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NCT Number: NCT05570110

Enoxolone in Major Depression - Biomarker-outcome Relationship

Many different forms of depression exist. It is difficult to predict to what treatment a given patient with depression responds. Studies demonstrate that biomarkers can help to distinguish different forms of depression. Simple markers, like aldosterone/cortisol in body fluids, blood pressure and inflammation markers , have been identified as predictors of therapy resistance in depression. Enoxolone is a molecule derived from the licorice plant and has demonstrated an effect on these biomarkers, which may imply an improved response. The current randomized placebo controlled study is assessing whether the presence of markers of therapy resistance can predict a preferential effect of enoxolone vs. placebo on clinical outcome. Secondarily, it is tested whether these markers change differentially in the treatment groups. Finally, the relationship between the change of the markers and clinical change will be assessed.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 1 / Phase 2

Primary location

Clinic for Psychiatry and Psychotherapy

Marburg, Hesse, 35039, Germany

Location status: Recruiting

Location contact

Ulrich Schu, MD

CONTACT

[email protected]

+49 6421 5865200

About this study

The objective of the study is 1. to confirm patient characteristics, which are related to lesser responsivity to antidepressant treatment and 2. to explore the utility of the 11-beta hydroxysteroid-dehydrogenase type 2 (11betaHSD2) and toll-like receptor (TLR)-4 inhibitor enoxolone to reverse these markers of refractoriness and, potentially, improve clinical outcome. A broad spectrum of patients is recruited in order to provide the opportunity to compare those with relevant markers of refractoriness vs. those without.

The identified markers are related to the activity of aldosterone, which appears to affect specific CNS areas, which are involved in mood and autonomic regulation. One area of particular relevance is the pontine nucleus of the solitary tract (NTS). Potential primary triggers for an increased aldosterone release under stressful conditions are related to low blood pressure, electrolyte alterations and a dysfunction of the peripheral mineralocorticoid receptor (MR). The resultant aldosterone release evokes activity at the NTS, which may lead to depression and anxiety.

Enoxolone leads to an activation primarily of the peripheral MR by reducing the activity of the 11betaHSD2, therefore allowing cortisol access to the MR and, as a consequence, suppress the release of renin, angiotensin and aldosterone. In addition, it can increase blood pressure slightly.

  • A set of potentially predictive markers for therapy response of enoxolone vs. placebo will be studied, based on this mechanistic pathway, in detail:

For the primary analysis subjects are grouped into those with higher vs. lower systolic blood pressure values, as determined by the median systolic blood pressure value at baseline.

For the secondary analysis the ratio of urine aldosterone/cortisol, as collected over night will be used as a differentiating parameter. Split at the median defines the groups.

Exploratory parameters for a split are the following:

  • sleep duration
  • heart rate variability
  • salt taste sensitivity and salt preference
  • inflammation markers, in particular C-reactive protein in plasma.
  • Optional: volumes of lateral ventricles, corpus callosum and choroid plexi.
  • Optional: white matter integrity, as measured by diffusion tensor imaging
  • Markers of target engagement:
  • Effect of enoxolone vs. placebo on systolic blood pressure.
  • Effect of enoxolone vs. placebo on urine aldosterone/cortisol concentration.
  • Effect of enoxolone vs. placebo on plasma sodium/potassium concentration ratio.
  • Effect of enoxolone on C-reactive protein and other inflammation markers.
  • The relationship between changes in hormone concentrations and markers of CNS activation of MR, i.e. functional CNS target engagement. These are:
  • Heart rate variability and heart rate
  • Systolic blood pressure at rest and nocturnal blood pressure dip
  • Total sleep time
  • Salt taste preference and sensitivity
  • Inflammatory markers
  • Optional: volumes of lateral ventricles, corpus callosum and choroid plexi.
  • Optional: white matter integrity, as measured by diffusion tensor imaging

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Unipolar Depression
  • in women: Contraceptive means

Exclusion criteria

  • Schizophrenic and delusional disorders
  • Neurological diseases in which central nervous system involvement is known, such as epilepsies, storage diseases; severe mental retardation
  • Internistic diseases of moderate or higher severity, which may make participation in the study risky from a clinical point of view. In particular, multiple systolic blood pressure (measured after at least 5 min supine position) of > 145 mm Hg as well as hypokalemia (< 3.5 mmol/l) and clinically relevant ECG changes
  • Poorly controlled diabetes mellitus (HbA1c > 10)
  • Pregnancy or active desire for pregnancy for the duration of the study
  • Non-consent or inability to consent to the study
  • Treatment with the following substances: spironolactone or eplerenone; systemic glucocorticoids
  • Treatment with ketamine or electroconvulsive therapy in the last 3 months before randomization
  • Acute suicidality
  • Intolerance to licorice preparations or licorice contents.

