Javascript must be enabled to continue!
Macrophages in microgravity: the impact of space on immune cells
View through CrossRef
AbstractThe effects of a microgravity environment on the myriad types of immune cells present within the human body have been assessed both by bench-scale simulation and suborbital methods, as well as in true spaceflight. Macrophages have garnered increased research interest in this context in recent years. Their functionality in both immune response and tissue remodeling makes them a unique cell to investigate in regards to gravisensitive effects as well as parameters of interest that could impact astronaut health. Here, we review and summarize the literature investigating the effects of microgravity on macrophages and monocytes regarding the microgravity environment simulation/generation methods, cell sources, experiment durations, and parameters of interest utilized within the field. We discuss reported findings on the impacts of microgravity on macrophage/monocyte structure, adhesion and migration, proliferation, genetic expression, cytokine secretion, and reactive oxygen species production, as well as polarization. Based on this body of data, we make recommendations to the field for careful consideration of experimental design to complement existing reports, as the multitude of disparate study methods previously published can make drawing direct comparisons difficult. However, the breadth of different testing methodologies can also lend itself to attempting to identify the most robust and consistent responses to microgravity across various testing conditions.
Springer Science and Business Media LLC
Title: Macrophages in microgravity: the impact of space on immune cells
Description:
AbstractThe effects of a microgravity environment on the myriad types of immune cells present within the human body have been assessed both by bench-scale simulation and suborbital methods, as well as in true spaceflight.
Macrophages have garnered increased research interest in this context in recent years.
Their functionality in both immune response and tissue remodeling makes them a unique cell to investigate in regards to gravisensitive effects as well as parameters of interest that could impact astronaut health.
Here, we review and summarize the literature investigating the effects of microgravity on macrophages and monocytes regarding the microgravity environment simulation/generation methods, cell sources, experiment durations, and parameters of interest utilized within the field.
We discuss reported findings on the impacts of microgravity on macrophage/monocyte structure, adhesion and migration, proliferation, genetic expression, cytokine secretion, and reactive oxygen species production, as well as polarization.
Based on this body of data, we make recommendations to the field for careful consideration of experimental design to complement existing reports, as the multitude of disparate study methods previously published can make drawing direct comparisons difficult.
However, the breadth of different testing methodologies can also lend itself to attempting to identify the most robust and consistent responses to microgravity across various testing conditions.
Related Results
Impact de l'IL-13 dans l'acquisition des fonctions tumoricides des macrophages : rôle des récepteurs lectine de type-C et implication dans la progression d'un lymphome T
Impact de l'IL-13 dans l'acquisition des fonctions tumoricides des macrophages : rôle des récepteurs lectine de type-C et implication dans la progression d'un lymphome T
Les macrophages associés aux tumeurs (TAMs) proviennent des monocytes circulants attirés par l'inflammation chronique due à la tumeur. Ces monocytes vont se différencier en une var...
WWP1 deficiency protects from cardiac remodeling induced by simulated microgravity
WWP1 deficiency protects from cardiac remodeling induced by simulated microgravity
AbstractCardiac muscle is extremely sensitive to changes in loading conditions, the microgravity during space flight can cause cardiac remodeling and function decline. At present, ...
EPD Electronic Pathogen Detection v1
EPD Electronic Pathogen Detection v1
Electronic pathogen detection (EPD) is a non - invasive, rapid, affordable, point- of- care test, for Covid 19 resulting from infection with SARS-CoV-2 virus. EPD scanning techno...
Rôle des facteurs de transcription NOR1 et TLE1 dans les macrophages alternatifs humains
Rôle des facteurs de transcription NOR1 et TLE1 dans les macrophages alternatifs humains
L’athérosclérose est une maladie inflammatoire chronique de la paroi vasculaire à évolution lente et silencieuse dont les principaux facteurs de risque sont les dyslipidémies, l’ob...
Alternative splicing regulates the physiological adaptation of the mouse hind limb postural and phasic muscles to microgravity
Alternative splicing regulates the physiological adaptation of the mouse hind limb postural and phasic muscles to microgravity
Abstract
Muscle atrophy and fiber type alterations are well-characterized physiological adaptations to microgravity with both understood to be pr...
The Effects of Simulated Microgravity on Macrophage Phenotype
The Effects of Simulated Microgravity on Macrophage Phenotype
The effects of spaceflight, including prolonged exposure to microgravity, can have significant effects on the immune system and human health. Altered immune cell function can lead ...
Profiling tumor immune microenvironment of non-small cell lung cancer using multiplex immunofluorescence
Profiling tumor immune microenvironment of non-small cell lung cancer using multiplex immunofluorescence
AbstractPurposeWe attempt to profile the tumor immune microenvironment (TIME) of non-small cell lung cancer (NSCLC) by multiplex immunofluorescence (MIF).Experimental DesignMIF tes...
Modulation of protective immunity in human tuberculosis
Modulation of protective immunity in human tuberculosis
<p dir="ltr">This thesis presents four studies aimed at elucidating immune responses to Mycobacterium tuberculosis (Mtb) infection, with a focus on the associations with clin...

