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Exploring the Role of Neuroactive Steroids in Tourette Syndrome

Exploring the Role of Neuroactive Steroids in Tourette Syndrome

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05281445
Acronym
NS in TS
Enrollment
120
Registered
2022-03-16
Start date
2022-04-01
Completion date
2024-03-31
Last updated
2022-03-16

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Tourette Syndrome in Children

Brief summary

Tourette syndrome (TS) is a disabling neurodevelopmental disorder characterized by motor and phonic tics. The studies proposed in this application will explore the endocrine mechanisms underlying two of the least well-understood biological characteristics of TS, namely its marked male predominance and stress susceptibility. In particular, our exploratory studies will characterize the steroid profile in TS-affected boys and girls to identify novel potential biomarkers and therapeutic targets for this disorder.

Detailed description

Tourette syndrome (TS) is a disabling neurodevelopmental disorder characterized by motor and phonic tics. Available treatment strategies remain unsatisfactory, due to limited knowledge of the biological foundations of this disorder. The studies proposed in this application will explore the mechanisms underlying two of the least well-understood biological characteristics of TS, namely its marked male predominance and stress susceptibility. Studies from the investigators suggest that these features of TS are contributed by neuroactive steroids, a family of mediators implicated in sex and stress regulation. The typical age of onset of TS is 6-7 years, coinciding with adrenarche, a phase of adrenal maturation characterized by an upsurge in adrenal neuroactive steroids, such as dehydroepiandrosterone (DHEA) and its sulfate (DHEAS). In preliminary studies, the investigators found that DHEA exacerbated tic-like responses in animal models of TS. Interestingly, the dose of DHEA needed to elicit TS-like responses in females is higher than those needed in males, possibly pointing to a mechanism of sex differences in TS. Stress reduces the ability of TS patients to suppress tics, but the underlying mechanisms remain unknown. Studies in animal models indicate that this process may be due to the elevation of the neuroactive steroid allopregnanolone (AP) in the prefrontal cortex. By inhibiting the ability of the prefrontal cortex to suppress tics, AP promotes tic execution. In a pilot study, the investigators found that tic suppression, a well-known stressful task in TS patients, increases AP salivary levels. Furthermore, in another proof-of-concept study, the investigators found that inhibiting AP synthesis led to a reduction in tic severity and facilitated voluntary control of tics in stressful situations. These findings lead to the hypothesis that TS patients exhibit alterations of the composition of their neuroactive steroid profiles, including: 1) an increase in baseline DHEA(S) levels in male TS patients, in correlation with life-time severity; and 2) an exaggerated elevation in AP in response to acute stress. The two Aims of this proposal will test this hypothesis by: 1) comparing the baseline urinary steroidomic profile of TS-affected boys and girls with non-affected sex- and age-matched controls; and 2) charting the dynamic alterations in steroidomic salivary profiles in response to tic suppression. These studies will advance understanding of the endocrine mechanisms in TS and lead to the identification of potential biomarkers for the severity of tics and comorbid symptoms. In the long run, the results of these studies may open the way for the development of new therapies for TS that may reduce tic severity and increase patients' responsiveness to behavioral interventions.

Interventions

BEHAVIORALTic suppression task

Tic Suppression Task (TST, administered to Tourette syndrome participants only): At the beginning of the task, the child participant will be seated alone in front of a computer monitor with a countdown timer visible on the screen. For the first 10 minutes (baseline condition) they will be asked to tic freely and not to try to suppress their tics. For the second 10 minutes children will be asked to suppress their tics and will receive points for successful suppression. Participants will then be asked to sit alone in the room and tic freely for an additional 10-minutes.

Sponsors

University of Miami
CollaboratorOTHER
Albert Einstein College of Medicine
CollaboratorOTHER
University of Utah
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
BASIC_SCIENCE
Masking
NONE

Intervention model description

Tic suppression task

Eligibility

Sex/Gender
ALL
Age
8 Years to 12 Years
Healthy volunteers
Yes

Inclusion criteria

* Diagnostic criteria of TS for cases (and lack of any tic disorders for controls) * Age between 8 and 12 years old (this age range is to ensure that TS participants can perform the tic suppression task) * confirmation of sexual development by parent and/or self-reported Tanner stage of pubic hair development.

Exclusion criteria

* major psychiatric disorders such as a psychotic disorder, autism spectrum disorder, conduct disorder, and substance use disorder; * other neurological disorders; * clinically significant endocrinological disorders; * use of therapies that can modify hormonal profile; * pharmacotherapies that may change stress sensitivity, such as antidepressants and anxiolytics.

Design outcomes

Primary

MeasureTime frameDescription
Salivary allopregnanolone concentrationsThrough study completion, an average of 2 yearsChange of concentrations of salivary allopregnanolone, as measured by chromatography/ mass spectrometry. All concentrations will be expressed in pg/ml.

Secondary

MeasureTime frameDescription
Tic frequencyThrough study completion, an average of 2 yearsDirect observation

Other

MeasureTime frameDescription
Measurement of salivary concentrations of other neuroactive steroidsThrough study completion, an average of 2 yearsChanges in concentrations of pregnenolone, 17-hydroxypregnenolone, dehydroepiandrosterone, dehydroepiandrosterone sulfate, androstenediol, progesterone, androstenedione, testosterone, dihydroprogesterone, dihydrotestosterone, isoallopregnanolone, pregnanolone, epipregnanolone, 3-alpha androstanediol, androsterone, epiandrosterone, etiocholanolone, and cortisol as measured by chromatography/ mass spectrometry. All concentrations will be expressed in pg/ml.

Countries

United States

Contacts

Primary ContactMarco Bortolato, MD PhD
marco.bortolato@utah.edu8015873352
Backup ContactMichael Himle, PhD
michael.himle@utah.edu8015817529

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026