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Biomedical subjects

S Nyberg

Publications and source records attributed to S Nyberg.

At least 19 recordsLinked to original sources

Pharmacokinetics of progesterone and its metabolites allopregnanolone and pregnanolone after oral administration of low-dose progesterone.

OBJECTIVES: To investigate the pharmacokinetics of progesterone, allopregnanolone and pregnanolone after treatment with a low oral dose of progesterone. METHODS: Eight postmenopausal women were given a single oral dose of 20 mg of micronised progesterone on Day 1 and 20 mg twice daily on Days 2-7. Blood samples for the analysis of progesterone, allopregnanolone and pregnanolone were collected, and pharmacokinetic parameters were calculated. RESULTS: After ingestion of a single dose, areas under the plasma concentration-time curve (AUC) from 0 to 12 h for progesterone, allopregnanolone and pregnanolone were 127%, 196% and 119% higher than the corresponding AUCs estimated to be caused by endogenous production. The maximum plasma concentration (Cmax) and the AUC values were significantly lower for pregnanolone than for progesterone and allopregnanolone. The trough concentrations at steady state (Css) were significantly higher than the baseline values, and Css for pregnanolone was significantly lower than for allopregnanolone and progesterone. Css for allopregnanolone was in the range of what is normally seen in the menstrual cycle. CONCLUSIONS: After ingestion of a low-dose of progesterone, the concentrations of allopregnanolone were in the same range as those of progesterone. Oral doses of 20 mg of progesterone twice daily to postmenopausal women produced allopregnanolone concentrations comparable to those achieved physiologically in premenopausal women. Low-dose oral progesterone may be used as a prodrug to allopregnanolone when the aim is to investigate low-dose allopregnanolone effects in humans.

Administration, Oral↗

Kidney transplantation without calcineurin inhibitors using sirolimus.

INTRODUCTION: With the introduction of new immunosuppressive medicines, it has become possible to determine the extent to which nephrotoxic medicines contribute to CAN. The aim of this study is to compare the safety and efficacy of calcineurin inhibitor (CI) free immunosuppression in a prospective, randomized trial comparing sirolimus-mycophenolate mofetil (MMF)-prednisone to tacrolimus- MMF-prednisone. METHODS: Patients are randomized at the time of transplant to receive either tacrolimus (target level 12 to 15 ng/mL in the first month) or sirolimus (target level 12 to 18 ng/mL in the first month). All patients also receive MMF (750 mg bid) and prednisone tapered to 10 mg/d by 3 months and thymoglobulin induction (1.5 mg/kg/d on days 0, 1, 2, 4 and 6). RESULTS: At this point we have 4-month follow-up in 85 patients. The acute rejection rate is 7.5% (3/40) in the tacrolimus group and 6.7% (3/45) in the sirolimus group. We have discontinued sirolimus in eight patients so far, with wound complications being the most common indication. Renal function appears to be better in the sirolimus group at 1 month after transplantation, but the difference is not statistically significant. CONCLUSIONS: While longer follow-up is needed, these results demonstrate that total avoidance of CI can be achieved with extremely low acute cellular rejection rates using sirolimus-based immunosuppression in combination with thymoglobulin, MMF, and prednisone.

Calcineurin Inhibitors↗

Biochemical effects in brain of low doses of haloperidol are qualitatively similar to those of high doses.

Typical and atypical antipsychotic drugs (APD) show differential effects in brain on both dopamine output and activation of Fos-like immunoreactivity (FLI) in dopamine nerve terminal regions. Typical APD increase dopamine output preferentially in the core and atypical APD increase dopamine output preferentially in the shell of the nucleus accumbens (NAC). Whereas both typical and atypical APD increase FLI in NAC, typicals cause FLI activation in the striatum and atypicals cause FLI activation in the prefrontal cortex. Clinically, low doses of haloperidol cause less side-effects than higher doses, and low-dose haloperidol has been suggested as a cost-effective alternative to atypical APD. Here, in vivo voltammetry in anaesthetised, pargyline-pretreated rats was used to measure dopamine output in the two subdivisions of the NAC and, in addition, immunohistochemistry was used to assess FLI activation in dopamine target areas, following acute haloperidol administration. Haloperidol, 0.001 and 0.01 mg/kg i.v., caused a significantly higher dopamine output in the core than in the shell of the NAC. Moreover, haloperidol 0.05 and 0.5, but not 0.005, mg/kg s.c. increased FLI in the NAC and the striatum, but not in the medial prefrontal cortex. Thus, even extremely low doses of haloperidol generate, in principle, the same biochemical effects in brain as higher doses, and these effects remain different from those of atypical APD. These biological data indicate that clinical differences between haloperidol and atypicals are qualitative rather than dose-dependent. Consequently, our results do not support the use of low-dose haloperidol as replacement for atypical APD in the treatment of schizophrenia.

