the stable metabolite DHD acts similarly to natural P, enhancing the expression of eNOS and inducing rapid activation of the enzyme through the regulation of the ERK 1/2 mitogen-activated protein kinase cascade. 20-Alpha-dihydrodydrogesterone and P also potentiate eNOS induction by E2. On the contrary, MPA does not trigger eNOS enzymatic activation and decreases the extent of eNOS induction by E2. CONCLUSION(S): These findings support the concept that synthetic progestins act differently on vascular cells and that hormonal preparations may differ as to their cardiovascular effects.

Cells, Cultured↗

Advances in hormone replacement therapy with drospirenone, a unique progestogen with aldosterone receptor antagonism.

Unlike other currently available progestogens, drospirenone (DRSP) has a pharmacological profile, which closely mimics that of endogenous progesterone, most notably potent anti-aldosterone and anti-androgenic effects. Consequently, DRSP, when combined with 17beta-estradiol (E2) as hormone replacement therapy (HRT), offsets E2-related water and sodium retention by blocking the mineralocorticoid receptor. This review evaluates the potential benefits offered by DRSP as the progestin component of HRT with respect to its anti-aldosterone activity, which translates into positive effects on body weight and blood pressure in clinical trials of continuous, combined E2/DRSP in post-menopausal women. In a 1-year, large-scale, randomised, controlled trial, E2 1 mg/DRSP 2 mg significantly decreased mean body weight by 1.2 kg versus baseline (P<0.001), whereas patients receiving E2 1 mg gained weight. E2 1 mg/DRSP 2 mg also significantly lowered mean systolic blood pressure (SBP) by 9.0 mmHg from baseline (P<0.05) versus 3.7 mmHg in the E2 1 mg group (P=0.220) in a sub-group of hypertensive women. In addition, E2/DRSP was not associated with hyperkalaemia (potassium > or =5.5 meq/L) irrespective of concomitant use of ACE inhibitors, angiotensin II receptor antagonists or non-steroidal anti-inflammatory drugs, and co-morbid diabetes mellitus. In summary, as well as effectively treating climacteric symptoms, DRSP 2 mg combined with E2 1 mg has shown positive effects on body weight and blood pressure in clinical trials, most likely due to DRSP's anti-aldosterone properties. This combination may therefore offer an alternative therapeutic option with additional benefits beyond current HRT agents for symptomatic post-menopausal women.

Androstenes↗

Estrogen receptor alpha interacts with Galpha13 to drive actin remodeling and endothelial cell migration via the RhoA/Rho kinase/moesin pathway.

Sex steroids control cell movement and tissue organization; however, little is known of the involved mechanisms. This report describes the ongoing dynamic regulation by estrogen of the actin cytoskeleton and cell movement in human vascular endothelial cells that depends on rapid activation of the actin-regulatory protein moesin. Moesin activation is triggered by the interaction of the C-terminal portion of cell membrane estrogen receptor alpha with the G protein Galpha(13), leading to activation of the small GTPase RhoA and of the downstream effector Rho-associated kinase. The resulting phosphorylation of moesin on Thr(558) is the means of moesin's binding to actin and the remodeling of the actin cytoskeleton. This cascade of events ensues within minutes of estradiol administration and results in changes in cell morphology and to the development of specialized cell membrane structures such as ruffles and pseudopodia that are necessary for cell movement. These findings expand our knowledge of the basis of estrogen's effects on human cells, including the regulation of actin assembly, cell movement and migration. They highlight novel pathways of signal transduction of estrogen receptor alpha through nontranscriptional mechanisms. Furthermore, exposure of this estrogen receptor-dependent, nongenomic action of estrogen on human vascular endothelial cells is especially relevant to the present interest in the role of estrogen in cardiovascular protection.

Actins↗

Metformin administration modulates neurosteroids secretion in non-obese amenorrhoic patients with polycystic ovary syndrome.

