Study summary · research use only
Thymulin, free or bound to PBCA nanoparticles, protects mice against chronic septic inflammation
Plain-language summary
Paraphrased from the published abstract below — not a verdict on whether anything works.
In this mouse study, the authors examined effects of free and polybutylcyanoacrylate nanoparticle-bound thymulin on immune cell activity in mice with chronic inflammation induced by gradually raised doses of lipopolysaccharide (LPS). LPS-treated mice showed increased activity of NF-κB, MAPK, and PKC-θ signaling pathways, increased Hsp72, Hsp90-α, and TLR4 expression, increased lymphocyte apoptosis, increased plasma proinflammatory cytokine levels, higher plasma and brain serotonin, and reduced melatonin, particularly in the brain. Treatment with thymulin was associated with reduced fever, apoptosis, and cytokine production, decreased Hsp72, Hsp90, and TLR4 expression and signaling pathway activity, increased splenic cell number, and partial restoration of brain and blood serotonin and melatonin levels; nanoparticle-bound thymulin showed differences from free thymulin in several respects.
Abstract
In the present work, we aimed to study the effects of free and polybutylcyanoacrylate nanoparticle-bound thymulin on immune cell activity in mice with chronic inflammation. NF-κB, MAPK, and PKC-θ signaling pathway activity was assessed, alongside Hsp72, Hsp90-α, and TLR4 expression and levels of apoptosis. In addition, plasma cytokines and blood and brain melatonin and serotonin levels were measured. In mice treated with gradually raised doses of lipopolysaccharide, significant increases in the activity of the signaling pathways tested, heat-shock protein and TLR4 expression, lymphocyte apoptosis, and plasma proinflammatory cytokine levels were noted. Moreover, we observed significantly heightened serotonin concentrations in the plasma and especially the brains of mice with inflammation. In contrast, melatonin levels were reduced in the tissues examined, particularly so in the brain. Treatment of these mice with thymulin alleviated fever, reduced apoptosis, increased splenic cell number, and decreased cytokine production, Hsp72, Hsp90, and TLR4 expression, and the activity of the signaling pathways examined. In addition, thymulin partially restored brain and blood serotonin and melatonin levels. Thus, thymulin suppressed the proinflammatory response in LPS-treated mice, indicating the potential of thymulin co-therapy in the treatment of sepsis. Nanoparticle-bound thymulin was more effective in several respects.
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