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Cordycepin inhibits glioma growth by downregulating PD-L1 expression via the NOD-like receptor/NFKB1/STAT1 axis
Jing Chen1, Ri-Sheng Liang1, Bing-Bo Zhuang1
1Department of Neurosurgery, Fujian Medical University Union Hospital, 29# Xinquan Road, Fuzhou, 350001, Fujian, China.
Abstract:
Glioma is a serious primary malignant tumor of the human central nervous system with a poor prognosis and a high recurrence rate; however, inhibition of immune checkpoints can greatly improve the survival rate of patients. The purpose of this study was to investigate the regulation of PD-L1 by cordycepin and the mechanism of its anti-tumor action. The results of previous studies indicate that cordycepin has good anti-proliferative and anti-migratory activities and can induce apoptosis in U251 and T98G cells in vitro. Here, transcriptome sequencing showed that cordycepin may exert anti-tumor effects through the NOD-like receptor signaling pathway. Further intervention with BMS-1, a small molecule inhibitor of PD-L1, was used to explore whether inhibition of PD-L1 affected the regulation of the NOD-like receptor signaling pathway by cordycepin. Mechanistically, on the one hand, cordycepin regulated the expression of NFKB1 and STAT1 through the NOD-like receptor signaling pathway, thereby inhibiting the expression of PD-L1. In addition, inhibition of PD-L1 enhanced the regulation by cordycepin of the NOD-like receptor signaling pathway. On the other hand, cordycepin directly upregulated expression of STAT1 and downregulated that of PD-L1. In vivo studies further showed that cordycepin could downregulate expression of PD-L1 and NFKB1 and upregulate that of STAT1 in glioma xenograft tumor tissues, consistent with the results of in vitro studies. The results suggest that cordycepin may down-regulate the expression of PD-L1 through NOD-like receptor signaling pathway and NFKB signaling pathway, thereby inhibiting the immune escape of glioma, and can be developed as a PD-L1 inhibitor. Our results therefore provide a theoretical foundation for the use of cordycepin in treatment of glioma and enrich our understanding of its pharmacological mechanism.
Insights
Cordycepin inhibits glioma immune escape by downregulating PD-L1 expression through the NOD-like receptor and NFKB signaling pathways. This suggests cordycepin
Area of Science:
- Neuro-oncology
- Immunology
- Pharmacology
Background:
- Glioma, a central nervous system malignancy, has a poor prognosis and high recurrence rates.
- Immune checkpoint inhibition significantly improves survival rates in cancer patients.
- Cordycepin exhibits anti-proliferative, anti-migratory, and pro-apoptotic effects in glioma cells.
Purpose of the Study:
- To investigate the regulation of Programmed Death-Ligand 1 (PD-L1) by cordycepin in glioma.
- To elucidate the anti-tumor mechanism of cordycepin involving immune checkpoints.
Main Methods:
- Transcriptome sequencing to identify pathways affected by cordycepin.
- In vitro studies using U251 and T98G glioma cells.
- Intervention with BMS-1, a PD-L1 inhibitor, to assess pathway interactions.
- In vivo studies using glioma xenograft models.
Main Results:
- Cordycepin regulates the NOD-like receptor signaling pathway, affecting NFKB1 and STAT1 expression.
- Cordycepin inhibits PD-L1 expression, potentially through the NOD-like receptor and NFKB signaling pathways.
- Inhibition of PD-L1 enhances cordycepin's effects on the NOD-like receptor pathway.
- In vivo and in vitro studies confirm cordycepin's downregulation of PD-L1 and NFKB1, and upregulation of STAT1.
Conclusions:
- Cordycepin downregulates PD-L1 expression via the NOD-like receptor and NFKB signaling pathways, inhibiting glioma immune escape.
- Cordycepin demonstrates potential as a therapeutic agent and PD-L1 inhibitor for glioma treatment.
- The study provides a theoretical basis for cordycepin's use in glioma therapy and deepens understanding of its mechanism.
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