BACKGROUND: Polycystic ovary syndrome (PCOS) is a common endocrine disease that is observed frequently to be related to increased insulin resistance. The use of insulin-sensitizer compounds, such as metformin, permits great improvement of such metabolic abnormality and the restoration of normal ovarian function. Metformin administration reduces insulin resistance and androgen production both from the ovary and adrenal gland. AIM: On this basis we aimed to evaluate a group of non-obese amenorrheic PCOS patients before and after 6 months of metformin administration (500 mg per os twice daily) to better understand what changes might be induced by metformin on adrenal and ovarian function and in terms of temporal coupling of the pulsatile profiles of luteinizing hormone (LH), cortisol and allopregnanolone, the latter representative of the neurosteroid family. METHOD: A group of non-obese PCOS patients (n = 8) was enrolled after informed consent and underwent to a pulsatility study for LH, cortisol and allopregnanolone, and an oral glucose tolerance test before and on day 7 of the first menstrual cycle occurring after the 5th month of treatment. RESULTS: Plasma androgen levels were decreased significantly by metformin treatment, as were plasma LH and allopregnanolone levels and insulin resistance. Metformin administration decreased LH pulse amplitude but not pulse frequency. On the contrary, cortisol and allopregnanolone showed a significant change in pulse frequency. When temporal coupling was tested between pulsatile profiles of LH or cortisol with allopregnanolone, cortisol pulses were temporally coupled to allopreganolone peaks both before and under metformin administration while LH pulses were temporally coupled to allopreganolone secretory peaks only under metformin treatment. CONCLUSIONS: Our data demonstrate that metformin administration modulates LH secretion as well as cortisol and allopregnanolone pulsatile release. In addition, the results demonstrate that adrenal and ovarian steroidogenic activity is greatly modulated by any change in insulin sensitivity.

Adult↗

The European Menopause Survey 2005: women's perceptions on the menopause and postmenopausal hormone therapy.

OBJECTIVES: To identify and describe current women's thoughts about the menopause, hormone treatment (HT) and perceptions about breast cancer. METHODS: Between December 2004 and January 2005, 4201 postmenopausal women in seven European countries were interviewed via a standardized computer-aided telephone interview protocol. RESULTS: Almost all women reported to have experienced climacteric symptoms, and 63% of the women rated them as being severe. Only 52% of women were aware of the benefits of HT for relief of climacteric symptoms. Although 84% felt that severe symptoms should be treated, only 40% had used HT at some point in time. Thirty-four percent of the women preferring treatment with natural products did so because of the risk of breast cancer associated with HT. HT was recognized by 59% of the women as one of the most important contributors to an increased breast cancer risk. Most women received their information about HT and breast cancer risk from the media. CONCLUSIONS: This European survey reveals that the majority of women experience climacteric symptoms but that their decision whether or not to use HT is highly dependent on their concern about breast cancer risk. An increase in knowledge of the benefits and risks of HT is required for women to make appropriate decisions about hormone use.

Breast Diseases↗

Long-term low-dose oral administration of dehydroepiandrosterone modulates adrenal response to adrenocorticotropic hormone in early and late postmenopausal women.

OBJECTIVE: The aging process is associated with a decline in the circulating Delta5-androgen dehydroepiandrosterone (DHEA) and its sulfate ester, dehydroepiandrosterone sulfate (DHEAS). The present study aimed to evaluate the effects of a long-term (12 months) oral DHEA administration (25 mg/day) on adrenal function, before and after 3, 6 and 12 months of treatment. METHOD: Postmenopausal women belonging to two age groups, 50-55 years (n = 10) and 60-65 years (n = 10), were studied. Adrenal function was assessed in basal conditions, after suppression with dexamethasone (DXM) and following a stimulation test with adrenocorticotropic hormone (ACTH) (10 microg bolus). Serum levels of DHEA, DHEAS, androstenedione (Delta4-A), allopregnanolone, 17-hydroxyprogesterone (17-OHP) and cortisol were measured and the effects of DHEA supplementation on specific adrenal enzymatic pathways were evaluated by calculating precursor/product ratios (17-OHP/cortisol, 17-OHP/Delta4-A, DHEA/Delta4-A and DHEA/DHEAS). RESULTS: DHEA supplementation annulled the age-related differences in DHEA and DHEAS levels and induced a marked increase in all steroids, except for cortisol, after 3-6 months of treatment. Serum cortisol levels decreased from the 3rd month, both in younger and older subjects. DHEA supplementation did not affect DXM-induced suppression of adrenal steroidogenesis. During the treatment period all adrenal androgens and progestins showed a significant increase in their response to ACTH, while the cortisol response decreased significantly. The results suggest a significant DHEA-induced change in adrenal enzymatic activities, as also evidenced by the change in precursor/product ratios during therapy. CONCLUSION: Chronic DHEA administration is capable of modifying circulating levels of androgens and progestins in both early and late postmenopausal women by modulating the age-related changes in adrenal function.

Adjuvants, Immunologic↗

Clinical evaluation of patients with weight loss-related amenorrhea: neuropeptide Y and luteinizing hormone pulsatility.

