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CompletedNCT02067975Updated Jul 30, 2024Results posted

Tryptophan MRI in People With Schizophrenia and Healthy Controls

A Phase 2/3 interventional study of Tryptophan and Placebo in Schizophrenia, sponsored by University of Maryland, Baltimore. Completed at 1 site in United States. Open to participants aged 18 Years to 55 Years, including healthy volunteers. Per ClinicalTrials.gov, last updated 2024-07-30.

Sponsored by University of Maryland, Baltimore · Phase 2/3, Interventional, and Treatment

Phase
Phase 2/3
Study type
Interventional
Enrollment
93
Allocation
Randomized
Ages
18 Years to 55 Years
Sex
All
01

Study summary

Kynurenic acid (KYNA) is a naturally occurring chemical in the brain. Studies with rodents indicate that levels of KYNA can impact levels of the neurotransmitters glutamate and dopamine. One way to reliably increase KYNA levels is by ingesting the amino acid tryptophan. Tryptophan is a normal part of the human diet. Tryptophan gets metabolized/changed to other chemicals in the body- including KYNA. By giving people 6 grams of tryptophan, the investigators will be able to increase the KYNA level in a controlled way. The investigators will then be able to study the effects of KYNA on neurotransmitters by using cognitive tests and magnetic resonance imaging techniques (measuring brain activity and brain chemistry using the MRI magnet). They will test people using tryptophan and also using a placebo to look for differences. The investigators will test healthy controls and people with schizophrenia to look for differences.

Read the detailed description

There is emerging evidence to suggest that disturbances in the kynurenine pathway may be related to the pathophysiology of schizophrenia. Several post-mortem studies have documented specific abnormalities in the kynurenine pathway, including increased levels of kynurenine and kynurenic acid (KYNA) in the prefrontal cortex of people with schizophrenia (1-4). Increased levels of kynurenine and KYNA have also been observed in the cerebral spinal fluid (CSF) of people with this illness (5). In addition, post-mortem studies have documented changes in key enzymes, including increased expression of tryptophan 2,3-dioxygenase (2, 6) (TDO), which converts tryptophan to kynurenine, and reduced activity of kynurenine 3-monooxygenase (KMO) (4), which may shift metabolism towards enhanced KYNA formation. Finally, a number of genetic studies have implicated the KYNA pathway in this disease. Wonodi et al. (7) found decreased KMO gene expression in the frontal eye field of people with schizophrenia, and Holtze et al. (8) recently reported an association between a KMO SNP and CSF levels of KYNA. Notably, although the exact mechanism underlying the KP impairment in people with schizophrenia is unknown, immune and stress mechanisms have been implicated (7,9).

Increased KYNA may have a number of adverse consequences of importance in schizophrenia. In particular, KYNA is an antagonist of the α7 nicotinic and NMDA glutamate receptors. Dysfunctions of these receptors have been linked to the cognitive impairments and symptom manifestations observed in people with schizophrenia. The purpose of the proposed project is to examine the impact of increased brain KYNA on performance of cognitive tasks and related neuroimaging measures in people with DSM-5/DSM-IV-TR schizophrenia, schizophreniform, or schizoaffective disorder patients and healthy controls. In addition, the investigators will secondarily investigate the relationship of peripheral inflammatory markers and glucocorticoid levels as part of the HPA stress axis to examine relationships and shift to a Type 2 immune response in schizophrenia. Using tryptophan loading to increase KYNA levels, the study will test the hypothesis, based on complementary preliminary studies in rodents, that disease-related cognitive deficits in people with schizophrenia are preferentially susceptible to (further) elevations in KYNA levels.

The investigators hypothesize that tryptophan-induced elevations in brain KYNA levels will: 1) acutely impair performance on measures of verbal and visual memory, attention, working memory, and processing speed in people with schizophrenia; 2) alter dorsolateral-hippocampal activation and connectivity, which underlies the performance of the relational memory task; and 3) decrease mPFC MRS measures of glutamate, consistent with preclinical microdialysis data. In an exploratory framework, the investigators hypothesize that increased brain KYNA levels alter default network activation and connectivity, an effect which may be mediated by the action of KYNA on α7 nicotinic and/or NMDA receptors. The investigators will also investigate the extent to which cytokine and HPA axis peripheral measures are related to the effect of tryptophan-induced elevated KYNA levels on cognitive performance and fMRI and MRS measures. Comparisons with results from healthy controls will determine if participants with schizophrenia have an aberrant or exaggerated response to increased KYNA levels.

Funding Information:

Funded by the National Institute of Mental Health (NIMH)

Grant Number- 1P50MH103222-01

Principal Investigator- Robert Schwarcz, PhD

Project Title- Kynurenic Acid and Cognitive Abnormalities in Schizophrenia

Program Officer Full Name- Steven Zalcamn

External Org# Name- University of Maryland, Baltimore

02

Conditions studied

  • Schizophrenia

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Keywords

  • tryptophan
  • kynurenic acid
  • schizophrenia
03

In context

Schizophrenia

3,470 studies on the registry are indexed under Schizophrenia; 471 are open to participants now.

