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NCT Number: NCT02609932

Effect of IFN-γ on Innate Immune Cells

The investigators hypothesize that neutrophils and monocytes developed under the influence of Interferon- gamma-1b (IFN-γ-1b, Actimmune*) in vivo will display enhanced function across a broad range of activities related in large part to the transcriptional activation effects of this cytokine. The investigators will evaluate the effects of IFN-γ in healthy human subjects in vivo on gene expression, biologic activity markers, and functional activity of myeloid cells in single dose studies and in steady state studies.

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Key information

About this study

Named for their potent ability to interfere and protect against viral infections, interferons (IFNs) have many regulatory effects on the immune system.1 Of the members of the two classes of these compounds, IFN-γ has the most diverse and powerful immune effects. Studies have mostly evaluated IFN-γ interactions with cells of adaptive immunity, including macrophages and lymphocytes. Effects on innate immunity, particularly polymorphonuclear leukocytes or neutrophils and monocytes are less well studied. However, investigations have suggested that IFN-γ may be involved in signal transduction, gene expression, the respiratory burst and neutrophil NADPH oxidase (Nox2) activity, phagocytosis, motility, microbicidal activity, and apoptosis. Not all of these functions are enhanced by IFN-γ; but the clinical use of this cytokine has been driven, in part by these results. For example, the primary motivation for initiating investigation of its beneficial clinical effects in Chronic Granulomatous Disease (CGD) was its effects on Nox2 activity.2 Most data in this area was based on studies using differentiated neutrophils from peripheral blood.1 However, the phenotype of neutrophils developed under the influence of this cytokine, not just changes expressed by exposure of differentiated cells to IFN-γ, is critical to understanding the physiologic effects of IFN-γ and the broad applications for its use in treatment of a range of human diseases. To expand their understanding of the role of IFN-γ in the development and functional integrity of the neutrophil, the investigators have completed a series of studies with PLB-985 cells in an in vitro culture system of myeloid cells. In this proposal, the investigators will evaluate innate immune activation and phagocyte function in healthy adult volunteers who are receiving IFN-γ.

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

  • Healthy adults over the age of 18 years up to 60 years.
  • At time of screening subject is well and healthy;
  • Acute infections resolved;
  • Subject off treatment medications;
  • No diagnosis of chronic conditions or active health care issues for which the subject is actively followed by a health care provider or is on chronic medications.
  • Non-prescription medications for mild inter-current illnesses will be allowed at the discretion of the principal investigator.

Exclusion criteria

  • Pregnancy.
  • History of current infection;
  • Two weeks from most recent intercurrent infection;
  • History of recurrent infections or immunodeficiency.

Treatment and study plan

Administration of drug (Interferon-gamma 1-b) subcutaneously

Drug

SD = group who has received a single dose of IFN-gamma (10, 25, 50, and 100 mcg/m2) given once with subsequent analysis of effects (serum IL-10, Neuropterin, and IFN levels as well as neutrophil Nox2 activity and gene expression by Affimetrics Chip analysis). One month is allowed between doses. SS = administration of four doses (50 mcg/m2) of IFN-gamma given on Monday, Wednesday Friday schedule with neutrophil or monocyte function studies performed before the first and after the fourth dose to determine steady state effects.

Other names: Actimmune

Primary outcomes

  1. Change in Neutrophil Nox2 activity.

    Time frame: Determine the change in Nox2 activity at baseline compared to results for 8,24,48,72,96 hours after each IFN dose for the SD cohort.

    Nox2 activity will be measured by DHR oxidation or Sod inhibitable cytochrome c reduction.

  2. Change in Plasma IL-10 and Neuropterin concentration.

    Time frame: Determine the change in IL-10 and neuropterin concentration at baseline compared to 4, 8, 12, 24, 36, 48, 72, and 96 hours after each IFN dose, SD cohort.

    IL-10nd Neuropterin will be measured by ELISA.

  3. Change in Neutrophil Gene Expression Analysis.

    Time frame: Determine the change in gene expression at baseline compared to 4, 8, 12, 24, 36, 48, 72, and 96 hours after each IFN dose, SD cohort.

    RNA will be extracted and gene expression will be determined by Affimetrix Gene Chip assay.

  4. Change in IFN concentration and detection of anti-IFN antibody

    Time frame: Determine the change in IFN level at baseline compared to 4, 8, 12, and 24 hours after administration of each dose of IFN-gamma in the SD cohort. Determine the change in IFN antibody at baseline compared to day 7-10 and day 30 after IFN

    IFN levels and anti-drug antibody will be completed by standard assays.

Secondary outcomes

  1. Change in Neutrophil Function studies.

    Time frame: Determine the change in neutrophil function at baseline compared to results on Day 8 after the 4th dose of IFN.

    Neutrophil chemotaxis, bactericidal activity,ingestion, degranulation, f-Actin expression, CD11b/18 expression, Nox2 activity to a variety of agonists.

  2. Change in Anti-IFN antibody.

    Time frame: Determine the change in IFN antibody at baseline compared to results for 7-10 da. and 30 da. after IFN.

    Anti-drug antibody to be determined by standard assay.

  3. Change in Monocyte function studies.

    Time frame: Determine the change in monocyte function at baseline compared to results on Day 8 after the 4th dose of IFN.

    Monocyte chemotaxis, bactericidal activity,ingestion, Expression of monocyte specific surface determinants, CD11b/18 expression, Nox2 activity to a variety of agonists, cell content of specific proteins, and antibody dependent cellular cytotoxicity.

  4. Change in Neutrophil and Monocyte Gene Expression Analysis.

    Time frame: Determine the change in monocyte function at baseline compared to results on Day 8 after the 4th dose of IFN.

    RNA will be extracted and gene expression will be determined by Affimetrix Gene Chip assay.

Sponsors and collaborators

Lead sponsor

University of Colorado, Denver

Other

Registry information

Official study title

Effect of Interferon-gamma 1-b on Innate Immune Cells

Important dates

Study start
2016
Primary completion
2018
Study completion
2019
First posted
Nov 20, 2015
Registry last updated
Feb 15, 2019

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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