AIM: To characterize patients with weight loss-related amenorrhea and controls with respect to the pulsatility of neuropeptide Y (NPY) and luteinizing hormone (LH). SUBJECTS: Nine young women (aged 20.23+/-2.11 years) diagnosed with weight loss-related amenorrhea (body mass index (BMI) 17.52+/-2.43 kg/m2) and five age-matched (age 21.88+/-3.12 years) normally menstruating (every 28-33 days) controls with normal BMI (23.62+/-3.11 kg/m2) (mean value+/-standard deviation). METHODS: Basal hormonal evaluation included serum follicle-stimulating hormone (FSH), LH, estradiol (E2) and NPY. A pulsatility study investigated NPY and LH episodic release. Patients from control the group were studied during the mid-follicular phase (days 6-8) of the menstrual cycle. RESULTS: Patients with weight loss-related amenorrhea had lower FSH, LH and E2 levels than controls (p < 0.01). Basal serum NPY levels were lower in amenorrheic patients than in menstruating women (p < 0.01). The numbers of NPY and LH peaks were higher in patients with weigh loss-related amenorrhea than in controls (p < 0.01 and p < 0.05, respectively). CONCLUSION: Increased NPY pulsatility may have pathophysiological significance in weight loss-related hypothalamic amenorrhea.

Adult↗

Impaired reduction of enhanced levels of dehydroepiandrosterone by oral dexamethasone in anorexia nervosa.

Allopregnanolone and dehydroepiendrosterone (DHEA) have been supposed to be involved in some psychiatric disorders including anorexia nervosa (AN). The secretion of DHEA and allopregnanolone occurs in both the brain and the adrenal gland, where it is under the control of the corticotrophin-releasing factor (CRF)/adrenocorticotrophin hormone (ACTH) system, and, according to the increased CRF/ACTH drive found in AN, we previously reported enhanced morning levels of both DHEA and allopregnanolone in underweight anorexic patients. To further characterize the physiology of these neurosteroids in AN, we measured plasma levels of cortisol, DHEA and allopregnanolone after the oral administration of 1 mg dexamethasone at 800h in six underweight AN women and ten age-matched healthy females. We found that, before dexamethasone administration, both cortisol and DHEA plasma concentrations were significantly increased in anorexic patients as compared to controls, whereas plasma allopregnanolone levels although increased in the former did not reach a statistical significance. Moreover, while cortisol levels after dexamethasone administration were suppressed in AN to values similar to normal controls, DHEA concentrations, although significantly decreased, remained higher than in normal controls. These data support the view that in AN, the increased production of DHEA may be linked to mechanisms other than the enhanced CRF/ACTH drive.

Adult↗

Differential estrogen signaling in endothelial cells upon pulsed or continuous administration.

UNLABELLED: While experimental evidence demonstrates that estrogen protects vascular cells, clinical trials on hormone replacement therapies (HRT) fail to report cardiovascular benefits. This discrepancy may indicate that estrogen signaling during HRT may not be fully effective in vascular cells, possibly due to the way of delivering estrogens to vascular tissues. We therefore, tested whether a different kinetics of exposure of endothelial cells to estrogens may alter the balance between transcriptional and non-transcriptional signaling. METHODS AND RESULTS: Cultured human umbilical vein endothelial cells (HUVEC) were exposed to equal amounts of 17beta-estradiol administered transiently (7 nM for 1 h) or continuously (0.29 nM for 24 h), using endothelial nitric oxide synthase (eNOS) expression and activity as functional endpoints. Transient and continuous administrations equally increased eNOS expression, implying that a short contact between hormone and cells is sufficient to trigger genomic pathways. In agreement, in ovariectomized rats pulse-like changes in plasma estradiol or stable levels equally increased aortic eNOS. More importantly, we extensively show that transient estradiol administration results in preferential recruitment of non-genomic pathways, leading to more vivid activation of MAPK and phosphatidylinositol-3 kinase (PI3K) cascades. CONCLUSIONS: Our data suggest that the kinetics of contact of estrogen with the cells could represent a sensor for estrogen receptor (ER) signaling towards non-genomic or genomic pathways. These findings deepen our understanding of estrogen signaling, and have important implications for the design of safer and more effective HRT.

Animals↗

Different effect of hormone replacement therapy, DHEAS and tibolone on endothelial function in postmenopausal women with increased cardiovascular risk.

