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Investigating the Causal Role of preSMA in Levodopa-induced Dyskinesia in Parkinson's Disease

3 augusti 2019 uppdaterad av: Danish Research Centre for Magnetic Resonance

Targeting the Pre-supplementary Motor Area With Repetitive Transcranial Magnetic Stimulation to Alleviate Levodopa-induced Dyskinesia in Parkinson´s Disease

Using a within-subject cross-over design, we will include 20 patients with Parkinson disease (PD) and peak-of-dose dyskinesia.

Patients will be studied after withdrawal from their normal dopaminergic medication.

On two separate days, each patient will receive off-line, effective (high-intensity) or ineffective (low-intensity) 1 Hz repetitive transcranial magnetic stimulation (rTMS) of the presupplementary motor area (preSMA) before functional magnetic resonance (fMRI). Immediately after the patient will perform a Go/No-Go task during fMRI in the the OFF state for 9 minutes. Then the scan is paused and the patient will receive 200 mg fast-acting oral levodopa and undergo whole-brain task-related fMRI at 3 Tesla until peak-of-dose dyskinesia will emerge.

During task-related fMRI, patients has to click on a mouse with their right hand (Right-Go), left hand (Left-Go), or no action (No-Go) in response to arbitrary visual cues.

The patients will also be tested for different aspects of impulsivity using neuropsychological questionnaires and computerized tests.

Studieöversikt

Detaljerad beskrivning

The most common form of levodopa-induced dyskinesias (LID) manifests when levodopa levels are highest and is referred to as peak-of-dose dyskinesia. 50% of patients experience LID after 4-6 years of treatment, reaching a frequency of 40% after 4-6 years. The main risk factors for developing LID are disease duration, levodopa dose and age-at-onset, but none of these factors alone can predict whether and when an individual patient with PD will develop LID. There is converging evidence that exogenously administered levodopa induces non-physiological release and reuptake of dopamine in the striatum. This non-physiological dopaminergic stimulation gives rise to aberrant plasticity in the striatum that causes a sensitization of the cortico-basal ganglia system to levodopa. Dyskinesia often severely affects patients' quality of life requiring advanced treatment.

Adopting a novel pharmacological fMRI (ph-fMRI) approach, our group recently identified a functional signature of LID in the human brain: To bypass any problems due to movement artefacts, fMRI was performed in the time-span between the administration of levodopa and the onset of dyskinesia. Ph-fMRI revealed that a single oral dose of levodopa caused an abnormal cortico-striatal activation and connectivity pattern in pre-SMA and putamen in LID patients relative to PD patients without LID. We predict that 1 Hz rTMS of pre-SMA will attenuate the levo-dopa-induced overactivity in the pre-SMA and putamen and normalise the pre-SMA-putamen connectivity pattern. This may possibly involve an altered interaction with the right inferior frontal gyrus (rIFG).On two separate days, each patient will receive effective (high-intensity) or ineffective (low-intensity) 1 Hz rTMS (i.e. control rTMS session) of the pre-SMA before fMRI (Off-line rTMS).

Pharmacological fMRI (ph-fMRI): Immediately after rTMS the patient will perform a Go/No-Go task during fMRI in the the OFF state for 9 minutes. Then the scan is paused and the patient will receive 200 mg fast-acting oral levodopa and undergo whole-brain task-related fMRI at 3 Tesla until peak-of-dose dyskinesia will emerge. During task-related fMRI, patients press a computer mouse with the right hand (Right-Go), left hand (Left-Go), or no action (No-Go) in response to arbitrary visual cues.

We want to include 20 patients in the final analysis of the study. In a previous comparable study we experienced a drop-out rate around a third. We therefore aim to enrol 30 patients.

Studietyp

Interventionell

Inskrivning (Faktisk)

20

Fas

  • Inte tillämpbar

Kontakter och platser

Det här avsnittet innehåller kontaktuppgifter för dem som genomför studien och information om var denna studie genomförs.

Studieorter

    • Capital Region
      • Hvidovre, Capital Region, Danmark, 2650
        • Danish Research Centre for Magnetic Resonance

Deltagandekriterier

Forskare letar efter personer som passar en viss beskrivning, så kallade behörighetskriterier. Några exempel på dessa kriterier är en persons allmänna hälsotillstånd eller tidigare behandlingar.

