Mucosal Immunity
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Mucosal Immunity
The largest immune tissue in the body
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Scooped by Gilbert C FAURE
July 30, 4:17 AM
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Constitutive interferon epsilon expression shapes antiviral epithelial states in the female reproductive tract and intestine | mBio | InvivoGen

Constitutive interferon epsilon expression shapes antiviral epithelial states in the female reproductive tract and intestine | mBio | InvivoGen | Mucosal Immunity | Scoop.it
🧬 Constitutive IFN-ε Shapes Baseline Antiviral Readiness Across Mucosal Epithelia
 
How do mucosal surfaces stay protected against viruses before an infection even starts?

A study in mBio (Casazza et al.) explores how Interferon epsilon (IFN-ε) acts as a unique homeostatic guardian, maintaining a persistent antiviral state across epithelial barriers without needing pathogen induction.
 
To map these innate immune pathways and verify cell health, the team relied on specific targeted tools:

• PRR Activation & Baseline Expression: By stimulating cells with Poly(I:C) LMW (TLR3), 2'3'-cGAMP (STING), and LPS-EK (TLR4), authors demonstrated that unlike classic interferons, IFN-ε expression is not induced by PAMP signaling, confirming its unique role as a constitutive, baseline guardian.

• Cytotoxicity & Release Mechanism: Using the LDH-Blue™ Cytotoxicity Assay, membrane integrity was quantified alongside IFN-ε levels, revealing that IFN-ε is retained intracellularly and released as a DAMP upon cellular damage or lysis.
 
IFN-ε provides essential basal protection to mucosal barriers (such as the female reproductive tract and intestine), acting as an intracellular sentinel that alerts surrounding tissue upon cellular injury or turnover.
 
📖 Read the full paper in mBio: https://lnkd.in/ezYErJ3X
 
#Immunology #InnateImmunity #Interferon #MucosalImmunity #PRR #CellSignaling #InvivoGen
Gilbert C FAURE's insight:

 

I, II, III

https://www.scoop.it/topic/mucosal-immunity?q=interferon

gamma, lambda, epsilon...

celui là je ne le connaissais pas!

et bien si, déjà en 2016

https://www.scoop.it/topic/mucosal-immunity?q=epsilon

quelle mémoire immunitaire, l'outil scoop.it!

 

merci Casazza pour l'importance du travail

"Interferon epsilon (IFNε) is a unique type I IFN that, unlike other family members, is not induced by infection but is constitutively expressed in epithelial tissues. In this manuscript, we define the epithelial cell types that constitutively express IFNε in the uterus and small intestine at a single-cell resolution. We show that mice lacking IFNε lose key antiviral defenses in a tissue-dependent manner; uterine epithelial cells have diminished basal ISG expression, and key populations of cytokine-expressing enterocytes are absent from the small intestine. In the intestine, this correlates with increased susceptibility to infection with an enteric virus in mice. These findings establish IFNε as a key contributor to mucosal immunity, sustaining antiviral defenses within tissue-specific epithelial cells of both the female reproductive tract and intestine, and broaden our understanding of its role beyond traditional pathogen-induced interferon responses."

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Suggested by Société Francaise d'Immunologie
December 14, 2016 3:55 AM
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JCI Insight - IFN-ε protects primary macrophages against HIV infection

Gilbert C FAURE's insight:
ifn-epsilon in mucosal tissues
IFN-ε is a unique type I IFN that is not induced by pattern recognition response elements. IFN-ε is constitutively expressed in mucosal tissues, including the female genital mucosa. Although the direct antiviral activity of IFN-ε was thought to be weak compared with IFN-α, IFN-ε controls Chlamydia muridarum and herpes simplex virus 2 in mice, possibly through modulation of immune response. We show here that IFN-ε induces an antiviral state in human macrophages that blocks HIV-1 replication. IFN-ε had little or no protective effect in activated CD4+ T cells or transformed cell lines unless activated CD4+ T cells were infected with replication-competent HIV-1 at a low MOI. The block to HIV infection of macrophages was maximal after 24 hours of treatment and was reversible. IFN-ε acted on early stages of the HIV life cycle, including viral entry, reverse transcription, and nuclear import. The protection did not appear to operate through known type I IFN-induced HIV host restriction factors, such as APOBEC3A and SAMHD1. IFN-ε–stimulated immune mediators and pathways had the signature of type I IFNs but were distinct from IFN-α in macrophages. IFN-ε induced significant phagocytosis and ROS, which contributed to the block to HIV replication. These findings indicate that IFN-ε induces an antiviral state in macrophages that is mediated by different factors than those induced by IFN-α. Understanding the mechanism of IFN-ε–mediated HIV inhibition through immune modulation has implications for prevention.
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