This study's enrollment of 93 is above the median of 70 across 2,871 interventional studies indexed under Schizophrenia.

Browse Schizophrenia studies →

Lead sponsor

University of Maryland, Baltimore is the lead sponsor of 687 studies on the registry; 130 are open to participants now.

Of its 90 completed or terminated interventional studies of FDA-regulated products, 63 (70%) have results posted.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
18 Years to 55 Years
Sexes eligible
All
Accepts healthy volunteers
Yes

Eligibility criteria

Inclusion Criteria (Schizophrenia:

  • Males and females between the ages of 18 and 55 years
  • Has met DSM-IV-TR/DSM-5 Criteria for schizophrenia, schizoaffective disorder or schizophreniform disorder
  • Prescription of antipsychotic medication for at least 60 days and constant dose for 30 days prior to study entry (either first or second generation antipsychotics permitted)
  • Women must be in the first half of their menstrual cycle at the time of the 2 challenge visits

Inclusion Criteria (Healthy Controls):

  • Males and females between the ages of 18 and 55 years
  • No DSM-IV-TR/DSM-5 Axis I Disorder (documented by SCID)
  • Women must be in the first half of their menstrual cycle at the time of the 2 challenge visits

Exclusion Criteria:

  • DSM-IV-TR/DSM-5 substance abuse in the last month or substance dependence in the last 6 months (documented by SCID)
  • Calgary Depression Scale total score ≥ 10 at baseline
  • Current smoker (expired CO ≥ 10 ppm)
  • Current use of nicotine replacement therapy or other nicotine products
  • Pregnancy or breast feeding
  • Post-menopausal women will not be included due to changes in the HPA axis expression and hormonal effects on cognition. In women over the age of 45, menopausal status will be evaluated clinically
  • Excessive self-reported daily caffeine intake, defined as intake exceeding 1000 mg or the equivalent of 8 cups of coffee
  • Active disorders that have been reported to affect tryptophan metabolism or interfere with absorption will be excluded (Acute Intermittent Porphyria, Celiac Disease, Crohn's Disease, Irritable Bowel Syndrome
  • History of an organic brain disorder; mental retardation; or a medical condition, whose pathology or treatment could alter cognition
  • Claustrophobia
  • Metal in body that will interfere with MR imaging
  • Treatment with monoamine oxidase inhibitors, migraine headache medications (triptans) and dextromethorphan
05

Study design

Phase
Phase 2 / Phase 3
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Crossover assignment
Masking
Triple (Participant, Care provider, Investigator)
Enrollment
93 participants (actual)

Study arms

  • Other
    Healthy Controls

    All participants will receive both 6gm of tryptophan at least two weeks apart at time zero of 7 hour visits 2 and 3, and will also receive Placebo will be a liquid drink without tryptophan. 6mg at least two weeks apart at time zero of the 7 hour visits 2 and 3. The order in which participants receive either placebo or tryptophan will be randomized (ie. placebo first study visit day tryptophan on second study day, or tryptophan on first study day and placebo on second study day)

    Drug: Tryptophan · Drug: Placebo

  • Other
    Schizophrenia Related Disorders

    All participants will receive both 6gm of tryptophan at least two weeks apart at time zero of 7 hour visits 2 and 3, and will also receive Placebo will be a liquid drink without tryptophan. 6mg at least two weeks apart at time zero of the 7 hour visits 2 and 3. The order in which participants receive either placebo or tryptophan will be randomized (ie. placebo first study visit day tryptophan on second study day, or tryptophan on first study day and placebo on second study day)

    Drug: Tryptophan · Drug: Placebo

Interventions

  • DrugTryptophan
  • DrugPlacebo
06

What researchers measure

Primary outcomes

  1. Change in Verbal Memory Scores From Baseline to 4 Hours Post-Treatment

    The following assessment was used to assess the outcome measure: the Hopkins Verbal Learning Test-Revised (HVLT-R). HVLT total scores range from 0 to 36. In order to conduct group comparisons, the HVLT raw total scores are converted to a t-score (range: -10 to 80). The mean t-scores for each condition are below (see outcome measure data table). Higher scores represent better performance. Participants performed the same task before pre- and post-treatment with Tryptophan and again with placebo (2 weeks between conditions). Change in scores pre- and post-treatment were compared between the Tryptophan and placebo conditions.

    Time frame: The order in which participants received either the tryptophan or placebo was randomized. The HVLT was administered 90 minutes prior to treatment and 4 hours post treatment. There were at least two weeks between the challenge days.

