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Not yet recruitingNCT07185464Updated Sep 22, 2025

Efficacy and Safety of Transcranial Alternating Current Stimulation (tACS) in Adolescents With First-episode Depression Who Are Drug-naive: A Randomized, Double-blind, Controlled Pilot Study

An interventional study of tACS and tACS in Depression - Major Depressive Disorder, sponsored by First Affiliated Hospital of Chongqing Medical University. Not yet recruiting at 1 site in China. Open to participants aged 12 Years to 18 Years. Per ClinicalTrials.gov, last updated 2025-09-22.

Sponsored by First Affiliated Hospital of Chongqing Medical University · Not applicable, Interventional, and Treatment

From the registry’s dates

  • Primary completion was expected by Mar 2026, 6 months ago, but the record still lists the study as not yet recruiting.
Phase
Not applicable
Study type
Interventional
Enrollment
30
Allocation
Randomized
Ages
12 Years to 18 Years
Sex
All
01

Study summary

To evaluate the efficacy of tACS treatment.To determine whether tACS can accelerate symptom remission, improve clinical response rates, and facilitate the recovery of emotional and cognitive functions through standardized clinical assessments.To evaluate the safety of tACS treatment.To assess adverse events and side effects in both the intervention and control groups, ensuring the safety and tolerability of tACS in adolescent populations.

Read the detailed description

This randomized, double-blind, sham-controlled pilot trial will evaluate the efficacy and safety of transcranial alternating current stimulation (tACS) combined with sertraline in adolescents with first-episode, drug-naive major depressive disorder (MDD). Eligible participants are aged 12-18 years, meet DSM-5 criteria for a current depressive episode confirmed by K-SADS-PL, have a CDRS-R score ≥40, and have not received antidepressant treatment during the current episode.A total of 30 participants will be randomized 1:1 to receive either active tACS or sham stimulation, in addition to oral sertraline (25 mg/day in the first week, titrated to 50 mg/day thereafter). The active group will undergo 20 sessions over 4 weeks (5 sessions per week) using the NEXALIN ADI device (77.5 Hz, 15 mA, 40 minutes per session). The sham device is identical in appearance but delivers no current. Both participants and operators will remain blinded.Primary outcomes are changes in depressive symptoms, measured by the CDRS-R and BDI. Secondary outcomes include anxiety (SCARED, HAMA), global improvement (CGI-S, CGI-I), mania symptoms (YMRS), suicide risk (C-SSRS), quality of life (PedsQL4.0), sleep (PSQI), rumination (RSS), and cognition (THINC-it). Safety will be monitored through adverse events, vital signs, laboratory tests, and tolerability assessments.This pilot study will provide preliminary evidence on the potential of tACS as an adjunctive treatment for adolescent depression and inform future large-scale trials.

02

Conditions studied

  • Depression - Major Depressive Disorder
03

In context

Lead sponsor

First Affiliated Hospital of Chongqing Medical University is the lead sponsor of 95 studies on the registry; 42 are open to participants now.

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

04

Who can participate

Ages eligible
12 Years to 18 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

1.Age 12-18 years; 2.Subjects met the diagnostic criteria for depression in the Diagnostic and Statistical Manual of Mental Disorders (DSM-5) as determined by the Childhood Affective Disorders and Schizophrenia Questionnaire (K-SADS-PL) and were currently in a depressive episode; 3.Children's Depression Rating Scale-Revised (CDRS-R) score ≥ 40 points; 4.Not receiving any antidepressant medication during the current depressive episode.

Exclusion criteria

Exclusion Criteria:

1.Other comorbid mental disorders in accordance with DSM-5 except anxiety disorders; 2.Depression with psychotic symptoms; 3.Young Mania Rating Scale (YMRS) > 13; 4.History of neurological disease (such as epilepsy, brain trauma, etc.) or serious physical disease (such as thyroid disease, lupus erythematosus, diabetes, lung, liver and kidney damage, major trauma, etc.); 5.Previous treatment with electroconvulsive therapy (ECT), transcranial magnetic stimulation (TMS), transcranial direct current stimulation (tDCS), tACS or other neurostimulation treatments; 6.Patients currently receiving anti-epileptic drugs or high-dose benzodiazepines; 7.History of alcohol or drug abuse or dependence; 8.Breastfeeding women or pregnant women; 9.Contraindications to MRI; 10.Currently at high risk of suicide.