Menopause is associated with an increased cardiovascular risk and with a decrease in endothelial function. Hormone replacement therapy (HRT) improves endothelial function in post-menopausal women (PMW) without established atherosclerosis. New alternative treatments, among which tibolone (T) and DHEAS have been suggested to reduce postmenopausal cardiovascular risk. Although, in vitro animal studies have suggested that T and DHEAS improve endothelial function, their effect in humans has never been tested. The aim of the present study was to compare the effects of HRT (continuous combined 0.625 mg conjugated equine estrogen plus 2.5 mg/d medoxyprogesterone) DHEAS and T on endothelium-dependent flow-mediated vasodilatation (FMD), plasma nitrite, nitrate and endothelin-1 levels in 16 PMW with increased cardiovascular risk in a double-blinded, double-crossover study. Women were randomized and treated for 4 weeks with HRT, T or DHEAS. Brachial artery diameter, FMD, endothelin-1 and plasma nitrite and nitrate levels were measured at baseline and after each treatment phase. Brachial artery diameters remained unchanged after each treatment phase. HRT significantly improved FMD compared to both baseline and to T and DHEAS therapies while no effect of T or DHEAS on FMD was noted. In conclusion, HRT, but neither T nor DHEAS, improves endothelial function and reduces plasma levels of endothelin-1 in PMW at risk of CAD.

Brachial Artery↗

Effects of low-dose, continuous combined hormone replacement therapy on sleep in symptomatic postmenopausal women.

Sleep disturbances in peri- and postmenopausal women may result from hormonal changes, vasomotor symptoms, and possibly psychological factors. Hormone replacement therapy (HRT) seems to diminish the disruption of sleep in climacteric women. The aim of this study was to determine the effects of a low dose of conjugated equine estrogens (CE) in combination with different progestins (LD-HRT) and evaluate differences between regimens on sleep in symptomatic postmenopausal women. Postmenopausal women were recruited and assigned to calcium-vitamin (control group) or to LD-HRT with 0.3mg of CE associated with a daily administration at bedtime of a progestin (2.5 mg MPA, CE + MPA, n = 20), or 100 mg natural micronized progesterone (CE + P, n = 20). Subjective symptoms were evaluated by the Greene climacteric scale, and by a visuanalogic graduated scale (0-10) at baseline and after 4, 8, and 12 weeks of study. Greene's scores for the control group were similar to those in LD-HRT group at baseline, and showed no significant modification at all subsequent measurements. Conversely, in LD-HRT group, a significant (P < 0.05) reduction in the scores of all Greene's domains was evident versus corresponding baseline and control group values. Conversely, in LD-HRT group, a significant (P < 0.05) reduction in the scores of all Greene's domains was evident with no difference in the scores of the two treated group. Both CE + MPA and CE + P significantly (P = 0.05) reduced the HF and sleep visuanalogic score in comparison to the control group. The score of sleep was significantly (P = 0.05) lower in the CE + P group in comparison to that measured in the CE + MPA group. No significant correlation between sleep and vasomotor score was found. In conclusion, low estrogen dose may have a value in the treatment of menopausal women in which sleep disturbances may be a symptom of estrogen deprivation. Low-dose estrogen associated with low-dose micronized progesterone may especially benefit women who complain of disturbed sleep.

Contraceptive Agents, Female↗

A randomized control comparison study of culture media (HTF versus P1) for human in vitro fertilization.

OBJECTIVE: It is now widely accepted that increasing the number of replacement embryos (>3 embryos per embryo transfer [ET]) is associated with an increased risk of multiple pregnancies. While embryo reduction is often proposed when there is a high risk of multiple pregnancies, it is a difficult decision for the couple. For this reason, different studies have focused on single embryo transfer, more precisely blastocyst transfer. The aim of the study is to confirm that phosphate-free culture media can be used to generate greater quality embryos. METHODS AND RESULTS: We carried out a study to compare the efficacy of human tubal fluid (HTF) versus preimplantation stage one (P1) as culture media for assisted reproductive therapy (ART). In 109 nonselected patients, we obtained an embryo fertilization rate with HTF and P1 culture media of 58.6 and 62.5% (P = 0.003), respectively. After 48 and 72 h, the morphology was similar for both P1 and HTF embryos in most patients. However, in the same patients, when HTF embryo quality was low (15.4%), P1 embryo quality was significantly higher 68.7% (P = 0.002). Some embryos were transferred at 48 h and some at 72 h after retrieval, in a randomized manner. We transferred a maximum of up to three embryos per ET. The implantation rate was significantly different; at 48 h, it was 6.8 and 12.2% for HTF and P1, respectively (P = 0.02). The pregnancy rate was 17.1% for HTF embryos and 23.7% for P1 embryos (P = 0.02). CONCLUSIONS: Therefore, we observed a significant difference between P1 and HTF in the fertilization rate, in embryo quality, in implantation rate and in pregnancy rate. But the most important difference between this study and others is that every patient was the control of herself, so we eliminated every variable.