07

Results

Posted Aug 26, 2021

Participant flow

Participant flow — Overall Study
MilestoneSchizophrenia Related Disorders: Tryptophan First, Then PlaceboHealthy Control: Tryptophan First, Then PlaceboSchizophrenia Related Disorders: Placebo First, Then TryptophanHealthy Control: Placebo First, Then TryptophanSchizophrenia Related Disorders: Screening Only/Not RandomizedHealthy Control: Screening Only/Not Randomized
Started2018211888
Completed1616191400
Not completed422488

Outcome measures

PrimaryChange in Verbal Memory Scores From Baseline to 4 Hours Post-Treatment

The following assessment was used to assess the outcome measure: the Hopkins Verbal Learning Test-Revised (HVLT-R). HVLT total scores range from 0 to 36. In order to conduct group comparisons, the HVLT raw total scores are converted to a t-score (range: -10 to 80). The mean t-scores for each condition are below (see outcome measure data table). Higher scores represent better performance. Participants performed the same task before pre- and post-treatment with Tryptophan and again with placebo (2 weeks between conditions). Change in scores pre- and post-treatment were compared between the Tryptophan and placebo conditions.

Time frame:
The order in which participants received either the tryptophan or placebo was randomized. The HVLT was administered 90 minutes prior to treatment and 4 hours post treatment. There were at least two weeks between the challenge days.
Reported as:
Mean · score on a scale
Change in Verbal Memory Scores From Baseline to 4 Hours Post-Treatment
score on a scaleHealthy Controls: PlaceboSchizophrenia Related Disorders: PlaceboHealthy Controls: TryptophanSchizophrenia Related Disorders: Tryptophan
Change in Verbal Memory Scores From Baseline to 4 Hours Post-Treatment53.90 ± 8.0140.49 ± 11.2753.03 ± 9.5338.49 ± 10.77

Adverse events

Collected over A minimum of 5 weeks (there are a minimum of 2 weeks between visits and there are 3 visits). Non-serious events are listed at a 0% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Healthy Control: Tryptophan0/36 (0%)0/36 (0%)13/36 (36.1%)
Schizophrenia Related Disorders: Tryptophan0/41 (0%)0/41 (0%)6/41 (14.6%)
Healthy Controls: Placebo0/36 (0%)0/36 (0%)0/36 (0%)
Schizophrenia Related Disorders: Placebo0/41 (0%)0/41 (0%)3/41 (7.3%)
Healthy Controls: Screening0/8 (0%)0/8 (0%)1/8 (12.5%)
Schizophrenia Related Disorders: Screening0/8 (0%)0/8 (0%)0/8 (0%)
Most frequent other events
Showing 10 of 11
Most frequent other events
EventHealthy Control: TryptophanSchizophrenia Related Disorders: TryptophanHealthy Controls: PlaceboSchizophrenia Related Disorders: PlaceboHealthy Controls: ScreeningSchizophrenia Related Disorders: Screening
NauseaGeneral disorders7/363/410/361/411/80/8
HypotensionGeneral disorders0/360/41—1/411/80/8
VomitingGeneral disorders4/361/41—0/410/80/8
SedationGeneral disorders2/360/41—0/410/80/8
DizzinessGeneral disorders2/361/41—2/410/80/8
HeadacheGeneral disorders1/362/41—0/410/80/8
SyncopeGeneral disorders1/360/41—1/410/80/8
DrowsniessGeneral disorders1/360/41—0/410/80/8
Abdominal PainGeneral disorders1/360/41—0/410/80/8
SolemnenceGeneral disorders0/361/41—0/410/80/8

Baseline characteristics

Age, Categorical
Age, Categorical(Participants)Healthy ControlsSchizophrenia Related DisordersTotal
<=18 years000
Between 18 and 65 years444993
>=65 years000
Age, Continuous
Age, Continuous(years)Healthy ControlsSchizophrenia Related DisordersTotal
Mean34.75 ± 11.7035.97959184 ± 9.84777850635.39784946 ± 10.72293335
Sex: Female, Male
Sex: Female, Male(Participants)Healthy ControlsSchizophrenia Related DisordersTotal
Female241640
Male203353
Race (NIH/OMB)
Race (NIH/OMB)(Participants)Healthy ControlsSchizophrenia Related DisordersTotal
American Indian or Alaska Native000
Asian224
Native Hawaiian or Other Pacific Islander000
Black or African American182644
White192140
More than one race505
Unknown or Not Reported000
Region of Enrollment
Region of Enrollment(participants)Healthy ControlsSchizophrenia Related DisordersTotal
United States444993
08

Study locations

1 site
  • Maryland Psychiatric Research Center
    Catonsville, Maryland 21228, United States
09

References and documents

Study documents

  • Protocol and statistical analysis plan · Mar 28, 2016

Documents are hosted by the registry — open the source record to download them.

10

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Jul 30, 2024, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
11

Registry details

Key details

Study ID
NCT02067975
Lead sponsor
University of Maryland, Baltimore
Collaborators
Mitsubishi Tanabe Pharma Corporation, National Institute of Mental Health (NIMH)
Responsible party
Robert Buchanan (Director, University of Maryland, Baltimore) — Principal investigator
First posted
Feb 20, 2014
Start date
Aug 14, 2014
Primary completion
Dec 31, 2019
Completion
Dec 31, 2019
Results posted
Aug 26, 2021
Last update
Jul 30, 2024

Study contacts

Robert W Buchanan, M.D.
principal investigator · University of Maryland, Baltimore

Oversight

Data monitoring committee
Yes
View the source record on ClinicalTrials.gov ↗

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