05

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Quadruple (Participant, Care provider, Investigator, Outcomes assessor)
Enrollment
30 participants (estimated)

Study arms

  • Experimental
    tACS

    Participants in this group will receive transcranial alternating current stimulation (tACS) in addition to daily oral sertraline. tACS will be administered using the NEXALIN ADI device (Beijing Neslin Technology Co., Ltd.) with stimulation parameters set at a frequency of 77.5 Hz and a current intensity of 15 mA. One electrode will be placed on the forehead and two electrodes on the mastoid processes. Each session will last approximately 40 minutes, with a total of 20 sessions delivered across 4 consecutive weeks (5 sessions per week). The intervention is designed to modulate abnormal cortical oscillations, thereby alleviating depressive symptoms, enhancing cognitive performance, and supporting emotional regulation.

    Device: tACS

  • Sham comparator
    Sham

    Arm Description: Participants in this group will receive sham stimulation in addition to daily oral sertraline. A sham device, identical in appearance, sound, and operation to the active tACS device, will be used but will not deliver any electrical current. Sessions will follow the same schedule as the active group (20 sessions over 4 weeks, 5 sessions per week). Both participants and operators will remain blinded to treatment allocation to maintain trial integrity.

    Device: tACS

Interventions

  • DevicetACS

    This intervention uses the NEXALIN ADI alternating current stimulation device from Beijing Naisilin Technology Co., Ltd., to deliver targeted stimulation to the prefrontal cortex and bilateral mastoid regions. The prefrontal cortex electrode directly stimulates the cerebral cortex, while the mastoid electrodes ensure the synchronized activation of bilateral neural pathways. Stimulation is applied at a frequency of 77.5 Hz and a current intensity of 15 mA, aiming to optimize brainwave synchronization and modulate brain activity. Participants will undergo daily sessions lasting approximately 40 minutes each, for a total of 20 sessions over 4 weeks. The non-invasive nature of the intervention, combined with its precise targeting of specific brain regions, distinguishes it from other neuromodulation therapies. The treatment aims to enhance neural synchronization, promote neuroplasticity, and provide a non-pharmacological therapeutic alternative for patients.

  • DevicetACS

    In the sham stimulation group, participants will receive intervention using a sham device that is identical in appearance, operation, and stimulation protocol to the real tACS device, but does not deliver any current. Both participants and operators will be unable to distinguish between real and sham stimulation based on the device's appearance, sound, or tactile feedback. Device allocation will follow a randomized code generated in advance to ensure blinding and proper group assignment.

06

What researchers measure

Primary outcomes

  1. Change in CDRS-R (Children's Depression Rating Scale) scores from baseline

    Clinical response (≥ 50% reduction in CDRS-R scores from baseline)

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

Secondary outcomes

  1. Change in BDI-II (Baker Depression Scale) scores from baseline

    Change in BDI-II (Baker Depression Scale) scores from baseline

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

  2. Change in SCARED (The Screen for Child Anxiety-Related Emotional Disorders) scores from baseline

    Improvement in anxiety (SCARED minus the scores)

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

  3. Change in suicide risk from baseline on the C-SSRS (Columbia Suicide Severity Rating Scale)

    The severity of the suicide risk

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

  4. Change in PSQI (Pittsburgh Sleep Quality Index) scores from baseline

    Improvement in sleep status (PSQI minus the scores)

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

  5. Change in PedsQL4.0 (The Pediatric Quality of Life Inventory) scores from baseline

    Improvement of children's quality of life(PedsQL4.0 minus the scores)

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

  6. Change in CGI-S (Clinical Global Impressions-Severity Scales) scores from baseline

    Improvement in overall clinical impression severity ( 7-point scale, with 1 being normal and 7 being among the most severely damaged )

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

  7. Change in CGI-I (Clinical Global Impressions-Improvement Scales) scores from baseline

    Improvement of clinical general Impression scale (7-point scale,7 denoting a very significant deterioration)

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

  8. Change in RSS (Ruminative Responses Scale)

    The level of improvement in negative thinking(the higher the total score, the more reflective thinking the more severe it is).

