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Stem Cell Study of Genetics and Drug Addiction

14 december 2019 uppdaterad av: National Institute on Drug Abuse (NIDA)

Development of Induced Pluripotent Stem Cells Carrying Monoamine Transporter Polymorphisms

Background:

- Researchers are interested in studying the roles that genes play in drug and alcohol addiction. Genes seem to account for about half of the differences between people who become addicted to drugs and people who do not. This study will collect blood and skin cell samples. These cells will be used to develop stem cells that are useful for studying how genes are related to drug use and dependence.

Objectives:

- To study genetic and cellular differences between people who are addicted to drugs and those who are not.

Eligibility:

  • Individuals between 21 and 65 years of age who do not use drugs.
  • Individuals between 21 and 65 years of age who are in treatment with buprenorphine or methadone.

Design:

  • Participants will be screened with a brief physical exam and medical history.
  • Participants will also answer questions about physical and mental health, quality of life, and history of drug and alcohol use. A urine sample and cheek swab sample will be collected.
  • Participants whose genetic samples match the study requirements will be asked to come back to provide a skin biopsy sample and a second urine sample.

Studieöversikt

Status

Avslutad

Detaljerad beskrivning

Background - The molecular- and cellular-based mechanisms that contribute to the initiation and development of addiction remain to be elucidated. Estimates have suggested that 40-60 percent of the vulnerability to addiction may be attributable to genetic aberrations. Multiple chromosomal regions have been linked to addiction including those containing the dopamine transporter (DAT) and vesicular monoamine transporter (VMAT2) genes. Current efforts to understand how polymorphisms in these monoamine transporters contribute to the molecular mechanisms of addiction are severely hindered by the inability to directly interrogate neural cell types from the patients. There is great potential for patient-specific iPS cell technology to profoundly impact our understanding of human development and disease by providing genetically distinct, functional sources of human cells.

Objective - The objective of the research is to develop a cell-based system whereby neural cells from afflicted individuals can be functionally assayed to interrogate the molecular mechanisms underlying addiction.

Study population Controls (non-drug users) and opioid dependent adults receiving opioid agonist therapy aged 21- 65 will be enrolled.

Design Participants demographic characteristics, psychosocial evaluation, and psychiatric, medical, and drug use histories will be characterized. DNA will be collected via cheek swabs of up to 30 potential participants for determination of dopamine transporter (DAT) and vesicular monoamine transporter (VMAT2) gene polymorphisms. Participants (N=16) with suitable polymorphisms will be asked to under go skin biopsies; 2 individuals for each of two genotypes for each gene (DAT or VMAT), i.e., 8 samples from addicts and 8 samples for control subjects. Collaborators at Case Western Reserve University will use the skin cells to derive and characterize patient-specific, induced pluripotent stem (iPS) cells that carry monoamine transporter polymorphisms for the hDAT1 and hVMAT2 genes. They will differentiate patient-specific iPS cells line into dopaminergic neurons and carry out a detailed and functional characterization of these cells to identify their molecular characteristics.

Outcome measures - Biological specimens from the addiction patients and controls will be used to derive and characterize patient-specific, induced pluripotent stem (iPS) cells that carry monoamine transporter polymorphisms. Patient-specific iPS cells lines will be differentiated into dopaminergic neurons. In follow up studies, we will characterize, compare, and functionally assay these patient-specific, iPS cell-derived dopaminergic neurons from control and addiction patients that carry polymorphisms for hDAT1 and hVMAT2 gene to investigate any possible association with dopamine neurotransmission variations and vulnerability to addiction.

Studietyp

Observationell

Inskrivning (Faktisk)

49

Kontakter och platser

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

Studieorter

    • Maryland
      • Baltimore, Maryland, Förenta staterna, 21224
        • National Institute on Drug Abuse

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

21 år till 65 år (Vuxen, Äldre vuxen)

Tar emot friska volontärer

Ja

Kön som är behöriga för studier

Allt

Beskrivning

  • INCLUSION CRITERIA:

    1. 21 to 65 years old

      Opioid dependent participant group only:

    2. enrollment in a substance abuse treatment protocol in Archway.

      Non-drug users

    3. no lifetime history of drug dependence as indicated by the screening ASI and Substance Abuse/Dependence Evaluation counselor interview.

EXCLUSION CRITERIA:

  1. Relevant neurological disorders (including, but not limited to, Parkinson s disease and Huntington s disease).
  2. contraindications to skin biopsy including, but not limited to, bleeding disorders, skin disorders, and immune disorders, that the MAI determines may alter the risk of the biopsy.
  3. cognitive impairment severe enough to preclude informed consent or valid responses on questionnaires.
  4. controls will also be excluded if they test positive for drugs or alcohol during screening or study visits.
  5. unwillingness to allow samples to be kept for future research.

Studieplan

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

Hur är studien utformad?

Designdetaljer

Vad mäter studien?

Primära resultatmått

Resultatmått
Derive and characterize patient-specific, induced pluripotent stem (iPS) cells that carry monoamine transporter polymorphisms and differentiate them into dopaminergic neurons.

Samarbetspartners och utredare

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

Publikationer och användbara länkar

Den som ansvarar för att lägga in information om studien tillhandahåller frivilligt dessa publikationer. Dessa kan handla om allt som har med studien att göra.

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

7 februari 2012

Avslutad studie

30 juli 2014

Studieregistreringsdatum

Först inskickad

15 februari 2012

Först inskickad som uppfyllde QC-kriterierna

15 februari 2012

Första postat (Uppskatta)

16 februari 2012

Uppdateringar av studier

Senaste uppdatering publicerad (Faktisk)

17 december 2019

Senaste inskickade uppdateringen som uppfyllde QC-kriterierna

14 december 2019

Senast verifierad

30 juli 2014

Mer information

Termer relaterade till denna studie

Denna information hämtades direkt från webbplatsen clinicaltrials.gov utan några ändringar. Om du har några önskemål om att ändra, ta bort eller uppdatera dina studieuppgifter, vänligen kontakta register@clinicaltrials.gov. Så snart en ändring har implementerats på clinicaltrials.gov, kommer denna att uppdateras automatiskt även på vår webbplats .

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