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Updated: Aug 16, 2026

Epithelial Cell Infection Analyses with Shigella
Published on: February 9, 2024
Roles for T and NK cells in the innate immune response to Shigella flexneri
Karine Le-Barillec1, Joao Gamelas Magalhaes, Erwan Corcuff
1Unité des Cytokines et Développement Lymphoide, Institut National de la Santé et de la Recherche Médicale, Unité 668, Paris cedex, France.
Abstract:
Shigella flexneri, an enteroinvasive Gram-negative bacterium, is responsible for the worldwide endemic form of bacillary dysentery. The host response to primary infection is characterized by the induction of an acute inflammation, which is accompanied by polymorphonuclear cell (PMN) infiltration, resulting in massive destruction of the colonic mucosa. However, PMN play a major role in the recovery from primary infection, by restricting the bacterial infection at the intestinal mucosa. In this study, we assessed the roles for T and NK cells in the control of primary S. flexneri infection, using an alymphoid mouse strain (Rag null gamma(c) null) devoid of B, T, and NK cells. Using the mouse pulmonary model of Shigella infection, we showed that alymphoid Rag null gamma(c) null mice were highly susceptible to S. flexneri infection in comparison with wild-type (wt) mice. Whereas PMN recruitment upon infection was similar, macrophage recruitment and production of proinflammatory cytokines were significantly decreased in Rag null gamma(c) null mice compared with wt mice. Upon selective engraftment of Rag null gamma(c) null mice with polyclonal alphabeta T cells, but not with alphabeta T cells from IFN-gamma null , S. flexneri infection could be subsequently controlled. Rag null mice devoid of B and T cells but harboring NK cells could control infection. Local IFN-gamma production by T and NK cells recruited to the lung was demonstrated in S. flexneri-infected wt mice. These data demonstrate that both alphabeta T cells and NK cells contribute to the early control of S. flexneri infection through amplification of an inflammatory response. This cellular lymphocyte redundancy assures IFN-gamma production, which is central to innate immunity against Shigella infection.
Insights
T cells and NK cells are crucial for controlling Shigella flexneri infection by boosting inflammation and IFN-gamma production. This redundancy in immune response ensures effective innate immunity against the bacterium.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Shigella flexneri causes bacillary dysentery with significant mucosal damage.
- Polymorphonuclear cells (PMNs) are vital for recovery from Shigella infection.
- The roles of T and NK cells in early Shigella infection control were unclear.
Purpose of the Study:
- To investigate the roles of T and NK cells in controlling primary Shigella flexneri infection.
- To elucidate the contribution of these lymphocytes to the host immune response.
Main Methods:
- Used alymphoid (Rag null gamma(c) null) mice lacking B, T, and NK cells.
- Utilized a mouse pulmonary model of Shigella infection.
- Assessed immune cell recruitment, cytokine production, and bacterial control after selective cell engraftment.
Main Results:
- Alymphoid mice were highly susceptible to S. flexneri infection.
- Macrophage recruitment and pro-inflammatory cytokine production were reduced in alymphoid mice.
- Engraftment with T cells or the presence of NK cells restored control of S. flexneri infection.
- IFN-gamma production by T and NK cells was critical for controlling infection.
Conclusions:
- Both alphabeta T cells and NK cells contribute to early S. flexneri infection control.
- These lymphocytes amplify inflammatory responses and ensure IFN-gamma production.
- Lymphocyte redundancy provides robust innate immunity against Shigella.
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