    Time frame: Baseline of treatment period, 1 month; The follow-up period was 1 month, 3 months.

07

Study locations

1 site
  • The First Affiliated Hospital of Chongqing Medical University
    Chongqing, Chongqing Municipality 40000, China
08

References and documents

Publications

  • Hetrick SE, McKenzie JE, Bailey AP, Sharma V, Moller CI, Badcock PB, Cox GR, Merry SN, Meader N. New generation antidepressants for depression in children and adolescents: a network meta-analysis. Cochrane Database Syst Rev. 2021 May 24;5(5):CD013674. doi: 10.1002/14651858.CD013674.pub2. PubMed 34029378 ↗
  • Clancy KJ, Andrzejewski JA, You Y, Rosenberg JT, Ding M, Li W. Transcranial stimulation of alpha oscillations up-regulates the default mode network. Proc Natl Acad Sci U S A. 2022 Jan 4;119(1):e2110868119. doi: 10.1073/pnas.2110868119. PubMed 34969856 ↗
  • Jones KT, Johnson EL, Gazzaley A, Zanto TP. Structural and functional network mechanisms of rescuing cognitive control in aging. Neuroimage. 2022 Nov 15;262:119547. doi: 10.1016/j.neuroimage.2022.119547. Epub 2022 Aug 5. PubMed 35940423 ↗
  • Yan CG, Chen X, Li L, Castellanos FX, Bai TJ, Bo QJ, Cao J, Chen GM, Chen NX, Chen W, Cheng C, Cheng YQ, Cui XL, Duan J, Fang YR, Gong QY, Guo WB, Hou ZH, Hu L, Kuang L, Li F, Li KM, Li T, Liu YS, Liu ZN, Long YC, Luo QH, Meng HQ, Peng DH, Qiu HT, Qiu J, Shen YD, Shi YS, Wang CY, Wang F, Wang K, Wang L, Wang X, Wang Y, Wu XP, Wu XR, Xie CM, Xie GR, Xie HY, Xie P, Xu XF, Yang H, Yang J, Yao JS, Yao SQ, Yin YY, Yuan YG, Zhang AX, Zhang H, Zhang KR, Zhang L, Zhang ZJ, Zhou RB, Zhou YT, Zhu JJ, Zou CJ, Si TM, Zuo XN, Zhao JP, Zang YF. Reduced default mode network functional connectivity in patients with recurrent major depressive disorder. Proc Natl Acad Sci U S A. 2019 Apr 30;116(18):9078-9083. doi: 10.1073/pnas.1900390116. Epub 2019 Apr 12. PubMed 30979801 ↗
  • Chai Y, Gehrman P, Yu M, Mao T, Deng Y, Rao J, Shi H, Quan P, Xu J, Zhang X, Lei H, Fang Z, Xu S, Boland E, Goldschmied JR, Barilla H, Goel N, Basner M, Thase ME, Sheline YI, Dinges DF, Detre JA, Zhang X, Rao H. Enhanced amygdala-cingulate connectivity associates with better mood in both healthy and depressive individuals after sleep deprivation. Proc Natl Acad Sci U S A. 2023 Jun 27;120(26):e2214505120. doi: 10.1073/pnas.2214505120. Epub 2023 Jun 20. PubMed 37339227 ↗
  • Wang J, Zhao W, Wang H, Leng H, Xue Q, Peng M, Min B, Jin X, Tan L, Gao K, Wang H. Brain-wide activation involved in 15 mA transcranial alternating current stimulation in patients with first-episode major depressive disorder. Gen Psychiatr. 2024 Mar 8;37(2):e101338. doi: 10.1136/gpsych-2023-101338. eCollection 2024. PubMed 38476648 ↗
  • Biackova N, Adamova A, Klirova M. Transcranial alternating current stimulation in affecting cognitive impairment in psychiatric disorders: a review. Eur Arch Psychiatry Clin Neurosci. 2024 Jun;274(4):803-826. doi: 10.1007/s00406-023-01687-7. Epub 2023 Sep 8. PubMed 37682331 ↗