Culture Media↗

Differential signal transduction of progesterone and medroxyprogesterone acetate in human endothelial cells.

The conjugated equine estrogens-only arm of the Women's Health Initiative trial, showing a trend toward protection from heart disease as opposed to women receiving also medroxyprogesterone acetate (MPA), strengthens the debate on the cardiovascular effects of progestins. We compared the effects of progesterone (P) or MPA on the synthesis of nitric oxide and on the expression of leukocyte adhesion molecules, characterizing the signaling events recruited by these compounds. Although P significantly increases nitric oxide synthesis via transcriptional and nontranscriptional mechanisms, MPA is devoid of such effects. Moreover, when used together with physiological estradiol (E2) concentrations, P potentiates E2 effects, whereas MPA impairs E2 signaling. These findings are observed both in isolated human endothelial cells as well as in vivo, in ovariectomized rat aortas. A marked difference in the recruitment of MAPK and phosphatidylinositol-3 kinase explains the divergent effects of the two gestagens. In addition, both P and MPA decrease the adhesiveness of endothelial cells for leukocytes when given alone or with estrogen. MPA is more potent than P in inhibiting the expression of vascular cell adhesion molecule-1 and intercellular adhesion molecule-1. However, when administered together with physiological amounts of glucocorticoids, MPA (which also binds glucocorticoid receptor) markedly interferes with the hydrocortisone-dependent stabilization of the transcription factor nuclear factor kappaB and with the expression of adhesion molecules, acting as a partial glucocorticoid receptor antagonist. Our findings show significant differences in the signal transduction pathways recruited by P and MPA in endothelial cells, which may have relevant clinical implications.

Cell Communication↗

Conjugated equine estrogens reverse the effects of aging on central and peripheral allopregnanolone and beta-endorphin levels in female rats.

OBJECTIVE: To compare beta-endorphin and allopregnanolone levels and their response to a 2-week oral estrogen treatment with conjugated equine estrogens (CEE) in young ovariectomized (ovx) and in healthy aged female rats. DESIGN: Prospective study. SETTING: Animal laboratory in an academic environment. ANIMAL(S): Twenty-four young ovx and 24 healthy aged female Wistar rats were treated with CEE. Three 8-rat control groups (cycling, ovx, and aged rats) were also included. INTERVENTION(S): Treated rats underwent 14-day oral treatment with three doses of CEE: 0.1 mg/kg/day, 0.5 mg/kg/day, and 2 mg/kg/day. MAIN OUTCOME MEASURE(S): Cerebral and peripheral beta-endorphin and allopregnanolone levels. RESULT(S): Beta-endorphin levels were lower in aged vs. cycling and ovx control rats. In brain and serum allopregnanolone levels were lower in aged vs. cycling control rats, whereas in the adrenals they were higher in aged vs. cycling animals. In the hypothalamus and anterior pituitary allopregnanolone levels were lower in ovx vs. aged animals. In both ovx and aged animals, CEE treatment reverted the effects of ovariectomy and aging, in a dose-dependent manner. CONCLUSION(S): Aging is associated with a decrease in cerebral and peripheral beta-endorphin and allopregnanolone. In hypoestrogenic rats, CEE treatment restores allopregnanolone and beta-endorphin content; this indicates a role for these compounds as neuroendocrine mediators of the effects of estrogens.

Adrenal Glands↗

Tibolone activates nitric oxide synthesis in human endothelial cells.

After the unexpected findings of the Women's Health Initiative trial, indicating that traditional cardiovascular risk markers fail to predict the effects of hormone replacement therapy, it is of interest to characterize how steroids act on vascular cells. This is particularly important for tissue-specific drugs such as tibolone, whose actions may differ from other preparations. Because nitric oxide (NO) is a key regulator of vascular tone and atherogenesis, we studied its regulation by tibolone and its metabolites on human endothelial cells. Tibolone and its estrogenic metabolites (3alpha- and 3beta-OH tibolone) activate NO synthesis by recruiting functional estrogen receptors, whereas the progestogenic/androgenic metabolite (Delta(4) isomer) has no effect. During prolonged exposures, tibolone and the estrogenic compounds enhance the expression of endothelial NO synthase (eNOS). In addition, tibolone is able to induce rapid activation of eNOS, leading to rapid increases in the release of NO. Relevant for its clinical effects, the sulfated metabolites of tibolone are also effective in activating eNOS. Different from estrogen, rapid activation of eNOS does not rely on recruitment of phosphatidylinositol-3 kinase but rather on MAPK-dependent cascades. These results help to understand the mechanisms of action of tibolone on the cardiovascular system and have relevant clinical implications.

Cells, Cultured↗