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Biomedical subjects

Inger Sundström-Poromaa

Publications and source records attributed to Inger Sundström-Poromaa.

13 recordsLinked to original sources

Allopregnanolone concentration and mood--a bimodal association in postmenopausal women treated with oral progesterone.

RATIONALE: Allopregnanolone effects on mood in postmenopausal women are unclear thus far. OBJECTIVES: Allopregnanolone is a neuroactive steroid with contradictory effects. Anaesthetic, sedative, and anxiolytic as well as aggressive and anxiogenic properties have been reported. The aim of this study is to compare severity of negative mood between women receiving different serum allopregnanolone concentrations during progesterone treatment. MATERIALS AND METHODS: A randomized, placebo-controlled, double-blind, crossover study of postmenopausal women (n=43) treated with 2 mg estradiol daily during four treatment cycles. Oral micronized progesterone at 30, 60, and 200 mg/day, and placebo were added sequentially to each cycle. Participants kept daily symptom ratings using a validated rating scale. Blood samples for progesterone and allopregnanolone analyses were collected during each treatment cycle. RESULTS: During progesterone treatment, women had significantly higher negative mood scores when allopregnanolone serum concentration was in the range of 1.5-2 nmol/l compared to lower and higher concentrations. In addition, women displayed a significant increase in negative mood during the progesterone treatment period, compared to the estradiol-only period when 30 mg progesterone daily was used. On the other hand, treatment with higher doses of progesterone had no influence on negative mood. CONCLUSIONS: Mood effects during progesterone treatment seem to be related to allopregnanolone concentration, and a bimodal association between allopregnanolone and adverse mood is evident.

Administration, Oral↗

Depression and anxiety during pregnancy and six months postpartum: a follow-up study.

AIMS: To investigate the relationship between antenatal and postpartum depression and anxiety and to explore associated maternal characteristics. METHODS: From a population-based sample of 1,555 women attending two obstetric clinics in Sweden, all women with an antenatal psychiatric diagnosis (n = 220) and a random selection of healthy women (n = 500) were contacted for a second assessment three to six months postpartum. The Primary Care Evaluation of Mental Disorders was used for evaluation on both occasions. RESULTS: Fewer cases of depressive and/or anxiety disorders were prevalent postpartum compared with the second trimester screening. Depression and/or anxiety were prevalent in 16.5% of postpartal women versus 29.2% of pregnant women. There was a significant shift from a majority of subthreshold diagnoses during pregnancy to full Diagnostic and Statistical Manual of Mental Disorders (Fourth Edition) diagnoses during the postpartum period. A history of previous psychiatric disorder, living single, and obesity were significantly associated with a new-onset postpartum psychiatric disorder. The absence of a previous psychiatric disorder was significantly associated with a postpartum recovery of depression or anxiety. CONCLUSIONS: Depression and anxiety appear to be less common postpartum than during pregnancy.

Adult↗

Action by and sensitivity to neuroactive steroids in menstrual cycle related CNS disorders.

Neuroactive steroids are a large group of substances having effect in the brain and on brain function. The steroids most studied are allopregnanolone (ALLO), tetrahydrodesoxycorticosterone (THDOC), pregnenolone sulfate (PS) dihydroepiandrosteronesulfate (DHEAS), and estradiol (E2). ALLO and THDOC are called gamma-aminobutyric acid (GABA) steroids as they are positive modulators of the GABAA receptor in a similar way as benzodiazepines, barbiturates, and alcohol. GABA steroids not only have similar behavioral effects as benzodiazepines and barbiturates but, possibly, also similar adverse effects as well. This review aims to elucidate the possible role that neuroactive steroids play in the development of mood disorders in women. One of the most clear-cut examples of the interaction between mood, neuroactive steroids, and the GABA system is premenstrual dysphoric disorder (PMDD), which is a cluster of negative mood symptoms occurring during the luteal phase of the menstrual cycle in 2-6% of reproductive women. Furthermore, certain women also experience adverse mood effects during sequential progestin addition to postmenopausal estrogen treatment, which is why the role of neuroactive steroids in postmenopausal women is also addressed in this review.

Brain↗

Estradiol and the addition of progesterone increase the sensitivity to a neurosteroid in postmenopausal women.