Amygdala↗

The impact of different doses of medroxyprogesterone acetate on mood symptoms in sequential hormonal therapy.

The aim of this study was to compare adverse mood effects of two different doses of medroxyprogesterone acetate (MPA) during postmenopausal hormone replacement therapy (HRT) in women with and without a history of premenstrual syndrome (PMS). The study was designed as a randomized double-blind cross-over study and included 36 postmenopausal women at three health care areas in northern Sweden. The women received 2 mg estradiol continuously during five 28-day cycles and 10 mg or 20 mg MPA sequentially for 12 days during each cycle. The main outcome measures were mood and physical symptoms noted on a daily rating scale. We found that physical symptoms did not differ between 10 and 20 mg MPA. Both women with a history of PMS and women without responded with more negative mood symptoms with the lower dose of MPA. In women with previous PMS the higher dose of MPA enhanced positive mood symptoms. With respect to mood and physical symptoms, the aim to lower MPA doses in HRT is unwarranted.

Affect↗

Binding of [3H]paroxetine to serotonin uptake sites and of [3H]lysergic acid diethylamide to 5-HT2A receptors in platelets from women with premenstrual dysphoric disorder during gonadotropin releasing hormone treatment.

Changes in serotonergic parameters have been reported in psychiatric conditions such as depression but also in the premenstrual dysphoric disorder (PMDD). In addition, hormonal effects on serotonergic activity have been established. In the present study, binding of [3H]paroxetine to platelet serotonin uptake sites and binding of [3H]lysergic acid diethylamide ([3H]LSD) to platelet serotonin (5-HT)2A receptors were studied in patients with PMDD treated with a low dose of a gonadotropin releasing hormone (GnRH) agonist (buserelin) or placebo and compared to controls. The PMDD patients were relieved of premenstrual symptoms like depression and irritability during buserelin treatment. The number of [3H]paroxetine binding sites (Bmax) were significantly higher in the follicular phase in untreated PMDD patients compared to controls. When treated with buserelin the difference disappeared. No differences in [3H]LSD binding between the three groups were shown. The present study demonstrated altered platelet [3H]paroxetine binding characteristics in women with PMDD compared to controls. Furthermore, [3H]paroxetine binding was affected by PMDD treatment with a low dose of buserelin. The results are consistent with the hypothesis that changes in serotonergic transmission could be a trait in the premenstrual dysphoric disorder.

Adult↗

Sensitivity to a neurosteroid is increased during addition of progestagen to postmenopausal hormone replacement therapy.

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). Twenty-seven postmenopausal women with climacteric symptoms were administered HRT in a randomized, double-blinded, placebo-controlled crossover study. The women received 2 mg estradiol (E2) continuously during four 28-day cycles and 10 mg medroxyprogesterone acetate (MPA), 1 mg norethisterone acetate (NETA) or placebo sequentially for the last 14 days in each cycle. The pharmacodynamic response to pregnanolone was assessed before treatment and during the last week of each treatment, by comparing the effects of intravenous pregnanolone (3alpha-hydroxy-5beta-pregnan-20-one) on saccadic eye velocity (SEV), saccade deceleration, saccade latency and self-rated sedation. Throughout the study daily symptom rating scales were kept. During the progesta gen phase of the treatment cycles, negative mood symptoms and physical symptoms were increased, whereas positive mood symptoms were decreased. Compared to pretretreatment conditions, E2 alone did not change the responsiveness to pregnanolone. During progestagen addition to E2, the responsiveness to pregnanolone was increased. The sedation response increased compared to pretreatment conditions during both E2 + MPA and E2 + NETA treatment. Compared to E2 treatment alone, addition of MPA increased the postpregnanolone effect on saccade deceleration, whereas the SEV response to pregnanolone was increased during E2 + NETA treatment. It is concluded that pregnanolone sensitivity increases together with deterioration in mood symptoms during addition of progestagen to HRT.

