跳至主要内容
临床试验/NCT02661789
NCT02661789已完成不适用

Neuropsychobiological Correlates of Sex-steroid Hormone Manipulation in Healthy Women: a Risk Model for Depression

Gitte Moos Knudsen1 个研究点 分布在 1 个国家目标入组 63 人开始时间: 2011年1月最近更新:
适应症
干预措施
相关药物

试验速览

阶段
不适用
状态
已完成
发起方
入组人数
63
试验地点
1
主要终点
Changes from baseline in fMRI response to gambling paradigm

研究概览

简要总结

The project aimed at identifying neuropsychobiological signatures of pharmacological sex-steroid hormone manipulations in healthy women as a risk model for depression.

The study is a double-blind, randomized, placebo-controlled study. Investigators included 63 healthy female volunteers with regular menstrual cycles between 23 and 35 days. Participants were randomized to active Gonadotrophin-Releasing-Hormone agonist (GnRHa) (goserelin 3.6 mg implant) or placebo (saline injection) intervention, which was initiated in the mid follicular phase (i.e. cycle day 22.6 ±2.5). Sixty women completed follow-up and entered the analyses, except for a few drop outs on some domains. The following domains were addressed at baseline and at follow-up (16±3 days post intervention), (which corresponded to the early ovarian suppression phase of the biphasic hormone response to GnRHa): 1) serotonin transporter binding as imaged by 11CDASB Positron Emission Tomography (PET), 2) functional Magnetic Resonance Imaging (fMRI) emotional processing, 3) fMRI reward processing, 3) rating state fMRI (rsfMRI), 4) structural MRI, 5) Neuropsychology, 6) Psychophysiology, 7) Hypothalamus-Pituitary-Adrenal cortex (HPA)-axis dynamics, 8) Peripheral markers of immunoactive cell responses, 9) Epigenetic factors.

Psychometrics in terms of self reported mental distress and interview based ratings were monitored across the intervention period to monitor potential symptoms of mental distress and psychopathology. Also ovarian hormone responses, peripheral blood markers, and side effects scores were collected across the intervention period.

详细描述

Aims and hypotheses:

Gender matters in normal brain function as well as in neuropsychiatric disorders. E.g. the vulnerability to mood and anxiety disorders is considerably greater in women. Among other factors, this possibly reflects gender differences in central serotonergic function since dysfunction of serotonergic neurotransmission is critically involved in the pathophysiology of mood and anxiety disorders, schizophrenia, and Alzheimer's disease. In particular, women going through phases in life where sex hormones decline rapidly from high levels or fluctuate, have a higher frequency of severe mood state changes and are more vulnerable to psychiatric disorders, e.g. across the pre to postpartum and menopausal transition. Interestingly, this risk is associated with increased variability of the plasma levels of the sex-hormone estradiol. Therefore, sex-hormone manipulation with a pharmacologically induced biphasic ovarian hormone response serve as a unique opportunity to study how sex-hormone fluctuations provoke mood state changes and increase vulnerability to neuropsychiatric disorders.

In this project investigators aimed at investigating whether sex-hormone manipulation affects: 1. Molecular imaging markers of serotonergic neurotransmission in vivo, 2. Brain structure, architecture and functional connectivity, 3. Stress and inflammatory responses, and 4. Cognitive functions, emotional processing, and information filtering, of importance in the pathophysiology of neuropsychiatric disorders.

Mentally healthy female volunteers were assessed at baseline (i.e cycle day 6.6 ±2.2) and at follow-up (i.e 16.2 ±2.6 days post intervention) in the early ovarian suppression phase af a Gonadotrophin-Releasing-Hormone agonist response in a placebo-controlled, double-blinded design (cohort size aim: N=30x2).

Research in neurobiological correlates of vulnerability related to sex-hormone changes is pivotal to improve the etiological understanding of brain disorders with gender differences in their incidence and/or nature. Such research may contribute to ameliorate fertility treatment, to improve treatment of mood disorders and schizophrenia, and, ideally, shed light on possible preventive strategies in vulnerable phases of women's lives such as the pre- to post-partum and menopausal transition period.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Basic Science
盲法
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

入排标准

年龄范围
18 Years 至 40 Years(Adult)
性别
Female
接受健康志愿者

入选标准

  • Healthy women
  • Regular menstrual cycles (23 -35 days cycle length)
  • No systemic or intrauterine steroid hormone use

