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Updated: May 20, 2026

Injections of Lipopolysaccharide into Mice to Mimic Entrance of Microbial-derived Products After Intestinal Barrier Breach
Published on: May 2, 2018
A soluble form of LMIR5/CD300b amplifies lipopolysaccharide-induced lethal inflammation in sepsis
Yoshinori Yamanishi1, Mariko Takahashi, Kumi Izawa
1Division of Cellular Therapy, Institute of Medical Science, The University of Tokyo, Minato-ku, Tokyo 108-8639, Japan;
Abstract:
Leukocyte mono-Ig-like receptor 5 (LMIR5, also called CD300b) is an activating receptor expressed in myeloid cells. We have previously demonstrated that T cell Ig mucin 1 works as a ligand for LMIR5 in mouse ischemia/reperfusion injury of the kidneys. In this article, we show that LMIR5 is implicated in LPS-induced sepsis in mice. Notably, neutrophils constitutively released a soluble form of LMIR5 (sLMIR5) through proteolytic cleavage of surface LMIR5. Stimulation with TLR agonists augmented the release of sLMIR5. LPS administration or peritonitis induction increased serum levels of sLMIR5 in mice, which was substantially inhibited by neutrophil depletion. Thus, neutrophils were the main source of LPS-induced sLMIR5 in vivo. On the other hand, i.p. administration of LMIR5-Fc, a surrogate of sLMIR5, bound to resident macrophages (M) and stimulated transient inflammation in mice. Consistently, LMIR5-Fc induced in vitro cytokine production of peritoneal M via its unknown ligand. Interestingly, LMIR5 deficiency profoundly reduced systemic cytokine production and septic mortality in LPS-administered mice, although it did not affect in vitro cytokine production of LPS-stimulated peritoneal M. Importantly, the resistance of LMIR5-deficient mice to LPS- or peritonitis-induced septic death was decreased by LMIR5-Fc administration, implicating sLMIR5 in LPS responses in vivo. Collectively, neutrophil-derived sLMIR5 amplifies LPS-induced lethal inflammation.
Insights
Neutrophil-derived soluble Leukocyte mono-Ig-like receptor 5 (LMIR5) amplifies inflammation during LPS-induced sepsis. LMIR5 deficiency protects mice from lethal sepsis, but soluble LMIR5 exacerbates the condition.
Area of Science:
- Immunology
- Molecular Biology
- Pathophysiology
Background:
- Leukocyte mono-Ig-like receptor 5 (LMIR5), an activating receptor on myeloid cells, has a known ligand in kidney injury.
- LMIR5's role in LPS-induced sepsis is not well understood.
Purpose of the Study:
- To investigate the role of LMIR5 and its soluble form (sLMIR5) in LPS-induced sepsis.
- To identify the source and function of sLMIR5 in sepsis.
Main Methods:
- Investigated LMIR5 expression and sLMIR5 release in neutrophils during LPS challenge.
- Administered LMIR5-Fc (a surrogate of sLMIR5) and studied LMIR5-deficient mice in LPS-induced sepsis models.
- Assessed cytokine production and survival rates.
Main Results:
- Neutrophils constitutively release sLMIR5, with release augmented by TLR agonists.
- Neutrophils are the primary source of LPS-induced sLMIR5 in vivo.
- LMIR5 deficiency reduced systemic cytokine production and mortality in septic mice.
- Administration of LMIR5-Fc reversed the protective effect of LMIR5 deficiency, indicating sLMIR5's role in vivo.
Conclusions:
- Neutrophil-derived sLMIR5 acts as a crucial amplifier of LPS-induced lethal inflammation.
- Targeting sLMIR5 may offer a therapeutic strategy for sepsis.
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