The aim of this study was to compare the pharmacodynamic response to a neuroactive steroid, pregnanolone, before and during different hormonal settings of postmenopausal hormone replacement therapy (HRT), using natural progesterone. A second aim was to investigate whether the response to pregnanolone was associated with cyclicity in negative mood symptoms during treatment. Twenty six postmenopausal women with climacteric symptoms were administered HRT in a randomized, double blinded, placebo-controlled, crossover study. The women received 2 mg oral estradiol (E(2)) continuously during two 28-day cycles and 800 mg of vaginal progesterone or placebo sequentially for the last 14 days of each treatment cycle. Pharmacodynamic response to pregnanolone was assessed before treatment, and during the last week of each treatment cycle, by comparing the effects of intravenous pregnanolone (3alpha-hydroxy-5beta-pregnan-20-one) on saccadic eye velocity (SEV), saccade acceleration, saccade latency and self-rated sedation. Throughout the study daily symptom rating scales were kept. According to the daily symptom rating scales, patients were divided into two groups; one group who displayed a significant variance in negative mood symptoms during HRT (cyclicity) and one group with no cyclical changes in negative mood symptoms during treatment. During treatment with either E(2) alone or E(2)+progesterone the response in saccadic eye movement parameters and in self-rated sedation to pregnanolone was enhanced compared to pretreatment values. The SEV, saccade acceleration and sedation responses to pregnanolone was also increased in women expressing cyclicity in negative mood symptoms compared to women with no cyclical changes in negative mood during HRT. In conclusion, during treatment with either E(2) alone, or E(2)+progesterone, pregnanolone sensitivity was increased. Women expressing cyclicity in negative mood symptoms were more sensitive to pregnanolone than women without symptom cyclicity during HRT.

Adult↗

Relationship between allopregnanolone and negative mood in postmenopausal women taking sequential hormone replacement therapy with vaginal progesterone.

OBJECTIVE: To compare severity of negative mood and physical symptoms between women with different progesterone, allopregnanolone, and pregnanolone plasma concentrations during sequential Hormone Replacement Therapy (HRT) with vaginal progesterone suppositories. DESIGN: A randomized, placebo-controlled, double-blind, crossover study. METHOD: Postmenopausal women (n=36) with climacteric symptoms were treated with 2mg estradiol daily during three 28-day cycles. Vaginal progesterone suppositories with 400, 800 mg/day or placebo were added sequentially for 14 days per cycle. Daily symptom ratings using a validated rating scale were kept. Blood samples for progesterone, allopregnanolone, and pregnanolone radioimmunoassays were collected during each treatment cycle. RESULTS: Women were divided into three groups (low, medium, and high) based on plasma allopregnanolone concentration during progesterone treatment. The concentration of allopregnanolone in the medium group corresponds to the concentration seen during the mid luteal phase of the menstrual cycle. Within women with medium allopregnanolone concentration significantly more negative mood and physical symptoms were rated during progesterone treatment compared to treatment with unopposed estrogen or placebo. Between women significantly more negative mood symptoms were seen during progesterone treatment cycles with medium allopregnanolone concentration compared to cycles with low concentration. Plasma progesterone, allopregnanolone, and pregnanolone concentrations increased with increasing progesterone dose. Progesterone and allopregnanolone plasma concentrations increased 2h after vaginal administration of progesterone at 400 and 800 mg/day. CONCLUSION: Vaginal progesterone in sequential HRT causes negative mood, most likely mediated via allopregnanolone.

Administration, Intravaginal↗

The effect of a low dose of alcohol on allopregnanolone serum concentrations across the menstrual cycle in women with severe premenstrual syndrome and controls.

BACKGROUND: Neurosteroids have been proposed to play an important role in the interaction between alcohol and GABA(A) receptors and for the symptomatology of premenstrual dysphoric disorder (PMDD). The primary aim of this study was to investigate possible alcohol-induced changes in allopregnanolone serum concentrations across different menstrual cycle phases in women with severe premenstrual syndrome (PMS) and controls. METHODS: The allopregnanolone and cortisol responses to a low-dose of alcohol were evaluated in 14 women with and 12 women without severe premenstrual syndrome in the follicular and late luteal phases. The effect of a 30-min intravenous alcohol infusion (0.2 g/kg) on allopregnanolone and cortisol serum concentrations was compared to placebo, and compared between cycle phases and groups. Blood samples for measuring allopregnanolone were taken at baseline 25, 55, and 75 min after the start of the alcohol infusion. RESULTS: In the late luteal phase, the alcohol infusion decreased allopregnanolone levels, compared to baseline levels as well as to placebo. The difference in allopregnanolone levels between alcohol and placebo was evident 25 min (P < 0.01), 55 min (P < 0.01), and 75 min (P < 0.05) after start of the infusion. There was no change in allopregnanolone levels during the alcohol infusion in the follicular phase. Also, no difference in alcohol-induced allopregnanolone response between PMS patients and control subjects was detected. Cortisol levels declined during both the placebo and alcohol infusion, but did not differ with respect to which infusion had been given. CONCLUSION: During the late luteal phase, independent of PMS diagnosis, the low-dose alcohol infusion resulted in decreasing peripheral allopregnanolone levels.

