Pulmonary and systemic immune alterations in rats exposed to airborne lunar dust

BackgroundDue to cosmic radiation bombardment and over 4 billion meteorite and micrometeoroid impacts on the airless Moon, the lunar surface is covered by a layer of fine, reactive dust. Very little is known regarding the toxicity of lunar dust on human physiology. This study assessed airborne lunar...

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Main Authors: Brian E. Crucian, Heather Quiriarte, Chiu-wing Lam, Mayra Nelman, Audrie A. Colorado, Douglass M. Diak, John T. James
Format: Article
Language:English
Published: Frontiers Media S.A. 2025-02-01
Series:Frontiers in Immunology
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Online Access:https://www.frontiersin.org/articles/10.3389/fimmu.2025.1538421/full
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author Brian E. Crucian
Heather Quiriarte
Chiu-wing Lam
Mayra Nelman
Audrie A. Colorado
Douglass M. Diak
John T. James
author_facet Brian E. Crucian
Heather Quiriarte
Chiu-wing Lam
Mayra Nelman
Audrie A. Colorado
Douglass M. Diak
John T. James
author_sort Brian E. Crucian
collection DOAJ
description BackgroundDue to cosmic radiation bombardment and over 4 billion meteorite and micrometeoroid impacts on the airless Moon, the lunar surface is covered by a layer of fine, reactive dust. Very little is known regarding the toxicity of lunar dust on human physiology. This study assessed airborne lunar dust exposure in rats on localized pulmonary and systemic immune parameters.MethodsRats were exposed to 0 (air only), 20.8 (low), and 60.6 (high) mg/m3 of respirable-size lunar dust for 4 weeks (6 h/day, 5 days/week). Rats were then euthanized either 1 day, 7 days, 4 weeks, or 13 weeks after the last exposure. Peripheral blood and lung lavage fluid samples were collected for analysis. Assays included leukocyte distribution by multicolor flow cytometry and electron/fluorescent microscopy to visualize cell–particulate interactions and lavage/plasma cytokine concentration. Mitogen-stimulated cytokine production profiles, as a measure of cellular function, were performed on whole blood samples only.ResultsUntreated lavage fluid was comprised primarily of pulmonary macrophages. High-dose lunar dust inhalation (60.6 mg/m3) resulted in an influx of both neutrophils and lymphocytes. Although the percentage of lymphocytes increased, the T-cell CD4:CD8 ratio was unchanged. Cytokine analysis of the lavage fluid showed increased levels of IL-1β and TNFα. These alterations generally persisted through the 13-week sampling. Blood analysis showed few systemic immune alterations from the lunar dust inhalation. By week 4, the peripheral granulocyte percentage was elevated in the treated rats. Plasma cytokine levels were unchanged in all treated rats compared to controls; however, altered mitogen-stimulated cytokine production profiles were observed consisting of increased IL-1β and IL-6 and decreased IL-2. There were minimal adverse immune effects, in both lung or peripheral blood, following low-dose exposure to 20.8 mg/m3 lunar dust.ConclusionExposures to high concentrations of lunar dust resulted in persistent lung inflammation and some systemic immune dysregulation that did not subside even 13 weeks after the dust exposure. This information is beneficial in deriving an exposure limit to airborne lunar dust and for spacecraft engineers considering dust mitigation systems in lunar landers or habitats.