  • Zhou J, Li D, Ye F, Liu R, Feng Y, Feng Z, Li R, Li X, Liu J, Zhang X, Zhou J, Wang G. Effect of add-on transcranial alternating current stimulation (tACS) in major depressive disorder: A randomized controlled trial. Brain Stimul. 2024 Jul-Aug;17(4):760-768. doi: 10.1016/j.brs.2024.06.004. Epub 2024 Jun 14. PubMed 38880208 ↗
  • Elyamany O, Leicht G, Herrmann CS, Mulert C. Transcranial alternating current stimulation (tACS): from basic mechanisms towards first applications in psychiatry. Eur Arch Psychiatry Clin Neurosci. 2021 Feb;271(1):135-156. doi: 10.1007/s00406-020-01209-9. Epub 2020 Nov 19. PubMed 33211157 ↗
  • Bowes L, Joinson C, Wolke D, Lewis G. Peer victimisation during adolescence and its impact on depression in early adulthood: prospective cohort study in the United Kingdom. Br J Sports Med. 2016 Feb;50(3):176-83. doi: 10.1136/bjsports-2015-h2469rep. PubMed 26782765 ↗
  • Consoli A, Peyre H, Speranza M, Hassler C, Falissard B, Touchette E, Cohen D, Moro MR, Revah-Levy A. Suicidal behaviors in depressed adolescents: role of perceived relationships in the family. Child Adolesc Psychiatry Ment Health. 2013 Mar 16;7(1):8. doi: 10.1186/1753-2000-7-8. PubMed 23497551 ↗
  • Hankin BL. Depression from childhood through adolescence: Risk mechanisms across multiple systems and levels of analysis. Curr Opin Psychol. 2015 Aug;4:13-20. doi: 10.1016/j.copsyc.2015.01.003. PubMed 25692174 ↗
  • Barker MM, Beresford B, Bland M, Fraser LK. Prevalence and Incidence of Anxiety and Depression Among Children, Adolescents, and Young Adults With Life-Limiting Conditions: A Systematic Review and Meta-analysis. JAMA Pediatr. 2019 Sep 1;173(9):835-844. doi: 10.1001/jamapediatrics.2019.1712. PubMed 31282938 ↗
  • Beardslee WR, Brent DA, Weersing VR, Clarke GN, Porta G, Hollon SD, Gladstone TR, Gallop R, Lynch FL, Iyengar S, DeBar L, Garber J. Prevention of depression in at-risk adolescents: longer-term effects. JAMA Psychiatry. 2013 Nov;70(11):1161-70. doi: 10.1001/jamapsychiatry.2013.295. PubMed 24005242 ↗
09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Sep 22, 2025, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
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Registry details

Key details

Study ID
NCT07185464
Lead sponsor
First Affiliated Hospital of Chongqing Medical University
Responsible party
Xinyu Zhou (professor, First Affiliated Hospital of Chongqing Medical University) — Principal investigator
First posted
Sep 22, 2025
Start date
Oct 1, 2025 (estimated)
Primary completion
Mar 30, 2026 (estimated)
Completion
Oct 1, 2026 (estimated)
Last update
Sep 22, 2025

Study contacts

Xinyu Zhou
Contact
zhouxinyu@cqmu.edu.cn
15823996993

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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This study is not yet recruiting, as verified in Sep 2025. You cannot join it, but the record below documents what was studied.

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