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Published on: September 7, 2019
Functional significance of macrophage-derived exosomes in inflammation and pain
Marguerite K McDonald1, Yuzhen Tian, Rehman A Qureshi
1Department of Pharmacology & Physiology, Drexel University College of Medicine, Philadelphia, PA, USA School of Biomedical Engineering, Science & Health Systems, Drexel University, Philadelphia, PA, USA Department of Neurology, Drexel University College of Medicine, Philadelphia, PA, USA Department of Cancer Biology, Thomas Jefferson University, Cancer Genomics Laboratory, Kimmel Cancer Center, Philadelphia, PA, USA Janssen Research and Development LLC, Spring House, PA, USA Department of Molecular Medicine, Sapienza Universita di Roma, Rome, Italy.
Abstract:
Exosomes, secreted microvesicles transporting microRNAs (miRNAs), mRNAs, and proteins through bodily fluids, facilitate intercellular communication and elicit immune responses. Exosomal contents vary, depending on the source and the physiological conditions of cells, and can provide insights into how cells and systems cope with physiological perturbations. Previous analysis of circulating miRNAs in patients with complex regional pain syndrome (CRPS), a debilitating chronic pain disorder, revealed a subset of miRNAs in whole blood that are altered in the disease. To determine functional consequences of alterations in exosomal biomolecules in inflammation and pain, we investigated exosome-mediated information transfer in vitro, in a rodent model of inflammatory pain, and in exosomes from patients with CRPS. Mouse macrophage cells stimulated with lipopolysaccharides secrete exosomes containing elevated levels of cytokines and miRNAs that mediate inflammation. Transcriptome sequencing of exosomal RNA revealed global alterations in both innate and adaptive immune pathways. Exosomes from lipopolysaccharide-stimulated cells were sufficient to cause nuclear factor-κB activation in naive cells, indicating functionality in recipient cells. A single injection of exosomes attenuated thermal hyperalgesia in a murine model of inflammatory pain, suggesting an immunoprotective role for macrophage-derived exosomes. Macrophage-derived exosomes carry a protective signature that is altered when secreting cells are exposed to an inflammatory stimulus. We also show that circulating miRNAs altered in patients with complex regional pain syndrome are trafficked by exosomes. With their systemic signaling capabilities, exosomes can induce pleiotropic effects potentially mediating the multifactorial pathology underlying chronic pain, and should be explored for their therapeutic utility.
Insights
Exosomes, tiny vesicles carrying molecules, can transfer information between cells. Macrophage-derived exosomes show potential therapeutic benefits for inflammatory pain and complex regional pain syndrome (CRPS).
Area of Science:
- Cell Biology
- Immunology
- Neuroscience
Background:
- Exosomes are crucial for intercellular communication, transporting microRNAs (miRNAs), mRNAs, and proteins.
- Altered circulating miRNAs are observed in complex regional pain syndrome (CRPS).
- Exosomal contents reflect cellular conditions and can indicate how systems respond to physiological stress.
Purpose of the Study:
- To investigate exosome-mediated information transfer in inflammation and pain.
- To explore the functional consequences of altered exosomal biomolecules in CRPS.
- To assess the therapeutic potential of exosomes in pain management.
Main Methods:
- Stimulation of mouse macrophage cells with lipopolysaccharides (LPS).
- Transcriptome sequencing of exosomal RNA.
- In vitro assays for exosome functionality (NF-κB activation).
- In vivo studies using a murine model of inflammatory pain.
- Analysis of exosomes from CRPS patients.
Main Results:
- LPS-stimulated macrophages secrete exosomes with elevated cytokines and miRNAs, altering immune pathways.
- These exosomes activate nuclear factor-κB (NF-κB) in recipient cells.
- Exosome injection attenuated thermal hyperalgesia in a murine inflammatory pain model.
- Exosomes from CRPS patients contain altered circulating miRNAs.
- Macrophage-derived exosomes exhibit an immunoprotective role.
Conclusions:
- Macrophage-derived exosomes possess a protective signature that is altered by inflammation.
- Exosomes mediate information transfer relevant to inflammatory pain and CRPS.
- Exosomes hold therapeutic potential for chronic pain conditions due to their systemic signaling capabilities.
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