Adult↗

Neonatal outcome following maternal antenatal depression and anxiety: a population-based study.

The aim of this study was to determine neonatal outcomes among women who had depressive and anxiety disorders during the second trimester of pregnancy in a population-based sample. Participants were 1,465 women and their neonates born at two obstetric clinics in Sweden. The inclusion period for the women was October 2, 2000-October 1, 2001. The Primary Care Evaluation of Mental Disorders (PRIME-MD) classification system was used to evaluate mental disorders in the second trimester of pregnancy. For assessment of demographic characteristics, birth statistics, and birth-related complications, the medical records of the included women and their offspring were reviewed after delivery. The study results revealed no differences in neonatal outcome between women with antenatal depressive disorders and/or anxiety disorders and healthy subjects. The authors conclude that neonatal outcome did not deteriorate despite the women's impaired mental health during pregnancy.

Adult↗

Implications of antenatal depression and anxiety for obstetric outcome.

OBJECTIVE: To investigate the obstetric outcome and health care consumption during pregnancy, delivery, and the early postpartum period in an unselected population-based sample of pregnant women diagnosed with antenatal depressive and/or anxiety disorders, compared with healthy subjects. METHODS: Participants were 1,495 women attending 2 obstetric clinics in Northern Sweden. The Primary Care Evaluation of Mental Disorders was used to evaluate depressive and anxiety disorders in the second trimester of pregnancy. To assess demographic characteristics, obstetric outcome, and complications, the medical records of the included women were reviewed. RESULTS: Significant associations were found between depression and/or anxiety and increased nausea and vomiting, prolonged sick leave during pregnancy and increased number of visits to the obstetrician, specifically, visits related to fear of childbirth and those related to contractions. Planned cesarean delivery and epidural analgesia during labor were also significantly more common in women with antenatal depression and/or anxiety. CONCLUSION: There is an association between antenatal depressive and/or anxiety disorders and increased health care use (including cesarean deliveries) during pregnancy and delivery.

Adult↗

Point prevalence of psychiatric disorders during the second trimester of pregnancy: a population-based study.

OBJECTIVE: This study was undertaken to determine the point prevalence of psychiatric disorders during the second trimester of pregnancy in a population-based sample of pregnant women. STUDY DESIGN: Participants were 1795 consecutive pregnant women attending routine ultrasound screening at two obstetric clinics in Northern Sweden during 1 year. The Primary Care Evaluation of Mental Disorders (PRIME-MD) was used for evaluating. RESULTS: Overall, 1734 (96.6%) of the women filled in the PRIME-MD patient questionnaire. Psychiatric disorders were present in 14.1% of the women. Major depression was prevalent in 3.3% of patients and minor depression in 6.9% of patients. Anxiety disorders were encountered in 6.6% of patients. Women with psychiatric disorders displayed significantly more somatic symptoms and more pronounced fear of childbirth. Among diagnosed patients, only 5.5% had some form of treatment. CONCLUSION: The prevalence of mood and anxiety disorders in this unselected population of pregnant women was high and the majority of the women were found to be undiagnosed and untreated.

Adult↗

Pathogenesis in menstrual cycle-linked CNS disorders.

That 3alpha-hydroxy-5alpha/beta-pregnane steroids (GABA steroids) have modulatory effects on the GABA-A receptor is well known. In behavioral studies in animals high exogenous dosages give concentrations not usually reached in the brain under physiological conditions. Animal and human studies show that GABA-A receptor-positive modulators like barbiturates, benzodiazepines, alcohol, and allopregnanolone have a bimodal effect. In pharmacological concentrations they are CNS depressants, anesthetic, antiepileptic, and anxiolytic. In low dosages and concentrations, reached endogenously, they can induce adverse emotional reactions in up to 20% of individuals. GABA steroids can also induce tolerance to themselves and similar substances, and rebound occurs at withdrawal. Menstrual cycle-linked disorders can be understood by the concept that they are caused by the action of endogenously produced GABA-steroids through three mechanisms: (a) direct action, (b) tolerance induction, and (c) withdrawal effect. Examples of symptoms and disorders caused by the direct action of GABA steroids are sedation, memory and learning disturbance, clumsiness, increased appetite, worsening of petit mal epilepsy, negative mood as tension, irritability and depression during hormone treatments, and the premenstrual dysphoric disorder (PMDD). A continuous exposure to GABA steroids causes tolerance, and women with PMDD are less sensitive to GABA-A modulators. A malfunctioning GABA-A receptor system is related to stress sensitivity, concentration difficulties, loss of impulse control, irritability, anxiety, and depression. An example of withdrawal effect is "catamenial epilepsy," when seizures increase during menstruation after the withdrawal of GABA steroids. Similar phenomena occur at stress since the adrenals produce GABA steroids during stress.

