Skip to main content
Clinical Trials/NCT00538070
NCT00538070CompletedNot Applicable

The Effects of Glycine Transport Inhibition on Brain Glycine Concentration

Massachusetts General Hospital4 sites in 1 country68 target enrollmentStarted: August 2007Last updated:
Conditions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
68
Locations
4
Primary Endpoint
Increases in brain glycine concentration as measured by magnetic resonance spectroscopy

Study Overview

Brief Summary

The NMDA receptor has been identified as having a role in substance use disorders as well as in schizophrenia. One example of the former is nicotine's effect on dopaminergic activity not only by increasing the release of dopamine in the Midbrain reward centers, but also through less direct mechanisms affecting alpha-7 nicotinic receptors, NMDA receptors, and Glycine, a co-agonist for the NMDA receptors. In terms of schizophrenia, it has been hypothesized that NMDA receptor hypofunction plays a role in the mechanism for negative symptoms and cognitive dysfunction in these patients. The NMDA hypofunction may be reversed with increased synaptic glycine availability.

Sarcosine, or n-methyl-glycine, is a GlyT-1 and System A transport inhibitor actions which could be expected to increase the availability of glycine, in the synaptic space. Sarcosine is a dietary supplement which could be found in several food items such as egg yolks and turkey.

Our collaborative team has developed a novel, non-invasive magnetic resonance spectroscopy (MRS) technique for measuring brain glycine changes that allows us to study glycine homeostasis. The purpose of this study is to explore the effect of sarcosine (n-methyl-glycine) on brain glycine concentrations. It is our hypothesis that oral sarcosine, at a dose of 2 grams per day, will be well tolerated and associated with increased brain glycine concentrations. It is our secondary exploratory hypothesis that increases in brain glycine will be associated with behavioral signs of increased NMDA and dopamine activity. This modulation could have future therapeutic potential for disorders of hedonic and cognitive function.

Detailed Description

Research subjects will undergo a screening visit at the Massachusetts General Hospital Center for Addiction Medicine. If they meet inclusion criteria, they will be invited for the baseline visit when they will have their first MRS and will begin taking the study drug/placebo. The randomization will be done in blocks of four. The study drug/placebo is prescribed to take 2 capsules of 500 mg each, two times per day, with or without food. They will continue weekly visits for six weeks and will receive new supplies of the study drug/placebo on weeks 2 and 4. On week 6, they will have the second MRS. On weeks 8 and 16, subjects will undergo follow up visits. On several of these visits, study staff will assess for the presence of adverse events (with the UKU instrument), cigarettes use (with carbon monoxide monitoring), and abnormal involuntary movements (with the abnormal involuntary movement scale, the barnes akathisia scale, and the sympson angus scale).

Study Design

Study Type
Interventional
Allocation
Randomized
Intervention Model
Single Group
Primary Purpose
Treatment
Masking
Double (Participant, Investigator)

Eligibility Criteria

Ages
18 Years to 65 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Not provided

Exclusion Criteria

  • Not provided

Outcomes

Primary Outcomes

Increases in brain glycine concentration as measured by magnetic resonance spectroscopy

Time Frame: baseline and endpoint

Secondary Outcomes

No secondary outcomes reported

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

A. Eden Evins

Associate Professor of Psychiatry and Director of the MGH Center for Addiction Medicine

Massachusetts General Hospital

Study Sites (4)

Loading locations...

Similar Trials