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Published on: April 6, 2022
Circulating Plasma Extracellular Vesicles from Septic Mice Induce Inflammation via MicroRNA- and TLR7-Dependent
Jinjin Xu1,2, Yan Feng1, Anjana Jeyaram3
1Translational Research Program, Department of Anesthesiology and Center for Shock Trauma Anesthesiology Research, University of Maryland School of Medicine, Baltimore, MD 21201.
Abstract:
We have previously reported that a group of host cellular microRNAs (miRNAs; miR-34a-5p, miR-122-5p, miR-145-5p, miR-146a-5p, miR-210-3p) are released into the blood during sepsis, some of which are capable of inducing complement activation, cytokine production, and leukocyte migration. Extracellular vesicles (EVs) have been proposed as vehicles for extracellular miRNA-mediated intercellular communication. However, the biological function of plasma EVs and the associated miRNAs in sepsis are largely unknown. In this study, we tested the hypothesis that plasma EVs in sepsis are proinflammatory and EV-associated miRNAs are responsible for EV-induced cytokine production. Compared with those of sham mice, the plasma EVs from septic mice were slightly smaller (157 ± 2 versus 191 ± 6 nm, p < 0.0001), but more abundant [(1.6 ± 0.14) × 1010 versus (0.93 ± 0.14) × 1010/ml plasma, p < 0.003]. miRNA array revealed that among 65 miRNAs, 8 miRNAs exhibited >1.5-fold increase in septic EVs compared with sham EVs, including miR-126-3p, miR-122-5p, miR-146a-5p, miR-145-5p, miR-26a-5p, miR-150-5p, miR-222-3p, and miR-181a-5p. Septic but not sham EVs were proinflammatory, promoting IL-6, TNF-α, IL-1β, and MIP-2 production. The effects of EVs were resistant to polymyxin B (an endotoxin inhibitor) but significantly inhibited by anti-miR inhibitors against miR-34a, miR-122, and miR-146a. Moreover, the septic EV-induced cytokine production was attenuated in TLR7-/- or MyD88-/- cells but remained the same in TLR3-/- or Trif-/- cells. In vivo, mice i.p. injected with septic EVs had marked peritoneal neutrophil migration, which was significantly attenuated in MyD88-/- mice. Taken together, these data demonstrate that plasma EVs of septic animals play an important role in inflammation, and EV-associated miRNAs likely mediate the cytokine production via TLR7-MyD88 signaling.
Insights
Plasma extracellular vesicles (EVs) from septic mice are proinflammatory and contain specific microRNAs (miRNAs) that drive cytokine production. These EV-associated miRNAs mediate inflammation via Toll-like receptor 7 (TLR7) and MyD88 signaling pathways.
Area of Science:
- Immunology
- Molecular Biology
- Sepsis Research
Background:
- Sepsis involves the release of host cellular microRNAs (miRNAs) into the blood.
- Extracellular vesicles (EVs) are implicated in intercellular communication.
- The role of plasma EVs and their associated miRNAs in sepsis-induced inflammation is not well understood.
Purpose of the Study:
- To investigate the proinflammatory potential of plasma EVs in sepsis.
- To determine if EV-associated miRNAs are responsible for EV-induced cytokine production.
- To elucidate the signaling pathways involved in EV-mediated inflammation during sepsis.
Main Methods:
- Characterization of plasma EVs from septic and sham mice (size, abundance).
- miRNA profiling of EVs using miRNA arrays.
- Assessment of EV-induced cytokine production in cell lines and in vivo mouse models.
- Inhibition studies using anti-miR inhibitors and knockout cell lines (TLR7-/-, MyD88-/-, TLR3-/-, Trif-/-).
Main Results:
- Plasma EVs from septic mice were more abundant and slightly smaller than those from sham mice.
- Septic EVs contained increased levels of specific miRNAs, including miR-122-5p and miR-146a-5p.
- Septic EVs induced cytokine production (IL-6, TNF-α, IL-1β, MIP-2) and neutrophil migration.
- EV effects were mediated by miRNAs (inhibited by anti-miRs) and involved TLR7-MyD88 signaling.
Conclusions:
- Plasma EVs from septic animals contribute significantly to inflammation.
- EV-associated miRNAs are key mediators of cytokine production in sepsis.
- The TLR7-MyD88 pathway is crucial for EV-induced inflammatory responses in sepsis.
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