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In vitro Coculture Assay to Assess Pathogen Induced Neutrophil Trans-epithelial Migration
Published on: January 6, 2014
Intravacuolar persistence in neutrophils facilitates Listeria monocytogenes spread to co-cultured cells
Stefano Bagatella1,2, Camille Monney1, Natascha Gross1
1Division of Neurological Sciences, NeuroCenter, Vetsuisse Faculty, University of Bern, Bern, Switzerland.
Abstract:
The bacterium Listeria monocytogenes (Lm) causes listeriosis in humans and ruminants. Acute lesions are predominantly infiltrated by polymorphonuclear neutrophils (PMNs), considered to be the efficient bactericidal arm of innate immunity. However, recent evidence suggests that PMNs cannot achieve antilisterial sterilizing immunity and that Lm may persist within PMNs. Despite this, interactions between PMNs and Lm remain poorly understood. In this study, we characterized the listericidal activity and interaction dynamics of bovine PMNs with Lm ex vivo. Phagocytosed Lm failed to escape into the PMN cytosol and was primarily targeted by phagolysosomal mechanisms. However, PMNs enabled prolonged intravacuolar survival of a resilient Lm subpopulation, largely as viable but non-culturable (VBNC) bacteria. This resilient Lm population could spread from PMNs to a cell line, resuscitate, and complete its canonical life cycle, thereby perpetuating the infection. Therefore, we identify PMNs as a mobile niche for Lm survival and provide evidence that PMNs harbor VBNC bacteria, potentially facilitating Lm dissemination within the host.
Importance:
Listeria monocytogenes (Lm) is a significant foodborne pathogen responsible for high hospitalization rates in humans, especially vulnerable groups such as the elderly, pregnant women, and immunocompromised individuals. In animals like ruminants, Lm infection leads to severe disease manifestations, notably brainstem encephalitis. This study uncovers a novel mechanism by which bovine neutrophils (PMNs) harbor Lm in a viable but non-culturable (VBNC) state, enabling the bacteria to hide in the host. PMNs, traditionally viewed as bacteria killers, may serve as Trojan horses, allowing Lm to persist and spread within the host. This discovery has broad implications for understanding Lm's persistence, its role in recurrent infections, and the development of new therapeutic strategies targeting VBNC forms of Lm to improve treatment outcomes and disease control.
Insights
Bovine neutrophils (PMNs) unexpectedly harbor Listeria monocytogenes (Lm) in a viable but non-culturable state, allowing bacterial survival and spread. This finding reveals PMNs as a mobile niche for Lm, impacting infection persistence and control strategies.
Area of Science:
- Bacteriology
- Immunology
- Cell Biology
Background:
- Listeria monocytogenes (Lm) causes listeriosis in humans and ruminants, with polymorphonuclear neutrophils (PMNs) being key immune cells involved.
- While PMNs are known for their bactericidal activity, evidence suggests they may not fully eliminate Lm, and bacteria might persist within them.
- The precise interaction dynamics and survival mechanisms of Lm within PMNs remain poorly understood.
Purpose of the Study:
- To characterize the listericidal activity and interaction dynamics of bovine PMNs with Lm ex vivo.
- To investigate the potential for Lm to survive and persist within PMNs.
- To explore the implications of PMN-mediated Lm survival for infection dissemination and host-pathogen interactions.
Main Methods:
- Ex vivo characterization of bovine PMN and Lm interactions.
- Analysis of Lm fate within PMNs, including phagolysosomal targeting and intracellular survival.
- Assessment of Lm resuscitation and spread from PMNs to other cell types.
Main Results:
- Phagocytosed Lm was primarily targeted by phagolysosomal mechanisms within PMNs.
- A subpopulation of Lm survived within PMNs in a viable but non-culturable (VBNC) state, evading complete elimination.
- These VBNC Lm were capable of spreading from PMNs, resuscitating, and completing their life cycle in other cells, indicating potential for infection perpetuation.
Conclusions:
- Bovine PMNs serve as a mobile niche for Lm survival, harboring VBNC bacteria.
- This mechanism potentially facilitates Lm dissemination within the host, challenging the traditional view of PMNs as solely bactericidal.
- The findings highlight the importance of understanding VBNC bacterial states in host-pathogen dynamics and suggest new targets for controlling Lm infections.
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