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Completed

NCT Number: NCT02816138

Depressed Mood Improvement Through Nicotine Dosing (Depressed MIND Study)

Late-life depression is characterized by both affective (mood) symptoms and cognitive deficits. There is currently no intervention that may provide consistent benefits to both mood and cognitive performance. Agonist activity at the nicotinic acetylcholine receptors via transdermal nicotine patches may provide benefit to both mood and cognition, working through nicotine's effects on brain neural networks, specifically the cognitive control network and default mode network.

In this initial pilot project, the investigators will test this hypotheses in 15 nonsmoking depressed elders with subjective cognitive impairment. Following baseline neuroimaging and cognitive testing, participants will receive 12 weeks of open-label transdermal nicotine. Afterwards, participants will repeat neuroimaging and cognitive assessments.

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Key information

Age range

60 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 4

Primary location

Vanderbilt Psychiatric Hospital

Nashville, Tennessee, 37212, United States

About this study

Late-life depression (LLD) is characterized both by affective symptoms and cognitive deficits. The co-occurrence of cognitive deficits in LLD is a clinically relevant phenotype characterized by significant disability and poor antidepressant response. Cognitive deficits can persist even with successful antidepressant treatment and increase the risk of depression relapse. Despite the clinical importance of cognitive deficits in LLD, there are no established treatments that specifically target cognition in this population. The lack of treatments that improve cognitive deficits in depression is a deficiency in current therapeutics.

Modulation of the cholinergic system by nicotinic receptor stimulation may improve both mood and cognition in depressed elders. Clinically, transdermal nicotine improves mood in smokers and a placebo-controlled pilot trial in nonsmoking adults found that transdermal nicotine significantly improved mood. In a previous trial examining Mild Cognitive Impairment, transdermal nicotine safely improved cognitive function on tests of attention, episodic memory, and processing speed. These same cognitive domains are impaired in LLD. The investigators hypothesize that these effects on mood and cognition are mediated through nicotine's effect to increase cognitive control network activity and reduce default mode network (DMN) activity. This pattern of network activity during tasks demanding external attention is associated with better task performance. Furthermore, as seen in smokers, nicotine's effect on these networks reduces depression's bias to negatively valenced stimuli and decreases rumination.

The central hypothesis is that in LLD, transdermal nicotine will safely improve depression by increasing activity in cognitive control regions and decreasing activity in DMN regions. This will result in a decreased attentional bias to and reactivity to negative stimuli. A secondary hypothesis is that transdermal nicotine will also improve subjective and objective cognitive performance through these same network effects.

Primary Aim 1: To determine whether administration of transdermal nicotine over 12 weeks improves clinical symptoms in patients with LLD with subjective cognitive impairment (SCI).

Hypothesis 1: Transdermal nicotine administration will result in reductions in depression severity measured by the Montgomery-Asberg Depression Rating Scale (MADRS; primary mood outcome). It will also result in improvement in broader assessments of depressive symptomatology, including anhedonia, apathy, fatigue, sleep, and rumination (secondary outcomes).

Hypothesis 2: Transdermal nicotine administration will result in improvements in attentional performance on the Conner's Continuous Performance Task (CPT; primary cognitive outcome). It will also result in improvement in subjective and objective cognitive performance on other tasks measuring attention, episodic memory, working memory, processing speed, and executive function (secondary outcomes).

Secondary Aim 2: To determine whether administration of transdermal nicotine over 12 weeks modulates canonical intrinsic functional network activity in LLD with SCI.

Hypothesis 3: On repeat administration of the Posner task of external attention, transdermal nicotine administration will result in increased activity within the cognitive control network and decreased activity within the default mode network.

Hypothesis 4: Transdermal nicotine administration will result in increased functional connectivity within the cognitive control network and decreased connectivity within the default mode network at rest.

Hypothesis 5: Changes in intrinsic network activity / connectivity with transdermal nicotine administration will be associated with changes in mood symptoms and subjective and objective cognitive performance.

Who can participate

Healthy volunteers accepted: No

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

Inclusion criteria

  • Age > 60 years;
  • DSM-5 (Diagnostic and statistical manual-5) diagnosis of major depressive disorder, single or recurrent episode;
  • Subjective cognitive decline, defined as endorsing 20% of items on the Cognitive Complaint Index (CCI);
  • depression severity: MADRS (Montgomery-Asberg Depression Rating Scale) ≥ 15;
  • cognition: MOCA (Montreal Cognitive Assessment) ≥ 24;
  • fluent in English;
  • intact hearing / vision allowing completion of study procedures;
  • for individuals on antidepressants at study entry, they must be on a stable dose for at least 6 weeks.

