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Updated: Feb 13, 2026

Development and Functional Characterization of Murine Tolerogenic Dendritic Cells
Published on: May 18, 2018
Murine neutrophils treated with alphaB-crystallin reduce IL-12p40 production by dendritic cells
Trisha M Finlay1,2, Alexandra L Palmer1,2, Shalina S Ousman2,3,4
1Department of Neuroscience, University of Calgary, Calgary, AB, Canada.
Abstract:
Neutrophils are essential in the fight against invading pathogens. They utilize antimicrobial effector mechanisms, such as phagocytosis, release of proteases and other antimicrobial products, robust oxidative bursts and neutrophil extracellular traps to combat infections. Neutrophils also modulate immune responses through the production of eicosanoids, cytokines and chemokines, as well as via direct communication with other immune cells. This system of high-intensity offense against pathogens is exquisitely balanced through regulation to limit damage to host tissue. Unfortunately, the control of neutrophils is not failproof. In cases of sterile injury, autoimmunity and even during an infection, neutrophils can cause tissue destruction and become detrimental to the host. For that reason, there is a need to find means to regulate the aberrant activation of these cells. We found that alphaB-crystallin (αBC), a heat-shock protein known to have anti-inflammatory abilities, affects certain properties of mouse neutrophils that subsequently influence the pro-inflammatory state of antigen-presenting cells (APCs). More specifically, αBC mediated small but significant increases in the levels of IL-10 and matrix metalloproteinase 8, and altered hydrogen peroxide secretion by stimulated neutrophils. Further, the heat-shock protein influenced the communication between neutrophils and dendritic cells by decreasing the production of pro-inflammatory cytokines, specifically IL-12p40, by the APCs. αBC could thus contribute to dampening neutrophil inflammatory responses by impacting the effect of neutrophils on other immune cells.
Insights
AlphaB-crystallin (αBC), a heat-shock protein, modulates neutrophil activity and their inflammatory signaling to antigen-presenting cells (APCs). This suggests αBC may help regulate harmful neutrophil responses in inflammatory conditions.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Neutrophils are critical immune cells employing diverse antimicrobial mechanisms.
- Dysregulated neutrophil activation can lead to host tissue damage in various inflammatory conditions.
- There is a need for therapeutic strategies to control aberrant neutrophil activation.
Purpose of the Study:
- To investigate the effect of alphaB-crystallin (αBC) on mouse neutrophil functions.
- To determine how αBC influences neutrophil interactions with antigen-presenting cells (APCs).
- To explore αBC's potential in regulating neutrophil-mediated inflammation.
Main Methods:
- Treatment of mouse neutrophils with αBC.
- Measurement of neutrophil-derived mediators (IL-10, MMP-8, H2O2).
- Assessment of APCs' cytokine production (IL-12p40) following co-culture with αBC-treated neutrophils.
Main Results:
- αBC increased IL-10 and matrix metalloproteinase 8 levels in neutrophils.
- αBC altered hydrogen peroxide secretion by stimulated neutrophils.
- αBC decreased pro-inflammatory IL-12p40 production by APCs interacting with neutrophils.
Conclusions:
- AlphaB-crystallin (αBC) impacts neutrophil effector functions and their inflammatory signaling.
- αBC dampens neutrophil-induced pro-inflammatory responses in antigen-presenting cells.
- αBC shows potential as a regulator of neutrophil-driven inflammation.
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