排除标准

  • Psychiatric disorder (DSM IV Axis I or WHO ICD-10 diagnostic classification).
  • Prior or present neurological or other severe medical condition including substance abuse.
  • No drug intake suspected to influence results
  • Conditions that may increase risk by participating in the study program including ovarian cysts
  • Pregnancy during the last year
  • Delivery during the last 2 years
  • Presently wishing to obtain pregnancy
  • Breast feeding
  • Not fluent in Danish or severe visual or hearing impairments
  • Earlier or present learning disabilities
  • Claustrophobia (due to MRI scans)
  • Metal implants (excludes MRI)

研究组 & 干预措施

GnRHa

Active Comparator

Goserelin 3.6 mg implant

干预措施: Goserelin 3.6 mg implant (Drug)

Placebo

Placebo Comparator

Injection of saline

干预措施: Placebo (Drug)

结局指标

主要结局

Changes from baseline in fMRI response to gambling paradigm

时间窗: Baseline to follow-up 16±3 days after intervention

fMRI response changes to reward (monetary win) paradigm in reward processing network

Changes in epigenetic markers of estrogen sensitivity

时间窗: Baseline to follow-up 16±3 days after intervention

Epigenetic (methylation) markers

Changes from baseline in symptoms of depression

时间窗: Baseline to follow-up 16±3 days after intervention

Hamilton 17 item score

Changes from baseline in serotonin transporter binding in volumes of interest (VOIs)

时间窗: Baseline to follow-up 16±3 days after intervention

PET scan assessed serotonin transporter binding changes

Changes from baseline in fMRI response to emotional faces

时间窗: Baseline to follow-up 16±3 days after intervention

fMRI response changes to emotional faces in emotion processing network including amygdala reactivity

Changes from baseline in rsfMRI changes in functional connectivity

时间窗: Baseline to follow-up 16±3 days after intervention

rsfMRI changes in functional connectivity in response to intervention

Changes from baseline in affective cognition (VAMT-24 test)

时间窗: Baseline to follow-up 16±3 days after intervention

Neuropsychological (VAMT-24 test) outcomes on affective cognition

Changes from baseline in reaction time

时间窗: Baseline to follow-up 16±3 days after intervention

Changes in reaction time

Serial mood fluctuations (SD of total mood disturbance (TMD) score of daily POMS across intervention period)

时间窗: Intervention start to follow-up 16±3 days after intervention

Mood fluctuations measured by serial collection of daily POMS

Changes from baseline in hippocampal volume

时间窗: Baseline to follow-up 16±3 days after intervention

Hippocampal volumes from structural MRI

Changes in pre-pulse-inhibition (PPI) from baseline

时间窗: Baseline to follow-up 16±3 days after intervention

Change in amplitude of the startle response to pulse after pre-pulse warning as measured by EMG in the orbicularis oculi muscle (subtraction of averages across a series of 10 repititions at baseline and at follow-up 16±3 days).

Changes in a set of markers of immunoactivity across study period

时间窗: Baseline, intervention time, flare-up phase and follow-up

Cytokines, hsCRP and gene transcript profile markers of

Changes in HPA-axis dynamics (the cortisol awakening response)

时间窗: Baseline to follow-up 16±3 days after intervention

The cortical awakening response

Changes in sensorimotor gating (P50 suppression) from baseline

时间窗: Baseline to follow-up 16±3 days after intervention

Changes in sensorimotor gating (P50 suppression) from baseline

Changes from baseline in hippocampal microstructure

时间窗: Baseline to follow-up 16±3 days after intervention

Hippocampal microstructure from MRI

次要结局

  • Changes from baseline in fMRI responses to emotional memory paradigm(Baseline to follow-up 16±3 days after intervention)
  • Changes from baseline in Cohens perceived stress score(Baseline to follow-up 16±3 days after intervention)
  • Changes in Pittsburg Sleep Quality Inventory (PSQI)(Baseline and 1 time per week until follow-up at 16 ±3 days)
  • Side effects scores (project specific 15 items questionnaire)(7, 12 and 30 days post intervention)
  • Changes in SCL-R (Symptom check-list revised)(Baseline and 1 time per week from intervention to follow up at 16±3 days post intervention)
  • Major Depression Inventory (MDI)(Baseline and 1 time per week from intervention to follow up at 16±3 days post intervention)
  • Changes in profile of mood states (POMS TMD score)(Baseline and 1 time per week from intervention to follow up at 16±3 days post intervention)

研究者

发起方
Gitte Moos Knudsen
申办方类型
Other
责任方
Sponsor Investigator
主要研究者

Gitte Moos Knudsen

Center director of Center for Integrated Molecular Brain Imaging

Rigshospitalet, Denmark

研究点 (1)

Loading locations...

相似试验