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Published on: September 15, 2017
Modulation of acute inflammation by targeting glycosaminoglycan-cytokine interactions
James G Cripps1, Fabián A Crespo, Peteris Romanovskis
1Department of Pathology and Laboratory Medicine, School of Medicine, University of Louisville, Louisville, KY 40292, USA.
Insights
Targeting glycosaminoglycan (GAG)-cytokine interactions with the MC2 peptide significantly reduced inflammation markers in mice. This suggests a novel therapeutic strategy for inflammatory conditions by blocking GAG-cytokine binding.
Area of Science:
- Immunology
- Biochemistry
- Pharmacology
Background:
- Glycosaminoglycans (GAGs) on cell membranes and ECM bind chemokines and cytokines, promoting inflammation by attracting leukocytes.
- Targeting GAG-cytokine interactions offers a potential strategy to reduce inflammatory responses.
Purpose of the Study:
- To investigate the anti-inflammatory properties of a cationic peptide (MC2) derived from mouse IFN-gamma.
- To evaluate MC2's efficacy in an acute peritoneal inflammation model.
Main Methods:
- C57Bl/6 mice were induced with peritoneal inflammation using ConA or thioglycollate.
- Mice were treated with saline, MC2 peptide, poly-l-lysine (PLL), or poly-l-arginine (PLA).
- Peritoneal lavage fluid was analyzed for cell counts, total protein, and pro-inflammatory cytokines (TNF-α, IL-6, IL-1β).
Main Results:
- MC2 peptide treatment significantly reduced total cell numbers, protein concentration, and pro-inflammatory cytokine levels in peritoneal lavage fluid.
- Control peptides PLL and PLA did not show significant anti-inflammatory effects.
- MC2 treatment did not alter the qualitative cellular composition of the peritoneal exudate.
Conclusions:
- The MC2 peptide demonstrates anti-inflammatory activity by targeting GAG-cytokine interactions.
- Targeting GAG-cytokine interactions is a viable therapeutic approach for mitigating inflammatory conditions.
Abstract:
Glycosaminoglycans (GAGs) located on cellular membranes and the extracellular matrix (ECM) are able to interact with chemokines and pro-inflammatory cytokines, leading to local cytokine/chemokine accumulation. The tissue-bound cytokines/chemokines function in promoting leukocyte migration and activation, contributing to local inflammation. Hence, targeting of GAG-cytokine interactions may provide an avenue for the attenuation of inflammatory responses. A cationic peptide (MC2) derived from the heparin-binding sequence of mouse IFN-gamma was previously shown by our laboratory to delay allograft rejection in an animal model. In order to further investigate potential anti-inflammatory properties of the MC2 peptide, we have studied its activity in an acute peritoneal inflammation model. Groups of C57Bl/6 mice were injected intraperitoneally with either ConA or thioglycollate and treated with saline (control), the MC2 peptide or two control cationic peptides, poly-l-lysine (PLL) and poly-l-arginine (PLA). Treatment with the MC2 peptide, but not PLA or PLL, resulted in statistically significant reductions in total cell numbers, concentration of total proteins and concentrations of pro-inflammatory cytokines (TNFalpha, IL-6 or IL-1 beta) in peritoneal lavage fluids, without alterations to the qualitative cellular composition of the exudate. These results suggest that targeting GAG-cytokine interaction is a viable approach to reduce inflammation.
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