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Published on: January 7, 2019
The modulation of reactive oxygen species production from human polymorphonuclear cells by curdlan derivatives as
Maria-Mihaela Bădulescu1, Andreea-Roxana Lupu, Lidia Cremer
1National Institute of Research-Development for Microbiology and Immunology Cantacuzino, Immunomodulation Laboratory, Bucharest, Romania.
Abstract:
Reactive oxygen species (ROS) are well known to be cytotoxic and have been implicated in the etiology of a wide array of human diseases including diabetes, neurodegenerative diseases, cancer and also influence central cellular processes such as proliferation, apoptosis, senescence etc. If in these pathological or degenerative conditions characterized by free radicals excess, reactive species are not eliminated, they can maintain destructive processes, already initiated at different cellular levels. Understanding the role of ROS as key mediators in signaling cascades may provide various opportunities for pharmacological intervention. Toll-like receptors and C-type lectin receptor class V--Dectin-1, as members of Pattern Recognition Receptors play an essential role in innate immune response against bacteria and fungi respectively, contributing to pathogens recognition, phagocytosis, ROS production and induction of pro-inflammatory cytokines secretion. Using a high performance chemiluminometric method, we studied the action of six Curdlan derivatives on the ROS production and release by activated human polymorphonuclear cells (PMNs) isolated from the peripheral blood of healthy donors. Our results demonstrated that Curdlan derivatives containing sulfopropyl groups did not activate human PMNs to release ROS. These compounds blocked Dectin-1 and were able to inhibit co-operation between Dectin-1 and TLR-2. Curdlan derivatives containing palmithoyl, carboxi-methyl and sulfopropyl groups increased ROS release by human PMNs activated at TLR-2 level. Taking into account the fact that Dectin-1 can actively collaborate with TLR-2 to modulate the subsequent adaptive immune response, we can presume that Curdlan derivatives containing sulfopropyl group or palmithoyl/carboxi-methyl/sulfopropyl groups, as possible Dectin-1 antagonists/agonists, could influence TLR-2 signaling.
Insights
Curdlan derivatives impact reactive oxygen species (ROS) production in immune cells. Sulfopropyl-containing Curdlan derivatives inhibit ROS release by blocking Dectin-1 and TLR-2 cooperation, while others stimulate ROS release via TLR-2 activation.
Area of Science:
- Immunology
- Biochemistry
- Pharmacology
Background:
- Reactive oxygen species (ROS) are cytotoxic and implicated in diseases like cancer and neurodegeneration.
- Pattern Recognition Receptors, including Dectin-1 and Toll-like Receptor 2 (TLR-2), are crucial for innate immunity.
- ROS are key mediators in cellular signaling, offering potential for pharmacological intervention.
Purpose of the Study:
- To investigate the effects of six Curdlan derivatives on ROS production by human polymorphonuclear cells (PMNs).
- To determine how Curdlan derivatives modulate Dectin-1 and TLR-2 signaling pathways.
Main Methods:
- Utilized a high-performance chemiluminometric method to measure ROS production.
- Isolated human PMNs from peripheral blood of healthy donors.
- Assessed the impact of various Curdlan derivatives on PMN activation and ROS release.
Main Results:
- Curdlan derivatives with sulfopropyl groups inhibited ROS release and blocked Dectin-1, preventing Dectin-1 and TLR-2 cooperation.
- Curdlan derivatives with palmithoyl, carboxi-methyl, and sulfopropyl groups enhanced ROS release in TLR-2 activated PMNs.
- These findings suggest Curdlan derivatives can act as Dectin-1 antagonists or agonists, influencing TLR-2 signaling.
Conclusions:
- Curdlan derivatives exhibit differential modulation of ROS production in human PMNs.
- Sulfopropyl Curdlan derivatives may serve as Dectin-1 antagonists, inhibiting inflammatory signaling.
- Other Curdlan derivatives show potential as Dectin-1 agonists, impacting TLR-2 mediated responses.
