Surviving Deadly Lung Infections: Innate Host Tolerance Mechanisms in the Pulmonary System
Meredith J Crane1, Kayla M Lee1, Ethan S FitzGerald1
1Division of Biology and Medicine, Department of Molecular Microbiology and Immunology, Brown University, Providence, RI, United States.
Abstract:
Much research on infectious diseases focuses on clearing the pathogen through the use of antimicrobial drugs, the immune response, or a combination of both. Rapid clearance of pathogens allows for a quick return to a healthy state and increased survival. Pathogen-targeted approaches to combating infection have inherent limitations, including their pathogen-specific nature, the potential for antimicrobial resistance, and poor vaccine efficacy, among others. Another way to survive an infection is to tolerate the alterations to homeostasis that occur during a disease state through a process called host tolerance or resilience, which is independent from pathogen burden. Alterations in homeostasis during infection are numerous and include tissue damage, increased inflammation, metabolic changes, temperature changes, and changes in respiration. Given its importance and sensitivity, the lung is a good system for understanding host tolerance to infectious disease. Pneumonia is the leading cause of death for children under five worldwide. One reason for this is because when the pulmonary system is altered dramatically it greatly impacts the overall health and survival of a patient. Targeting host pathways involved in maintenance of pulmonary host tolerance during infection could provide an alternative therapeutic avenue that may be broadly applicable across a variety of pathologies. In this review, we will summarize recent findings on tolerance to host lung infection. We will focus on the involvement of innate immune responses in tolerance and how an initial viral lung infection may alter tolerance mechanisms in leukocytic, epithelial, and endothelial compartments to a subsequent bacterial infection. By understanding tolerance mechanisms in the lung we can better address treatment options for deadly pulmonary infections.
Insights
Host tolerance, an alternative to pathogen clearance, helps survival during infections by managing disease-induced changes. Understanding lung tolerance mechanisms, especially after viral infections, offers new therapeutic strategies for deadly pulmonary diseases.
Area of Science:
- Infectious Diseases
- Immunology
- Pulmonary Medicine
Background:
- Traditional infectious disease research prioritizes pathogen clearance via antimicrobials or immune responses.
- Pathogen-targeted strategies face limitations like antimicrobial resistance and vaccine inefficacy.
- Host tolerance, or resilience, offers an alternative survival strategy by managing infection-induced physiological disruptions, independent of pathogen load.
Purpose of the Study:
- To review current understanding of host tolerance in lung infections.
- To explore the role of innate immunity in maintaining pulmonary tolerance.
- To investigate how viral infections impact tolerance mechanisms against subsequent bacterial infections.
Main Methods:
- Literature review focusing on host tolerance mechanisms in infectious lung diseases.
- Analysis of innate immune responses involved in maintaining homeostasis during infection.
- Examination of cross-talk between viral and bacterial infections concerning host tolerance.
Main Results:
- Host tolerance is a critical survival mechanism distinct from pathogen clearance.
- Innate immunity plays a significant role in regulating host tolerance during lung infections.
- Prior viral infections can modulate tolerance pathways, affecting susceptibility to secondary bacterial infections.
Conclusions:
- Understanding host tolerance pathways in the lung provides a novel therapeutic target.
- This approach may offer broad applicability across various pulmonary pathologies.
- Elucidating tolerance mechanisms can lead to improved treatments for severe lung infections, particularly in vulnerable populations.
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