The purpose of this study is to learn how to better detect infection and understand how severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) causes lung disease and is spread. The novel device called PneumoniaCheck is a safe way to collect material from the lung from coughs. Study participants will collect cough specimens over a 24 hour period.
A novel coronavirus, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), was detected in association with cases of severe respiratory illness and pneumonia (COVID-19) in Wuhan City, Hubei Province, China in December 2019. The virus subsequently spread widely throughout China and globally. Addressing this unprecedented global pandemic is requiring all available tools to diagnose infection, manage ill patients, understand disease pathogenesis and virus transmission to guide efforts to decrease transmission and rapidly develop anti-viral drugs and vaccines. The researchers of this study propose to use the PneumoniaCheck™, a device developed collaboratively by investigators at the Georgia Institute of Technology (GA Tech) and the Centers for Disease Control and Prevention (CDC), to help address these issues. This device, non-invasively, captures coughed droplets onto a filter with minimal contamination from upper airway secretions. In preliminary studies in cystic fibrosis, mycobacterium tuberculosis (TB) patients and control patients, the researchers detected bacterial DNA by PCR, inflammatory cytokines and chemokines by multiplex Luminex assays, surfactant by enzyme immunoassay (EIA), and amylase by enzymatic assay. These data show that this device can provide high quality specimens from the lung with minimal risk to the patient and healthcare provider and much lower risk than invasive procedures such as bronchioloalveolar lavage. In addition, with this device, the researchers can acquire specimens from patients who do not have a productive cough (dry cough), a commonly reported symptom for COVID-19, and specimens with minimal upper respiratory contamination unlike a sputum specimen. Thus, this device can provide lung secretion specimens to improve detection of SARS-CoV-2 RNA (lung specimens are better for detecting virus than upper respiratory tract specimens) and detect inflammatory and other biomarkers to explore pathogenesis of disease, identify inflammatory processes that might be amenable to intervention, and identify biomarkers of disease severity for patient management and evaluation of vaccines and anti-viral drugs. The goal of this study is to determine how PneumoniaCheck™ can help diagnose, manage, and understand pathogenesis of disease and transmission risk of COVID-19.
Study Type
INTERVENTIONAL
Allocation
NON_RANDOMIZED
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
69
Participants are asked to do 5 sets of 10 coughs, with at least 15 minutes between sets, into the PneumoniaCheck device.
Emory University Hospital Midtown
Atlanta, Georgia, United States
Emory Children's Center
Atlanta, Georgia, United States
Emory University Hospital
Atlanta, Georgia, United States
Wesley Woods Center
Atlanta, Georgia, United States
Sensitivity of Detecting SARS-CoV-2 RNA
The number of correct identification of participants with SARS-CoV-2 infection (true positives) detected by RNA in cough-generated droplets captured with the PneumoniaCheck.
Time frame: Up to Hour 24
Specificity of Detecting SARS-CoV-2 RNA
The number of correct identification of participants without SARS-CoV-2 infection (true negatives) detected by RNA in cough-generated droplets captured with the PneumoniaCheck.
Time frame: Up to Hour 24
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