Skip to main content
OpenTrials
Completed

NCT Number: NCT03861390

Woodsmoke Particulate + Prednisone

Deployment of military personnel has been associated with increased respiratory illness likely due, in part, to inhalation of unusual particulate matter (PM), such as from burn pits. Inflammation is a key initial response to inhaled particulates. The researchers have developed a protocol using inhaled wood smoke particles (WSP) as a way to study PM-induced airway inflammation. Exposure to wood smoke particles causes symptoms, even in healthy people, such as eye irritation, cough, shortness of breath, and increased mucous production. The purpose of this research study is to see if an oral steroid treatment can reduce the airway inflammation caused by the inhaled WSP. The exposure will be 500 µg/m³ of WSP for 2 hours, with intermittent exercise on a bicycle and rest. The wood is burned in a typical wood stove and piped into the chamber.

Completed

Looking for future studies?

Notify Me

Key information

Conditions

Age range

18 year–45 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 1 / Phase 2

Primary location

Center for Environmental Medicine, Asthma and Lung Biology at UNC Chapel Hill

Chapel Hill, North Carolina, 27599, United States

About this study

Military deployment is associated with exposure to novel particulate matter (PM), such as from burn pits, aeroallergens, and increased cigarette consumption. War fighters exposed to these inhalational exposures exhibit immediate and chronic respiratory morbidity. For example, military service personnel surveyed in both the Republic of Korea (ROK) and Kabul, Afghanistan reported a general increase in respiratory morbidity, including asthma and chronic bronchitis, associated with their deployment. Air contaminants in the ROK were characterized by elevated levels of both PM 0.5-2.5 and PM 2.5-10. Similarly, exposures in Kabul were characterized by multiple airborne PM exposures, including those from burn pits. Burn pit PM includes metals, bioaerosols, organic by-products, and biomass combustion particles. These findings indicate that inhaled PM is a likely cause of respiratory morbidity in the field.

Inflammation is a key initial response to inhaled particulates. Wood smoke particles (WSP) serve as a model agent to study PM-induced bronchitis. WSP inhalation generates reactive oxidant (and nitrosative) species which cause local injury of airway epithelial cells and release of damage-associated molecular patterns (DAMPs) that activate toll-like receptors (TLR) and Interleukin (IL)-1-mediated innate immune responses by resident airway macrophages. Contamination of PM with bioaerosols, which contain lipopolysaccharide (LPS), also activates innate immune responses through toll-like receptor 4 (TLR4) activation of resident airway macrophages. These complementary processes result in recruitment of neutrophils (PMN), which mediate luminal airway inflammation with release of toxic mediators such as neutrophil elastase and myeloperoxidase that promote acute and chronic bronchitis.

Therefore, mitigation of PM-induced airway neutrophilic inflammation should be a key focus in order to reduce the respiratory morbidity of military personnel. The researchers have studied a number of pro-inflammatory inhaled agents, such as nebulized LPS, ozone (O3), and WSP, as models of acute neutrophilic bronchitis against which to test a number of therapeutic agents. To this effect, the researchers have reported that inhaled fluticasone inhibits O3-induced and LPS-induced neutrophilic inflammation, and that parenteral anakinra and oral gamma-tocopherol inhibit neutrophilic responses to inhaled LPS. In this study, the researchers will evaluate the efficacy of oral prednisone, a readily available anti-inflammatory medication commonly used in airway inflammatory diseases, in mitigating WSP-induced airway inflammation.

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

  • Age 18-45 years, inclusive, of both genders
  • Negative pregnancy test for females who are not s/p hysterectomy with oophorectomy
  • No history of episodic wheezing, chest tightness, or shortness of breath consistent with asthma, or physician-diagnosed asthma.
  • Forced expiratory volume at one second (FEV1) of at least 80% of predicted and FEV1/ forced vital capacity (FVC) ≥0.70.
  • Oxygen saturation of ≥93%
  • Ability to provide an induced sputum sample.
  • Subject must demonstrate a ≥10% increase in sputum %PMNs 6 hours following inhaled WSP exposure, when compared to baseline sputum (to be completed in a separate protocol # 15-1775).
  • Proof of vaccination to COVID-19.

Exclusion criteria

Clinical contraindications:

  • Any chronic medical condition considered by the PI as a contraindication to the exposure study including significant cardiovascular disease, diabetes, chronic renal disease, chronic thyroid disease, history of chronic infections/immunodeficiency.
  • Viral upper respiratory tract infection within 4 weeks of challenge.
  • Any acute infection requiring antibiotics within 4 weeks of exposure or fever of unknown origin within 4 weeks of challenge.
  • Abnormal physical findings at the baseline visit, including but not limited to abnormalities on auscultation, temperature of 37.8° C, Systolic BP > 150mm Hg or < 85 mm Hg; or Diastolic BP > 90 mm Hg or < 50 mm Hg, or pulse oximetry saturation reading less than 93%.
  • Physician diagnosis of asthma
  • If there is a history of allergic rhinitis, subjects must be asymptomatic of allergic rhinitis at the time of study enrollment.
  • Mental illness or history of drug or alcohol abuse that, in the opinion of the investigator, would interfere with the participant's ability to comply with study requirements.
  • Medications which may impact the results of the WSP exposure, interfere with any other medications potentially used in the study (to include steroids, beta antagonists, non-steroidal anti-inflammatory agents)
  • Cigarette smoking > 1 pack per month
  • Unwillingness to use reliable contraception if sexually active (IUD, birth control pills/patch, condoms).
  • Use of immunosuppressive or anticoagulant medications including routine use of NSAIDS. Oral contraceptives are acceptable, as are antidepressants and other medications may be permitted if, in the opinion of the investigator, the medication will not interfere with the study procedures or compromise safety and if the dosage has been stable for 1 month.
  • Orthopedic injuries or impediments that would preclude bicycle or treadmill exercise.
  • Inability to avoid NSAIDS, Multivitamins, Vitamin C or E or herbal supplements.
  • Allergy/sensitivity to study drugs or their formulations
  • Positive COVID-19 test in the past 90 days
  • Pregnant/lactating women and children (< 18 years as this is age of majority in North Carolina) will also be excluded since the risks associated with WSP exposure to the fetus or child, respectively, are unknown and cannot be justified for this non-therapeutic protocol. Individuals over 45 years of age will not be included due to the increased possibility of co-morbidities and need for prohibited medications.
  • Inability or unwillingness of a participant to give written informed consent

Treatment and study plan

60 mg Prednisone

Drug

Immediately following exit from the wood smoke chamber, subjects will receive 60 mg of prednisone per randomization schema

Placebo

Drug

Immediately following exit from the wood smoke chamber, subjects will receive a matching placebo to the 60 mg of prednisone per randomization schema

Primary outcomes

  1. Change From Baseline to 4 Hours in Sputum Percent Neutrophils

    Time frame: Baseline, 4 hours post WSP exposure

    Change in sputum percent neutrophils from baseline to 4 hours post WSP exposure

  2. Change From Baseline to 24 Hours in Sputum Percent Neutrophils

    Time frame: Baseline, 24 hours post WSP exposure

    Change in sputum percent neutrophils from baseline to 24 hours post WSP exposure

Secondary outcomes

  1. Change in Number of Sputum Neutrophils

    Time frame: Baseline, 4 and 24 hours post WSP exposure

    Neutrophil numbers/mg measured at 4 and 24 hours post WSP exposure. Comparisons at 4 and 24 hours are each made with respect to Baseline.

  2. Change in Number of Sputum Eosinophils

    Time frame: Baseline, 4 and 24 hours post WSP exposure

    Eosinophil numbers/mg measured at 4 and 24 hours post WSP exposure. Comparisons at 4 and 24 hours are each made with respect to Baseline.

  3. Change in Percent Sputum Eosinophils

    Time frame: Baseline, 4 and 24 hours post WSP exposure

    Percent eosinophil measured at 4 and 24 hours post WSP exposure. Comparisons at 4 and 24 hours are each made with respect to Baseline.

  4. Change in IL-1b

    Time frame: Baseline, 4 and 24 hours post WSP exposure

    Interleukin beta (IL-1b) via Mesoscale platform (pg/mL) at 4 and 24 hours post WSP exposure. Comparisons at 4 and 24 hours are each made with respect to Baseline.

  5. Change in IL-6

    Time frame: Baseline, 4 and 24 hours post WSP exposure

    Interleukin-6 (IL-6) via Mesoscale platform (pg/mL) at 4 and 24 hours post WSP exposure. Comparisons at 4 and 24 hours are each made with respect to Baseline.

  6. Change in IL-8

    Time frame: Baseline, 4 and 24 hours post WSP exposure

    Interleukin-8 (IL-8) via Mesoscale platform (pg/mL) at 4 and 24 hours post WSP exposure. Comparisons at 4 and 24 hours are each made with respect to Baseline.

  7. Change in TNFa

    Time frame: Baseline, 4 and 24 hours post WSP exposure

    Tumor necrosis factor alpha (TNFa) via Mesoscale platform (pg/mL) at 4 and 24 hours post WSP exposure. Comparisons at 4 and 24 hours are each made with respect to Baseline.

Other outcomes

  1. Mucociliary Clearance (MCC)

    Time frame: 4 hours post WSP exposure

    4 hours post WSP exposure, the MCC is done. A whole lung region of interest (ROI) bordering the right lung is used to estimate (by computer analysis) whole lung retention of inhaled radiolabeled particles. Labeled particle counts are measured over a 2 hour period to determine the fraction of initial particle counts remaining. From this data, the investigators will determine the percentage of labeled particles cleared from the lung during the 2 hour observation period.

Sponsors and collaborators

Lead sponsor

University of North Carolina, Chapel Hill

Other

Collaborators

  • United States Department of Defense

Registry information

Official study title

Phase I/II Randomized, Double-blind, Placebo-controlled Cross-over Study of Prednisone on Airway Inflammatory Response to Inhaled Wood Smoke

Acronym: Smokisone

Important dates

Study start
2019
Primary completion
2023
Study completion
2023
First posted
Mar 4, 2019
Registry last updated
Jun 25, 2024

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.

Published trials that share one or more normalized conditions with this study.