Affect↗

No support for regional selectivity in clozapine-treated patients: a PET study with [(11)C]raclopride and [(11)C]FLB 457.

OBJECTIVE: The authors' goal was to test the hypothesis of extrastriatal D(2) receptor selectivity as the mechanism of action of clozapine. METHOD: Positron emission tomography (PET) was used to examine extrastriatal as well as striatal dopamine D(2) receptor occupancy in four patients treated with clozapine and three patients treated with haloperidol. The reference radioligand [(11)C]raclopride was used for determination of D(2) receptor occupancy in the striatum. The radioligand [(11)C]FLB 457 was chosen for determination of D(2) receptor occupancy in the thalamus, the temporal cortex, and the frontal cortex. RESULTS: In patients treated with haloperidol the D(2) receptor occupancy was high in all examined brain regions. In clozapine-treated patients the D(2) receptor occupancy was relatively low in both the striatum and the extrastriatal regions. CONCLUSIONS: The results from the present study give no support for the hypothesis of regional selectivity as the mechanism of action for clozapine.

Adult↗

High 5HT2A receptor occupancy in M100907-treated schizophrenic patients.

RATIONALE: Selective drugs are required to test the hypothesis whether antipsychotic effects may be induced or modulated by 5HT(2A) receptor antagonism. M100907 (previously known as MDL 100,907) is a highly selective 5HT(2A) antagonist in clinical development. OBJECTIVE: To test if the suggested clinical dose of 20 mg M100907 daily induces high 5HT(2A) receptor occupancy in patients with schizophrenia. METHODS: The 5HT(2A) receptor occupancy was determined in two patients with schizophrenia treated with M100907, 20 mg once a day. Positron emission tomography (PET) with (11)C-labeled M100907, was performed prestudy and under steady state conditions. Clinical ratings were performed weekly. RESULTS: Clinical treatment with M100907, 20 mg daily induced a very high 5HT(2A) receptor occupancy in the frontal cortex of both patients (>90%). M100907 was well tolerated. One patient improved minimally and one patient became minimally worse during treatment. CONCLUSIONS: The results confirm that an oral dose of 20 mg per day ensures adequate 5HT(2A) receptor occupancy for clinical proof of concept. The sample is too small to allow conclusions about the clinical effect.

Adult↗

Negative mood changes during hormone replacement therapy: a comparison between two progestogens.

OBJECTIVE: The aim of this study was to compare side effects of medroxyprogesterone acetate and norethindrone acetate during postmenopausal hormone replacement therapy in women with and without a history of premenstrual syndrome. STUDY DESIGN: Fifty-one postmenopausal women were randomly selected in a double-blind crossover study. The women received 2 mg of estradiol continuously during five 28-day cycles and 10 mg of medroxyprogesterone or 1 mg of norethindrone sequentially for 12 days of each cycle. Daily symptom rating scales were kept. RESULTS: The women showed cyclic changes, with negative mood and physical symptoms culminating during the late progestogen phase and positive mood during the estrogen-only phase. Symptoms declined with time but remained after 5 months. Women with a history of premenstrual syndrome responded strongly to both progestogens. Medroxyprogesterone acetate induced less negative and more positive mood symptoms than norethindrone in women with no history of premenstrual syndrome. In both groups medroxyprogesterone caused more physical symptoms than norethindrone. CONCLUSION: The addition of medroxyprogesterone to estrogen is preferable to norethindrone with respect to mood symptoms in women without a history of premenstrual syndrome.

Affect↗

The role of positron emission tomography in the drug development of M100907, a putative antipsychotic with a novel mechanism of action.

