Alternol triggers immunogenic cell death via reactive oxygen species generation
Changlin Li1,2, Ying Zhang1, Siyuan Yan1
1Institute of Precision Medicine, Jining Medical University, Jining China.
Abstract:
Alternol is a naturally occurring compound that exerts antitumor activity in several cancers. However, whether Alternol induces antitumor immune response remains unknown. In this study, we investigated whether Alternol induced immunogenic cell death (ICD) in prostate cancer cells. Alternol triggered ICD in prostate cancer cells, as evidenced by the release of damage-associated molecular patterns (DAMPs) (i.e., calreticulin, CALR; high mobility group protein B1, HMGB1; and adenosine triphosphate, ATP) and pro-inflammatory cytokine (i.e., interleukin [IL]-1α, IL-1β, IL-6, and IL-8) expression. Alternol facilitated tumor-associated antigen uptake and cross-presentation, CD8 + T-cell priming, and T-cell infiltration in tumor-draining lymph nodes (LNs) and tumors. The presence of Alternol fostered antitumor immune response in vivo, resulting in delayed tumor growth and prolonged survival. Moreover, inhibition of reactive oxygen species (ROS) generation blocked Alternol-induced upregulation of pre-inflammation cytokines, endoplasmic reticulum (ER) stress, and consequent antitumor immune response. Overall, our data indicate that Alternol triggers ICD in prostate cancer cells, which is mediated by ROS generation.
Insights
Alternol triggers immunogenic cell death in prostate cancer cells, enhancing antitumor immune responses. This natural compound
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Alternol exhibits antitumor activity in various cancers.
- The role of Alternol in inducing antitumor immune responses is not well understood.
Purpose of the Study:
- To investigate if Alternol induces immunogenic cell death (ICD) in prostate cancer cells.
- To elucidate the mechanisms underlying Alternol-induced antitumor immune responses.
Main Methods:
- Assessed ICD markers (DAMPs, pro-inflammatory cytokines) in prostate cancer cells treated with Alternol.
- Evaluated tumor-associated antigen uptake, T-cell priming, and T-cell infiltration in lymph nodes and tumors.
- Investigated the role of reactive oxygen species (ROS) in Alternol-mediated immune responses.
Main Results:
- Alternol induced ICD in prostate cancer cells, evidenced by DAMPs and cytokine release.
- Alternol promoted antigen presentation, T-cell priming, and infiltration, leading to delayed tumor growth and improved survival in vivo.
- Inhibition of ROS generation abrogated Alternol-induced immune responses, including cytokine upregulation and ER stress.
Conclusions:
- Alternol triggers immunogenic cell death in prostate cancer cells.
- Alternol-mediated antitumor immune response is dependent on ROS generation.
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