Arthur G. James Cancer Hospital and Solove Research Institute at Ohio State University Medical Center
Columbus, Ohio, 43210, United States
NCT Number: NCT04427566
Low doses of radiation in the form of chest X-rays have been used to treat people with pneumonia. This treatment was found to be effective by reducing inflammation and with minimal side effects. However, it was an expensive treatment and was eventually replaced with less costly treatments such as antibiotics. Radiation has also been shown in some animal experiments to reduce some types of inflammation.
Some patients diagnosed with COVID-19 pneumonia will experience worsening disease, which can become very serious, requiring the use of a ventilator. This is caused by inflammation in the lung from the virus and the immune system. For this study, the x-ray given is called radiation therapy. Radiation therapy uses high-energy X-ray beams from a large machine to target the lungs and reduce inflammation. Usually, it is given at much higher doses to treat cancers.
The purpose of this study is to find out if adding a single treatment of low-dose x-rays to the lungs might reduce the amount of inflammation in the lungs from a COVID-19 infection, which could help a patient to breathe without use of a ventilator.
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Notify Me18 year and older
All sexes
Interventional
Phase 2
Columbus, Ohio, 43210, United States
The primary outcome is the mortality rate 30 days after the ICU-based mechanical ventilation initiation.Based on current data available, the mortality rate for ventilated patients is assumed to be 80% in the current design. An interim futility analysis will be conducted after 16 evaluable patients have received the ultralow dose-whole lung radiation therapy (ULD-WLRT). If at least 3 patients survive for at least 30 days, we will enroll additional 8 patients (total of 24 patients). Otherwise, the trial will stop for further evaluation. Due to the limited data currently available in local institutions about a 30 day mortality rate , we will retrospectively evaluate the mortality rate of the ventilated patients without the ULD-WLRT in our institution when data is available.
Time to event secondary objectives (e.g. overall survival, time to discharge) analyses will be performed using Kaplan-Meier survival analysis, with a competing risk model (leaving the study because of death), including effects for demographic/clinical characteristics in the model. Proportional endpoints (such as % patients off ventilator) will be calculated along with the 95% Clopper-Pearson exact confidence interval. Pre/post measurements will be evaluated using linear mixed models for repeated measures (with proper data transformation as needed). Association between demographic/clinical characteristics and other secondary objectives (size of ground glass opacities (GGO)/opacification, for example) will be accomplished with generalized linear models.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Patients will be treated with a single dose of 80 cGy to the bilateral lungs in a manner that is simplified such that it can be designed and delivered quickly in one session. No specific normal tissue constraints are employed in this protocol.
Other names: Linear accelerator, x-rays, LINAC
Time frame: up to 1 month post radiation dose
Number of subjects who expire from the date of radiation up to 1 month post radiation dose. The date will be collected if subject expires
Time frame: Until subject discharged for any reason, up to day 47
number of days hospitalized before and after radiation
Time frame: Until subject discharged for any reason, up to day 47
Number of days in ICU after receiving radiation therapy
Time frame: long term follow, up to 277 days
Number of days subject survives Ultra Low Dose-Whole Lung Radiation Therapy, including hospital days and post discharge from hospital until lost to follow-up
Time frame: length of hospital stay, up to day 47
To evaluate total supplemental oxygen therapy
Time frame: length of subject hospitalization, up to day 47
number of days without mechanical ventilation
Time frame: length of hospitalization, up to 47 days
Oxygenation index until extubated, for up to 47 days. Oxygenation Index (OI) in medicine (OI = FiO2 x MAP x100/ PaO2) assesses severe lung injury, with higher numbers meaning worse function. This is expressed as a fraction, with no units and is not a percentage
A normal Oxygenation Index (OI) measures the severity of respiratory failure. The ratio is for a healthy peron is 25 and lower. Oxygenation Index values of 25-40 indicate high mortality,
Definitions: Mean Airway Pressure (MAP); FiO2 (Fraction of Inspired Oxygen) is the concentration or percentage of oxygen a patient breathes; PaO2 (Partial pressure of oxygen) is a measurement from an Arterial Blood Gas (ABG) test that shows the pressure of oxygen dissolved in your arterial blood
Time frame: assessed at day 0, 7, 14, and 28 post radiation
Quantitate post-ULD-WLRT the baseline and Day 7, 14, and 28 CT chest findings ( total number of GGO, lung infiltrates and opacification) and the percentage of each chest finding (GGO, lung infiltrates and opacification) found in a CT scan image.
Time frame: assessed at days 0, 1, 7, 14 and 28 days post radiation
Evaluate SARS-CoV2 viral titers at baseline and post Ultra Low Dose-Whole Lung Radiation Therapy (ULD-WLRT) at Day 0, 1, 7, 14, and 28
Time frame: up to 9 months post radiation
Establish safety and tolerability using number of days of survival
Time frame: assessed at days 0, 1, 7, 14, and 28
Molecular biomarker levels in COVID-19 patients upfront as well as after treatment with Ultra Low Dose-Whole Lung Radiation Therapy (ULD-WLRT) such as levels or inflammatory and DNA damage markers).
Time frame: during hospitalization, on day 1 prior to radiation
Determine baseline molecular biomarkers that predict response to Ultra Low Dose-Whole Lung Radiation Therapy (ULD-WLRT) in COVID-19 patients.
Time frame: during hospitalization, on days 0, 1, 7, 14, and 28
Determine molecular biomarkers that change over the treatment course, correlating with disease status and resolution.
Time frame: day of radiation treatment
Retrospectively evaluate rapidly planned treatment using volumetric treatment plan evaluation based on Cone Beam CT (CBCT)
Time frame: up to 277 days post treatment
comparison of raw diagnostic and CBCT imaging data for machine-learning assessment of longitudinal progression in patients with COVID-19
Time frame: imaging prior to radiation
Collect raw imaging data for further evaluation of the potential for identification of COVID-19 in diagnostic scans
Ohio State University
Other
Vented COVID: A Phase II Study Of The Use Of Ultra Low-Dose Bilateral Whole Lung Radiation Therapy in the Treatment Of Critically Ill Patients With COVID-19 Respiratory Compromise
Acronym: VENTED
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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