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Novel Protocol for Generating Physiologic Immunogenic Dendritic Cells
Published on: May 17, 2019
Immunogenic Cell Death Induced by Ginsenoside Rg3: Significance in Dendritic Cell-based Anti-tumor Immunotherapy
Keum-Joo Son1, Ki Ryung Choi1, Seog Jae Lee2
1R&D Center, Pharmicell Co. Ltd., Seongnam 13229, Korea.
Abstract:
Cancer is one of the leading causes of morbidity and mortality worldwide; therefore there is a need to discover new therapeutic modules with improved efficacy and safety. Immune-(cell) therapy is a promising therapeutic strategy for the treatment of intractable cancers. The effectiveness of certain chemotherapeutics in inducing immunogenic tumor cell death thus promoting cancer eradication has been reported. Ginsenoside Rg3 is a ginseng saponin that has antitumor and immunomodulatory activity. In this study, we treated tumor cells with Rg3 to verify the significance of inducing immunogenic tumor cell death in antitumor therapy, especially in DC-based immunotherapy. Rg3 killed the both immunogenic (B16F10 melanoma cells) and non-immunogenic (LLC: Lewis Lung Carcinoma cells) tumor cells by inducing apoptosis. Surface expression of immunogenic death markers including calreticulin and heat shock proteins and the transcription of relevant genes were increased in the Rg3-dying tumor. Increased calreticulin expression was directly related to the uptake of dying tumor cells by dendritic cells (DCs): the proportion of CRT(+) CD11c(+) cells was increased in the Rg3-treated group. Interestingly, tumor cells dying by immunogenic cell death secreted IFN-γ, an effector molecule for antitumor activity in T cells. Along with the Rg3-induced suppression of pro-angiogenic (TNF-α) and immunosuppressive cytokine (TGF-β) secretion, IFN-γ production from the Rg3-treated tumor cells may also indicate Rg3 as an effective anticancer immunotherapeutic strategy. The data clearly suggests that Rg3-induced immunogenic tumor cell death due its cytotoxic effect and its ability to induce DC function. This indicates that Rg3 may be an effective immunotherapeutic strategy.
Insights
Ginsenoside Rg3 induces immunogenic tumor cell death, enhancing dendritic cell (DC) function and promoting an anti-tumor immune response. This suggests Rg3 as a potential immunotherapeutic strategy for cancer treatment.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Cancer remains a leading cause of death globally, necessitating novel therapies.
- Immunotherapy, particularly dendritic cell (DC)-based approaches, shows promise for intractable cancers.
- Ginsenoside Rg3, a ginseng saponin, exhibits antitumor and immunomodulatory properties.
Purpose of the Study:
- To investigate the role of Rg3 in inducing immunogenic tumor cell death.
- To evaluate Rg3's potential in DC-based immunotherapy.
- To explore Rg3's effects on tumor cell apoptosis and immune marker expression.
Main Methods:
- Treatment of B16F10 melanoma and LLC tumor cells with Rg3.
- Analysis of apoptosis and surface expression of immunogenic death markers (calreticulin, heat shock proteins).
- Assessment of dendritic cell (DC) uptake of dying tumor cells and cytokine secretion (IFN-γ, TNF-α, TGF-β).
Main Results:
- Rg3 induced apoptosis in both immunogenic and non-immunogenic tumor cells.
- Rg3-treated tumor cells showed increased expression of calreticulin and heat shock proteins.
- Dendritic cell (DC) uptake of Rg3-dying tumor cells increased, correlating with calreticulin expression.
- Rg3-treated tumor cells secreted IFN-γ and suppressed pro-angiogenic/immunosuppressive cytokines (TNF-α, TGF-β).
Conclusions:
- Rg3 effectively induces immunogenic tumor cell death through cytotoxic effects.
- Rg3 enhances dendritic cell (DC) function, crucial for initiating anti-tumor immunity.
- Ginsenoside Rg3 presents a promising candidate for anticancer immunotherapeutic strategies.