Treatment and study plan

Enoxolone

Drug

one capsule of active or placebo in the evening

Other names: glycyrrhetinic acid

Primary outcomes

  1. Plasma and urine aldosterone/cortisol ratio

    Time frame: Baseline, as predictor for differentiation of treatment groups clinical response

    ratio of plasma aldosterone/cortisol at awakening; ratio of nocturnal urine aldosterone concentration/urine cortisol concentration

  2. C-reactive protein

    Time frame: Baseline, as predictor for differentiation of treatment groups clinical response and change from baseline (4 weeks)

    C-reactive protein in plasma

  3. Systolic blood pressure

    Time frame: Baseline, as predictor for differentiation of treatment groups clinical response

    Systolic blood pressure at rest at baseline as a predictor for treatment differentiation

  4. Depression rating

    Time frame: change from baseline to week 4, with systolic blood pressure as covariate

    Hamilton depression rating scale (HAMD) - 17 items; higher is worse

Secondary outcomes

  1. Urine aldosterone/cortisol ratio

    Time frame: change from baseline to week 4

    Ratio of nocturnal urine aldosterone concentration/urine cortisol concentration

  2. Plasma ratio of sodium/potassium

    Time frame: change from baseline to week 4

    Ratio of the plasma concentration of sodium/ plasma concentration of potassium

  3. Nocturnal heart rate variability

    Time frame: change from baseline to week 4

    Average nocturnal heart rate variability, expressed as stress level (Garmin, arbitrary unit)

  4. Nocturnal blood pressure dip (difference between pre-sleep and minimal nocturnal blood pressure

    Time frame: change from baseline to week 4

    Minimum of continuously monitored systolic blood pressure (mmHg)

  5. Depression self rating

    Time frame: change from baseline to week 4

    Patient health questionnaire-9 (PHQ-9), higher is worse

  6. Total sleep duration

    Time frame: change from baseline to week 4

    Total sleep duration, as determined by wearable device (Garmin) (minutes)

  7. Salt taste preference and sensitivity

    Time frame: change from baseline to week 4

    salt taste preference, as determined by tasting a 0.9% NaCl solution, 11 item Likert scale (Murck et al., 2018)

  8. Rating for symptoms of normal pressure hydrocephalus

    Time frame: change from baseline to week 4

    Idiopathic normal pressure hydrocephalus grading scale (iNPHGS) (Kubo et al., 2008), higher is worse

Other outcomes

  1. Lateral cerebral ventricular volume

    Time frame: change from baseline to 4 weeks

    Volume of lateral ventricles (sum) (mL), measured by MRI with freesurfer program

  2. Corpus callosum volume

    Time frame: change from baseline to 4 weeks

    Volume of corpus callosum (mL) segments, measured by MRI with freesurfer program

  3. Choroid Plexus Volume

    Time frame: change from baseline to 4 weeks

    Volume of Choroid Plexi (sum) (mL), measured by MRI with freesurfer program

  4. Saliva cortisol ratio

    Time frame: change from baseline to 4 weeks

    Ratio of saliva cortisol concentration

Study contacts

Contact information is provided by the study sponsor or research team.

Ulrich Schu, MD

CONTACT

[email protected]

+49 6421 5865200

Sponsors and collaborators

Lead sponsor

Philipps University Marburg

Other

Collaborators

  • Slovak Academy of Sciences

Registry information

Official study title

Double-blind Randomized Placebo Controlled Study on the Effect of Enoxolone ( 11-beta Hydroxysteroid-dehydrogenase Type 2 Inhibitor) on the RAAS, Autonomic and Imaging Biomarkers and the Outcome of Depression

Important dates

Study start
2022
Primary completion
2026
Study completion
2026
First posted
Oct 6, 2022
Registry last updated
Dec 8, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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