Exclusion criteria

  • Other Axis I psychiatric disorders, except for anxiety symptoms occurring in a depressive episode;
  • History of alcohol or drug dependence or abuse in the last 3 years;
  • Tobacco or nicotine use in last year;
  • History of a developmental disorder or IQ score < 70;
  • Acute suicidality;
  • Acute grief (<1 month);
  • Current or past psychosis;
  • Primary neurological disorder, including dementia, stroke, brain tumors, etc.;
  • Any MRI contraindication;
  • Unstable medical illness;
  • Allergy or hypersensitivity to nicotine patches;
  • Regular use of drugs with centrally acting cholinergic or anticholinergic properties in last 4 weeks, including acetylcholinesterase inhibitors;
  • Current or planned psychotherapy;
  • Electroconvulsive therapy (ECT) or transcranial magnetic stimulation (TMS) in last two months.

Treatment and study plan

nicotine

Drug

Open-label transdermal nicotine patch

Other names: Nicotrol, Nicoderm CQ

Primary outcomes

  1. Change in Total MADRS (Montgomery Asberg Depression Rating Scale) Score

    Time frame: Baseline to week 12

    Primary mood outcome measured by the total score of the clinician-rated MADRS. MADRS was measured every 3 weeks (baseline, week 3, week 6, week 9, and week 12). MADRS total score range is 0-60, where higher scores indicate greater depression severity.

  2. Change in Continuous Performance Task (CPT) Performance

    Time frame: Baseline to week 12

    Primary cognitive outcome, the CPT is a neuropsychological test that measures attention. In this 14-minute test, participants are asked to respond when any letter appears, except the non-target letter "X". This test is conducted at baseline and at week 12. The specific primary outcome metric is standard error of change in the inter-stimulus hit reaction time, or variability between different trials. There is no absolute range, but lower scores indicate decreased variability across trials and overall better performance.

Secondary outcomes

  1. Change in Snaith-Hamilton Pleasure Scale (SHAPS) Score

    Time frame: Baseline to week 12

    Secondary mood outcome: Change in anhedonia measured by SHAPS, a self-report questionnaire that ranges from 0-42, where higher scores indicate greater anhedonia.

  2. Change in Penn State Worry Questionnaire (PSWQ)

    Time frame: Baseline to week 12

    Secondary mood outcome: Change in anxiety and worry measured by PSWQ, a self-report questionnaire with a range of 16-80, where higher scores indicate greater anxiety and worry.

  3. Change in Ruminative Response Scale Total Score

    Time frame: Baseline to week 12

    Secondary mood outcome: Change in rumination measured by the Ruminative Response Scale total score measured at baseline and week 12. This is a self-report scale with a range of 0-66, where higher scores indicate higher levels of rumination.

  4. Change in Apathy Evaluation Scale (AES)

    Time frame: Baseline to 12 weeks

    Secondary Mood Outcomes: Change in apathy as measured by the self-report AES, a questionnaire with a range of 0-54, where lower scores indicate greater apathy.

  5. Change in MFQ (Memory Frequency Questionnaire) Score

    Time frame: Baseline to week 12

    Secondary cognitive outcome: Change in subjective cognitive performance as measured by MFQ, a self-report scale ranging from 64-448. Higher scores indicate better subjective memory function, while lower scores indicate poorer subjective memory function.

  6. Change in Choice Reaction Time (CRT) Performance

    Time frame: Baseline to week 12

    Secondary cognitive outcome, a neuropsychological test measure of attention. We examined the total response time for the CRT. Lower scores indicate better performance.

  7. Change in One-back Test Performance

    Time frame: Baseline to week 12

    Secondary cognitive outcome examining change in speed of responses ton the one-back test, no absolute range. In this variant of the "N-back" task, participants view a series of cards, and indicate whether the card they are currently viewing is identical to the previously viewed card. Lower scores indicate better performance.

  8. Change in NYU (New York University) Paragraph Recall Performance

    Time frame: Baseline to week 12

    Secondary cognitive outcome of a neuropsychological test examining episodic memory performance using the NYU Paragraph Recall test. No absolute range. Higher scores indicate better performance.

Sponsors and collaborators

Lead sponsor

Vanderbilt University Medical Center

Other

Registry information

Important dates

Study start
2016
Primary completion
2017
Study completion
2017
First posted
Jun 28, 2016
Registry last updated
Sep 27, 2018

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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