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spelling doaj-art-96ec9780346b4e769bc38dfee363afcc2025-02-06T14:44:15ZengFrontiers Media S.A.Frontiers in Immunology1664-32242025-02-011610.3389/fimmu.2025.15384211538421Pulmonary and systemic immune alterations in rats exposed to airborne lunar dustBrian E. Crucian0Heather Quiriarte1Chiu-wing Lam2Mayra Nelman3Audrie A. Colorado4Douglass M. Diak5John T. James6Environmental Sciences Branch, NASA Johnson Space Center, Houston, TX, United StatesSchool of Kinesiology, Louisiana State University, Baton Rouge, LA, United StatesToxicology Laboratory, KBR, Inc., Houston, TX, United StatesImmunology/Virology Laboratory, KBR, Inc., Houston, TX, United StatesToxicology Laboratory, KBR, Inc., Houston, TX, United StatesImmunology/Virology Laboratory, Aegis Aerospace, Inc., Houston, TX, United StatesEnvironmental Sciences Branch, NASA Johnson Space Center, Houston, TX, United StatesBackgroundDue to cosmic radiation bombardment and over 4 billion meteorite and micrometeoroid impacts on the airless Moon, the lunar surface is covered by a layer of fine, reactive dust. Very little is known regarding the toxicity of lunar dust on human physiology. This study assessed airborne lunar dust exposure in rats on localized pulmonary and systemic immune parameters.MethodsRats were exposed to 0 (air only), 20.8 (low), and 60.6 (high) mg/m3 of respirable-size lunar dust for 4 weeks (6 h/day, 5 days/week). Rats were then euthanized either 1 day, 7 days, 4 weeks, or 13 weeks after the last exposure. Peripheral blood and lung lavage fluid samples were collected for analysis. Assays included leukocyte distribution by multicolor flow cytometry and electron/fluorescent microscopy to visualize cell–particulate interactions and lavage/plasma cytokine concentration. Mitogen-stimulated cytokine production profiles, as a measure of cellular function, were performed on whole blood samples only.ResultsUntreated lavage fluid was comprised primarily of pulmonary macrophages. High-dose lunar dust inhalation (60.6 mg/m3) resulted in an influx of both neutrophils and lymphocytes. Although the percentage of lymphocytes increased, the T-cell CD4:CD8 ratio was unchanged. Cytokine analysis of the lavage fluid showed increased levels of IL-1β and TNFα. These alterations generally persisted through the 13-week sampling. Blood analysis showed few systemic immune alterations from the lunar dust inhalation. By week 4, the peripheral granulocyte percentage was elevated in the treated rats. Plasma cytokine levels were unchanged in all treated rats compared to controls; however, altered mitogen-stimulated cytokine production profiles were observed consisting of increased IL-1β and IL-6 and decreased IL-2. There were minimal adverse immune effects, in both lung or peripheral blood, following low-dose exposure to 20.8 mg/m3 lunar dust.ConclusionExposures to high concentrations of lunar dust resulted in persistent lung inflammation and some systemic immune dysregulation that did not subside even 13 weeks after the dust exposure. This information is beneficial in deriving an exposure limit to airborne lunar dust and for spacecraft engineers considering dust mitigation systems in lunar landers or habitats.https://www.frontiersin.org/articles/10.3389/fimmu.2025.1538421/fulllunar dustspaceflightimmunologygravityinflammation
spellingShingle Brian E. Crucian
Heather Quiriarte
Chiu-wing Lam
Mayra Nelman
Audrie A. Colorado
Douglass M. Diak
John T. James
Pulmonary and systemic immune alterations in rats exposed to airborne lunar dust
Frontiers in Immunology
lunar dust
spaceflight
immunology
gravity
inflammation
title Pulmonary and systemic immune alterations in rats exposed to airborne lunar dust
title_full Pulmonary and systemic immune alterations in rats exposed to airborne lunar dust
title_fullStr Pulmonary and systemic immune alterations in rats exposed to airborne lunar dust
title_full_unstemmed Pulmonary and systemic immune alterations in rats exposed to airborne lunar dust
title_short Pulmonary and systemic immune alterations in rats exposed to airborne lunar dust
title_sort pulmonary and systemic immune alterations in rats exposed to airborne lunar dust
topic lunar dust
spaceflight
immunology
gravity
inflammation
url https://www.frontiersin.org/articles/10.3389/fimmu.2025.1538421/full
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