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Screening Bioactive Nanoparticles in Phagocytic Immune Cells for Inhibitors of Toll-like Receptor Signaling
Published on: July 26, 2017
Panax ginseng-derived Exosome-like Nanoparticles Prevent LPS-induced Septic Shock by Modulating TLR4 Glycosylation in
Youngjoon Kim1, Youn Kyung Kim2, Sunwoo Lee1
1Department of Physiology, School of Dentistry and Dental Research Institute, Seoul National University, Seoul 03080, Republic of Korea.
Abstract:
Macrophages play a crucial role in the pathophysiology of sepsis, serving as central regulators of both disease onset and progression. Among the therapeutic agents investigated to modulate macrophage-driven inflammation, compounds extracted from the roots of Panax ginseng have been distinguished for their potent anti-inflammatory properties. Recently, attention has shifted toward ginseng-derived exosome-like nanoparticles (GDEs) because of their ability to encapsulate diverse bioactive compounds with high stability and biocompatibility. In this study, we investigated the protective effects of GDEs against lipopolysaccharide (LPS)-induced septic shock, with a particular focus on macrophage-mediated mechanisms. GDEs isolated from Korean Panax ginseng exhibited a spherical morphology, high stability, and effective encapsulation of bioactive ginsenosides, including Rb1, Rg1, and Rg3. GDEs significantly attenuated LPS-induced inflammatory responses in macrophages by reducing toll-like receptor 4 (TLR4) glycosylation, thereby inhibiting LPS binding. This suppression of TLR4 glycosylation led to decreased production of nitric oxide and proinflammatory cytokines (interleukin-1β, interleukin-6, and tumor necrosis factor-α), as well as inhibition of intracellular reactive oxygen species accumulation and NF-κB activation. Furthermore, GDE treatment markedly improved survival and alleviated lung, liver, and spleen damage in an LPS-induced sepsis mouse model. In summary, these findings suggest that GDEs represent a promising nanomedicine strategy for sepsis prevention, offering targeted modulation of macrophage activity without apparent adverse effects.
Insights
Ginseng-derived nanoparticles (GDEs) protect against sepsis by modulating macrophage inflammation. These nanoparticles reduce inflammatory markers and improve survival in sepsis models, offering a promising nanomedicine approach.
Area of Science:
- Nanomedicine
- Immunology
- Pharmacology
Background:
- Macrophages are key players in sepsis pathophysiology.
- Panax ginseng compounds show anti-inflammatory effects.
- Ginseng-derived exosome-like nanoparticles (GDEs) offer stable delivery of bioactive compounds.
Purpose of the Study:
- To investigate the protective effects of GDEs against lipopolysaccharide (LPS)-induced septic shock.
- To elucidate the macrophage-mediated mechanisms involved in GDEs' protective action.
Main Methods:
- Isolation and characterization of GDEs from Korean Panax ginseng.
- Assessment of GDEs' effects on LPS-induced inflammatory responses in macrophages.
- Evaluation of GDEs' efficacy in an LPS-induced sepsis mouse model.
Main Results:
- GDEs effectively encapsulated ginsenosides (Rb1, Rg1, Rg3) and showed stability.
- GDEs reduced LPS-induced inflammatory responses by inhibiting toll-like receptor 4 (TLR4) glycosylation.
- GDE treatment decreased nitric oxide, pro-inflammatory cytokines, reactive oxygen species, and NF-κB activation.
- GDEs improved survival rates and alleviated organ damage in a sepsis mouse model.
Conclusions:
- GDEs represent a promising nanomedicine strategy for sepsis prevention.
- GDEs modulate macrophage activity, targeting TLR4 glycosylation.
- GDEs offer a potentially safe and effective approach for sepsis treatment.