Antipsychotic drug development has been a slow process since the discovery of chlorpromazine more than 45 years ago. Researchers identify a large number of potential compounds; screen them for antipsychotic activity in in vitro and animal test models; devise appropriate formulations; perform preclinical pharmacology, pharmacokinetic, and toxicology studies; perform healthy volunteer and then patient clinical studies; and finally negotiate with regulatory agencies for drug approval. In the United States, this process takes an average of 10 to 12 years and costs more than $500 million per approved drug. More recently, the pharmaceutical industry is benefiting from a new wave of technologic innovations that have advanced our understanding of the biology of disease processes and increased the efficiency of the research and development process. However, while these new technologies may appear to be expensive, by providing the basis for early go/no-go decisions, technologies such as PET can actually be cost-effective. To ensure that innovative drug research continues, a practical strategy (rational drug design) to evaluate drugs more efficiently in terms of both time and cost (fewer studies with fewer patients) must be developed for each new drug candidate. One of the most important and difficult steps in the drug development process is defining the dose-response relationship. Using M100907 as an example, we demonstrated that mechanism-based research promotes cost-effective drug development. The therapeutic index of M100907 was defined in phase I single- and multiple-dose tolerability studies. Nuclear imaging using PET technology was then used to confirm the mechanism of action of M100907 in the target organ (living human brain) and to target an appropriate dose range and regimen. With these data, clear go/no-go decision points could be established early within the clinical drug development process, and the selection of M100907 doses to carry forward into large-scale clinical trials in patients with schizophrenia could be narrowed.

Antipsychotic Agents↗

Suggested minimal effective dose of risperidone based on PET-measured D2 and 5-HT2A receptor occupancy in schizophrenic patients.

OBJECTIVE: Multicenter trials with the novel antipsychotic risperidone have suggested a standard dose of 6 mg/day. However, a dose producing the highest response rate in fixed-dose studies is likely to exceed the minimal effective dose in most patients. The aim of this positron emission tomography (PET) study was to suggest a minimal effective dose of risperidone based on measurements of dopamine D2 and serotonin 5-HT2A receptor occupancy. METHOD: Eight first-episode or drug-free schizophrenic patients were treated with risperidone, 6 mg/day, for 4 weeks and then 3 mg/day for 2 weeks. PET was performed after 4 and 6 weeks, with [11C]raclopride to measure D2 receptor occupancy and [11C]N-methylspiperone to measure 5-HT2A receptor occupancy. RESULTS: Seven patients completed the study and responded to treatment with risperidone. No patient had extrapyramidal side effects at the time of inclusion in the study. At the 6-mg/day dose, mean D2 receptor occupancy was 82% (range = 79%-85%), 5-HT2A receptor occupancy was 95% (range = 86%-109%), and six patients had developed extrapyramidal side effects. After dose reduction to 3 mg/day, D2 receptor occupancy was 72% (range = 53%-78%), and 5-HT2A receptor occupancy was 83% (range = 65%-112%). Three patients had extrapyramidal side effects at this time. CONCLUSIONS: Treatment with risperidone, 6 mg/day, is likely to induce unnecessarily high D2 receptor occupancy, with a consequent risk of extrapyramidal side effects. High 5-HT2A receptor occupancy did not prevent extrapyramidal side effects completely. The authors previously suggested an optimal interval for D2 receptor occupancy of 70%-80%. To achieve this, resperidone, 4 mg/day, should be a suitable initial dose for antipsychotic effect with a minimal risk of extrapyramidal side effects in most patients.

Adult↗

Treatment of premenstrual syndrome with gonadotropin-releasing hormone agonist in a low dose regimen.

