Inflammation and tumor progression: signaling pathways and targeted intervention

Воспаление и прогрессирование опухолей: сигнальные пути и таргетное воздействие
Yongsheng Li, Huakan Zhao, Lei Wu, Guifang Yan, Yu Chen, Mingyue Zhou, Yongzhong Wu
2021-07-11

Cancer inflammationJAK-STAT pathwayNF-κB signalingTumor progressioncGAS-STING pathway
Cancer development and its response to therapy are regulated by inflammation, which either promotes or suppresses tumor progression, potentially displaying opposing effects on therapeutic outcomes. Chronic inflammation facilitates tumor progression and treatment resistance, whereas induction of acute inflammatory reactions often stimulates the maturation of dendritic cells (DCs) and antigen presentation, leading to anti-tumor immune responses. In addition, multiple signaling pathways, such as nuclear factor kappa B (NF-kB), Janus kinase/signal transducers and activators of transcription (JAK-STAT), toll-like receptor (TLR) pathways, cGAS/STING, and mitogen-activated protein kinase (MAPK); inflammatory factors, including cytokines (e.g., interleukin (IL), interferon (IFN), and tumor necrosis factor (TNF)-α), chemokines (e.g., C-C motif chemokine ligands (CCLs) and C-X-C motif chemokine ligands (CXCLs)), growth factors (e.g., vascular endothelial growth factor (VEGF), transforming growth factor (TGF)-β), and inflammasome; as well as inflammatory metabolites including prostaglandins, leukotrienes, thromboxane, and specialized proresolving mediators (SPM), have been identified as pivotal regulators of the initiation and resolution of inflammation. Nowadays, local irradiation, recombinant cytokines, neutralizing antibodies, small-molecule inhibitors, DC vaccines, oncolytic viruses, TLR agonists, and SPM have been developed to specifically modulate inflammation in cancer therapy, with some of these factors already undergoing clinical trials. Herein, we discuss the initiation and resolution of inflammation, the crosstalk between tumor development and inflammatory processes. We also highlight potential targets for harnessing inflammation in the treatment of cancer.
1
Acute inflammatory responses may enhance dendritic-cell maturation and antigen presentation, thereby promoting effective antitumor immune responses.
2
Cancer therapies are being developed to modulate inflammation through irradiation, cytokines, antibodies, small-molecule inhibitors, dendritic-cell vaccines, oncolytic viruses, TLR agonists, and specialized proresolving mediators; some have entered clinical trials.
3
Cytokines, chemokines, growth factors, inflammasomes, and inflammatory lipid mediators regulate the initiation and resolution of tumor-associated inflammation.
4
Inflammation has context-dependent effects on cancer: chronic inflammation promotes tumor progression and treatment resistance, whereas acute inflammation can stimulate antitumor immunity.
5
NF-κB, JAK-STAT, TLR, cGAS/STING, and MAPK pathways are identified as central signaling regulators linking inflammation with tumor development and therapy.

cancer development and tumor response to therapy

the roles and signaling mechanisms of inflammation in tumor progression, treatment resistance, and anti-tumor immunity, including targets for therapeutic modulation

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2021-07-11
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Authors
Yongsheng Li
Huakan Zhao
Lei Wu
Guifang Yan
Yu Chen
Mingyue Zhou
Yongzhong Wu
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