Affect↗

Increase of estrogen dose deteriorates mood during progestin phase in sequential hormonal therapy.

Previous studies have indicated that the addition of progestins during sequential hormonal replacement therapy (HRT) causes negative mood and physical symptoms. History of premenstrual syndrome, type of progestin, and dose of progestin have thus far been shown to influence the progestin-induced adverse mood symptoms during HRT. The aim of this study was to compare adverse mood effects of two different doses of estradiol, in combination with a progestin, during postmenopausal HRT. Twenty-eight perimenopausal women were included in this randomized, double-blind, crossover study comparing 2- or 3-mg continuous estradiol, with an addition of 10 mg medroxyprogesterone acetate on d 17-28 during each treatment cycle. The main outcome measures were mood and physical symptoms kept on a daily rating scale. Together with the progestin, the higher dose of estrogen caused significantly more negative mood symptoms than the lower dose. Tension, irritability, and depressed mood were all significantly augmented during the progestin phase of cycles with 3 mg estradiol (P < 0.001). Physical symptoms also increased during the progestin phase of 3-mg estradiol cycles (P < 0.001), whereas positive mood symptoms were less affected. The only positive mood that changed with estrogen dose was friendliness, which decreased during the progestin phase of high estradiol cycles compared with cycles with lower estradiol (P < 0.05). Our conclusion is that an increase of the estrogen dose accentuates negative mood and physical symptoms during the progestin phase of sequential hormonal therapy.

Adult↗

Progesterone effects during sequential hormone replacement therapy.

OBJECTIVE: The aim was to investigate the effect on mood and the physical symptoms of two dosages of natural progesterone and a placebo in postmenopausal women with and without a history of premenstrual syndrome (PMS). DESIGN: A randomized, placebo-controlled, double-blind, crossover study was performed. METHOD: Postmenopausal women (n=36) with climacteric symptoms were recruited. They received 2 mg estradiol continuously during three 28-day cycles. Vaginal progesterone suppositories with 800 mg/day, 400 mg/day, or placebo were added sequentially for 14 days per cycle. Daily symptom ratings using a validated rating scale were kept. RESULTS: Women without a history of PMS showed cyclicity in both negative mood and physical symptoms while on 400 mg/day progesterone but not on the higher dose or the placebo. Women without a history of PMS had more physical symptoms on progesterone treatment compared with placebo. Women with prior PMS reported no progesterone-induced symptom cyclicity. CONCLUSION: In women without prior PMS natural progesterone caused negative mood effects similar to those induced by synthetic progestogens.

Affect↗

The role of hormones and hormonal treatments in premenstrual syndrome.

Premenstrual syndrome (PMS) is a menstrual cycle-linked condition with both mental and physical symptoms. Most women of fertile age experience cyclical changes but consider them normal and not requiring treatment. Up to 30% of women feel a need for treatment. The aetiology is still unclear, but sex steroids produced by the corpus luteum of the ovary are thought to be symptom provoking, as the cyclicity disappears in anovulatory cycles when a corpus luteum is not formed. Progestogens and progesterone together with estrogen are able to induce similar symptoms as seen in PMS. Symptom severity is sensitive to the dosage of estrogen. The response systems within the brain known to be involved in PMS symptoms are the serotonin and GABA systems. Progesterone metabolites, especially allopregnanolone, are neuroactive, acting via the GABA system in the brain. Allopregnanolone has similar effects as benzodiazepines, barbiturates and alcohol; all these substances are known to induce adverse mood effects at low dosages in humans and animals. SSRIs and substances inhibiting ovulation, such as gonadotrophin-releasing hormone (GnRH) agonists, have proven to be effective treatments. To avoid adverse effects when high dosages of GnRH agonists are used, add-back hormone replacement therapy is recommended. Spironolactone also has a beneficial effect, although not as much as SSRIs and GnRH agonists.

Clinical Trials as Topic↗