BACKGROUND: GnRH agonists constitute a well-documented treatment for premenstrual syndrome (PMS). However, the hypo-estrogenic state induced by the treatment renders it less suitable for long-term clinical use. The aim of the current study was to investigate the efficacy of a low dose GnRH agonist with respect to its ability to relieve premenstrual symptoms and maintain regular ovulatory cycles. METHODS: The effect of a low dose GnRH agonist (buserelin) on luteal phase symptomatology was evaluated in 27 women with severe premenstrual syndrome. The design was doubleblind, placebo-controlled and cross-over. Patients were randomized to either GnRH-agonist intranasally in a dosage of 100 microg once daily for two months or placebo for two months before the cross-over was made. The primary outcome measure consisted of daily symptom ratings for mood and physical symptoms made by the patients throughout the study. Adverse events and hormone concentrations were assessed at visits every second week. RESULTS: Premenstrual irritability and depression were significantly relieved by low dose GnRH agonist. Positive symptoms such as friendliness and cheerfulness were also improved during the premenstrual week. Likewise physical symptoms of swelling and headache displayed a significant improvement during buserelin treatment, whereas breast tenderness scores were unaffected by the treatment. The low dose GnRH agonist treatment regimen induced anovulation in as much as 56% of patients, but these subjects were significantly older than those women who maintained ovulatory cycles throughout the study. CONCLUSION: GnRH treatment significantly reduced premenstrual depression and irritability. However, low dose GnRH therapy is prone to induce anovulation, particularly with increasing age.

Adult↗

Positron emission tomographic analysis of dose-dependent MDL 100,907 binding to 5-hydroxytryptamine-2A receptors in the human brain.

Selective 5-hydroxytryptamine-2A (5-HT2A) antagonism has been proposed as a mechanism of atypical antipsychotic drug action. MDL 100,907, a new selective 5-HT2A receptor antagonist, has high affinity in vitro for 5-HT2A receptors and is being developed as a potential antipsychotic drug. In this study, neocortical 5-HT2A receptor occupancy was measured in six healthy male volunteers after placebo and escalating single doses (1-72 mg) of MDL 100,907 using positron emission tomography and the nonspecific radioligand [11C]N-methylspiperone ([11C]NMSP). Receptor occupancy was calculated using a ratio-equilibrium analysis, assuming that maximal radioligand binding inhibition represents 100% 5-HT2A receptor occupancy. Plasma concentrations of MDL 100,907 were measured with high-pressure liquid chromatography. The pharmacokinetic parameters area under the curve and peak plasma concentration increased linearly with dose, with rapid absorption and a 6- to 9-hour elimination half-life. The neocortical binding of [11C]NMSP was inhibited dose-dependently. After administration of 6 mg of MDL 100,907 the inhibition was 70%, corresponding to a 5-HT2A receptor occupancy of 90%. The calculated maximal inhibition was 77%. These observations indicate that MDL 100,907 passes the blood-brain barrier and binds to 5-HT2A receptors in a saturable manner in the living human brain. Repeated doses of MDL 100,907, 10 mg/day or more, should induce a sustained 5-HT2A receptor occupancy in most patients. Thus, MDL 100,907 provides a suitable tool to evaluate the potential of selective 5-HT2A receptor antagonism in the treatment of schizophrenia.

Binding, Competitive↗

Implications of brain imaging for the management of schizophrenia.

Positron emission tomography (PET) can be used to explore relationships between central neuroreceptor occupancy, psychotropic drug blood levels and clinical effects. Treatment with conventional neuroleptics induces high (70-90%) dopamine (D2)-receptor occupancy. The risk of extrapyramidal side effects increases at D2-receptor occupancies above 80%. Standard doses of clozapine induced a low (20-67%) D2-receptor occupancy, but very high (85-90%) 5-hydroxytryptamine (5-HT2A)-receptor occupancy. The novel antipsychotics risperidone and olanzapine induced high occupancy of both D2 and 5-HT2A receptors at suggested standard doses. The occurrence of extrapyramidal side effects in some patients in the higher dose ranges does not support the view that 5-HT2A-receptor occupancy completely prevents the development of extrapyramidal side effects. These results emphasize the need for further exploration of the low dose ranges of risperidone and olanzapine. A preliminary analysis of an ongoing PET study showed that a schizophrenic patient treated with sertindole at 20 mg/day had a D2-receptor occupancy of below 70%. Further studies are needed to show whether sertindole is the first new antipsychotic that induces low occupancy in the clinical dose range, suggesting a mechanism of action distinct from that of classical neuroleptics and analogous to that of clozapine.

Antipsychotic Agents↗