Urvalskriterier

Åldrar som är berättigade till studier

18 år och äldre (Vuxen, Äldre vuxen)

Tar emot friska volontärer

Nej

Kön som är behöriga för studier

Allt

Beskrivning

Inclusion Criteria:

  • Clinical diagnosis of Parkinson's Disease (Hoehn & Yahr 1-3)
  • Peak-of-dose levodopa-induced dyskinesia

Exclusion Criteria:

  • Insufficient Danish language skills
  • Neurological disease other than Parkinson's Disease
  • Major psychiatric illness
  • Sedatives or serotonergic medication in their current treatment.
  • Severe tremor
  • Montreal Cognitive Assessment score < 26

Contraindication for transcranial magnetic stimulation:

  • Epilepsy or epilepsy in 1st degree relatives
  • Contraindications for MRI-scanning:
  • Pacemaker
  • Pregnancy
  • Metallic foreign objects inside the body
  • Severe claustrophobia

Studieplan

Det här avsnittet ger detaljer om studieplanen, inklusive hur studien är utformad och vad studien mäter.

Hur är studien utformad?

Designdetaljer

  • Primärt syfte: Grundläggande vetenskap
  • Tilldelning: Randomiserad
  • Interventionsmodell: Crossover tilldelning
  • Maskning: Enda

Vapen och interventioner

Deltagargrupp / Arm
Intervention / Behandling
Experimentell: REAL TMS
30 minutes of repetitive transcranial magnetic stimulation with 100% of the patients' individual resting motor threshold.

Frequency: 1 Hz., Pulse shape: biphasic, Duration: 30 minutes (1800 pulses).

Neuronavigation: MRI-guided and robot-assisted neuronavigation using Localite software and an Axilum robot.

Sham Comparator: SHAM TMS
30 minutes of repetitive transcranial magnetic stimulation with 30% of the patients' individual resting motor threshold.

Frequency: 1 Hz., Pulse shape: biphasic, Duration: 30 minutes (1800 pulses).

Neuronavigation: MRI-guided and robot-assisted neuronavigation using Localite software and an Axilum robot.

Vad mäter studien?

Primära resultatmått

Resultatmått
Åtgärdsbeskrivning
Tidsram
Levodopa-induced change in task-related regional neural activity as indexed by the blood oxygen level dependent (BOLD) signal
Tidsram: Within the first 60 minutes after levodopa intake
A single priming session of REAL rTMS over the preSMA will attenuate the abnormal pharmacodynamic BOLD response (which is an index of regional neural activity) in the cortico-basal ganglia loop after levodopa challenge compared with SHAM rTMS.
Within the first 60 minutes after levodopa intake

Sekundära resultatmått

Resultatmått
Åtgärdsbeskrivning
Tidsram
Onset of LID
Tidsram: Within the first 60 minutes after levodopa intake
A single priming session of REAL rTMS over the SMA will prolong the time to onset of LID compared with SHAM.
Within the first 60 minutes after levodopa intake
Severity of LID
Tidsram: Within the first 60 minutes after levodopa intake
A single priming session of REAL rTMS over the SMA will lower the the severity of LID measured on the Unified Dyskinesia Rating Scale (UDysRS) compared with SHAM.
Within the first 60 minutes after levodopa intake

Samarbetspartners och utredare

Det är här du hittar personer och organisationer som är involverade i denna studie.

Utredare

  • Huvudutredare: Hartwig R Siebner, MD, DMSci, Danish Research Centre for Magnetic Resonance

Studieavstämningsdatum

Dessa datum spårar framstegen för inlämningar av studieposter och sammanfattande resultat till ClinicalTrials.gov. Studieposter och rapporterade resultat granskas av National Library of Medicine (NLM) för att säkerställa att de uppfyller specifika kvalitetskontrollstandarder innan de publiceras på den offentliga webbplatsen.

Studera stora datum

Studiestart (Faktisk)

1 augusti 2017

Primärt slutförande (Faktisk)

16 september 2018

Avslutad studie (Faktisk)

16 september 2018

Studieregistreringsdatum

Först inskickad

1 juni 2017

Först inskickad som uppfyllde QC-kriterierna

24 november 2017

Första postat (Faktisk)

28 november 2017

Uppdateringar av studier

Senaste uppdatering publicerad (Faktisk)

6 augusti 2019

Senaste inskickade uppdateringen som uppfyllde QC-kriterierna

3 augusti 2019

Senast verifierad

1 augusti 2018

Mer information

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