Publication

Immunomodulatory Low-Dose Whole-Lung Radiation for Patients with Coronavirus Disease 2019-Related Pneumonia

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Last modified
  • 05/14/2025
Type of Material
Authors
    Clayton Hess, Emory UniversityTahseen H. Nasti, Emory UniversityVishal R. Dhere, Emory UniversityTroy J. Kleber, Emory UniversityJeffrey Switchenko, Emory UniversityZachary Buchwald, Emory UniversityWilliam Stokes, Emory UniversityBrent Weinberg, Emory UniversityNadine Rouphael, Emory UniversityJames Steinberg, Emory UniversityKaren Godette, Emory UniversityDavid Murphy, Emory UniversityRafi Ahmed, Emory UniversityWalter Curran Jr, Emory UniversityMohammad Khan, Emory University
Language
  • English
Date
  • 2021-02-18
Publisher
  • Elsevier Science Inc.
Publication Version
Copyright Statement
  • © 2020 Elsevier Inc. All rights reserved.
Final Published Version (URL)
Title of Journal or Parent Work
Volume
  • 109
Issue
  • 4
Start Page
  • 867
End Page
  • 879
Grant/Funding Information
  • None declared
Supplemental Material (URL)
Abstract
  • Purpose: Phase 1 clinical trials have established low-dose, whole-lung radiation therapy (LD-RT) as safe for patients with coronavirus disease 2019 (COVID-19)-related pneumonia. By focally dampening cytokine hyperactivation, LD-RT may improve disease outcomes through immunomodulation. Methods and Materials: Patients with COVID-19-related pneumonia were treated with 1.5 Gy whole-lung LD-RT, followed for 28 days or until hospital discharge, and compared with age- and comorbidity-matched controls meeting identical disease severity criteria. Eligible patients were hospitalized, severe acute respiratory syndrome coronavirus 2 (SARS-Cov-2) positive, had radiographic consolidations, and required supplemental oxygen but had not rapidly declined on admission or before drug therapy or LD-RT. Efficacy endpoints were time to clinical recovery, radiographic improvement, and biomarker response. Results: Ten patients received whole-lung LD-RT between April 24 and May 24, 2020 and were compared with 10 control patients blindly matched by age and comorbidity. Six controls received COVID-19 drug therapies. Median time to clinical recovery was 12 days in the control cohort compared with 3 days in the LD-RT cohort (hazard ratio 2.9, P = .05). Median time to hospital discharge (20 vs 12 days, P =. 19) and intubation rates (40% vs 10%, P =. 12) in the control and LD-RT cohorts were compared. Median time from admission to recovery was 10 versus 13 days (P =. 13). Hospital duration average was 19 versus 22.6 days (P =. 53). Average hospital days on supplemental oxygen of any duration was 13.1 versus 14.7 days (P =. 69). Average days with a documented fever was 1 versus 4.3 days (P =. 12). Twenty-eight–day overall survival was 90% for both cohorts. The LD-RT cohort trended toward superior rates of improved radiographs (P =. 12) and delirium (P < .01). Statistically significant reductions were observed in numerous hematologic, cardiac, hepatic, and inflammatory markers. Conclusions: A prospective cohort of predominantly elderly hospitalized patients with COVID-19-related pneumonia were recovered to room air quicker than age- and comorbidity-matched controls, with trending or significant improvements in delirium, radiographs, and biomarkers, and no significant acute toxicity. Low-dose, whole-lung radiation for patients with COVID-19-related pneumonia appears safe and may be an effective immunomodulatory treatment. Larger prospective randomized trials are needed to define the efficacy of LD-RT for COVID-19.
Author Notes
  • Correspondence: Mohammad K. Khan, MD, PhD
Keywords
Research Categories
  • Biology, Cell
  • Health Sciences, Oncology
  • Health Sciences, Immunology
  • Health Sciences, Radiology
  • Biology, Microbiology
  • Biology, Biostatistics

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