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Microparticles Mediate Lipopolysaccharide-induced Inflammation and Chronic Pain in Mouse Model
Anjali Singh1, Khushi1, Vinod Tiwari2
1Department of Molecular Medicine and Biotechnology, Sanjay Gandhi Postgraduate Institute of Medical Sciences, Lucknow, 226014, Uttar Pradesh, India.
Abstract:
Recent evidence highlights microparticles (MPs) as crucial players in intercellular communication among immune cells, yet their role in inflammation-induced chronic pain remains unexplored. In this study, we investigated the involvement of MPs in the progression of inflammation and associated pain using mouse models of chronic neuroinflammation induced by repeated intraperitoneal injections of lipopolysaccharide (LPS; 1 mg/kg for four consecutive days) in C57BL/6 mice. Chronic pain was analyzed at baseline (day 0) and on day 21 post-LPS injection using von Frey and the hot metal plate tests. We found a significant increase in the levels of proinflammatory mediators and activation of the TLR4-NFκB signaling pathways following LPS administration. Additionally, transcriptional upregulation of chronic pain-associated TRP channels and glutamate receptors, including TRPA1, TRPM2, and mGluR2 in the cortex and hippocampus as well as mGluR5 in the cortex, was noted on day 21 post-LPS injection. Moreover, upregulation of TRPM2, mGluR2, and mGluR5 was found in the spinal cord, along with increased TRPA1 protein expression in the brain cortex. Plasma-derived MPs were isolated, revealing a significant increase in concentration 21 days after LPS injection, accompanied by TNF-α DNA encapsulation and increased TNF-α mRNA expression within MPs. Furthermore, MPs concentration positively correlated with the expression of TRPA1, TRPM2, mGluR2, and mGluR5. These findings suggest that MPs contribute to inflammation-induced chronic pain, highlighting their potential as therapeutic targets.
Insights
Microparticles (MPs) contribute to chronic pain by carrying inflammatory signals. This study shows MPs increase in concentration and carry TNF-α, correlating with pain receptor expression, suggesting MPs as therapeutic targets.
Area of Science:
- Neuroscience
- Immunology
- Pain Research
Background:
- Microparticles (MPs) are key in cell communication.
- Their role in inflammation-induced chronic pain is unknown.
Purpose of the Study:
- Investigate MPs' involvement in inflammation and chronic pain.
- Explore MPs as potential therapeutic targets.
Main Methods:
- Used lipopolysaccharide (LPS) to induce chronic neuroinflammation in mice.
- Assessed pain using von Frey and hot metal plate tests.
- Analyzed MP concentration, TNF-α content, and gene/protein expression of pain mediators.
Main Results:
- LPS induced neuroinflammation, activating TLR4-NFκB pathways.
- Chronic pain markers (TRP channels, glutamate receptors) were upregulated.
- Plasma MP concentration increased, containing TNF-α mRNA.
- MP levels correlated with pain receptor expression.
Conclusions:
- MPs play a role in inflammation-induced chronic pain.
- MPs may serve as biomarkers and therapeutic targets for chronic pain.

