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Updated: Mar 10, 2026

Stimulation of Notch Signaling in Mouse Osteoclast Precursors
Published on: February 28, 2017
Inflammation and Notch signaling: a crosstalk with opposite effects on tumorigenesis
Chiara Fazio1, Luigi Ricciardiello1
1Department of Medical and Surgical Sciences, University of Bologna, Bologna, Italy.
Abstract:
The Notch cascade is a fundamental and highly conserved pathway able to control cell-fate. The Notch pathway arises from the interaction of one of the Notch receptors (Notch1-4) with different types of ligands; in particular, the Notch pathway can be activated canonically (through the ligands Jagged1, Jagged2, DLL1, DLL3 or DLL4) or non-canonically (through various molecules shared by other pathways). In the context of tumor biology, the deregulation of Notch signaling is found to be crucial, but it is still not clear if the activation of this pathway exerts a tumor-promoting or a tumor suppressing function in different cancer settings. Untill now, it is well known that the inflammatory compartment is critically involved in tumor progression; however, inflammation, which occurs as a physiological response to damage, can also drive protective processes toward carcinogenesis. Therefore, the role of inflammation in cancer is still controversial and needs to be further clarified. Interestingly, recent literature reports that some of the signaling molecules modulated by the cells of the immune system also belong to or interact with the canonical and non-canonical Notch pathways, delineating a possible link between Notch activation and inflammatory environment. In this review we analyze the hypothesis that specific inflammatory conditions can control the activation of the Notch pathway in terms of biological effect, partially explaining the dichotomy of both phenomena. For this purpose, we detail the molecular links reported in the literature connecting inflammation and Notch signaling in different types of tumor, with a particular focus on colorectal carcinogenesis, which represents a perfect example of context-dependent interaction between malignant transformation and immune response.
Insights
The Notch pathway, crucial for cell-fate, has a complex role in cancer. This review explores how inflammation influences Notch signaling, impacting tumor progression and potentially explaining its dual role in cancer.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Cancer research
Background:
- The Notch pathway regulates cell-fate and is implicated in cancer, but its precise role (tumor-promoting or suppressing) remains unclear.
- Inflammation is critical in tumor progression, yet its role in cancer is controversial, with potential protective and promoting effects.
- Emerging evidence links immune system signaling molecules to the Notch pathway, suggesting an interplay between inflammation and Notch activation.
Purpose of the Study:
- To investigate the hypothesis that inflammatory conditions modulate Notch pathway activation and biological effects.
- To elucidate the molecular connections between inflammation and Notch signaling in various tumor types.
- To focus on colorectal carcinogenesis as a model for context-dependent interactions between cancer and immune responses.
Main Methods:
- Literature review of molecular links between inflammation and Notch signaling.
- Analysis of canonical and non-canonical Notch pathway activation.
- Focus on studies related to colorectal cancer and immune response.
Main Results:
- Detailed molecular mechanisms connecting inflammation and Notch signaling are presented.
- The review highlights how inflammation can influence the dual role of Notch in cancer.
- Colorectal cancer serves as a key example of this complex interaction.
Conclusions:
- Inflammation plays a significant role in modulating Notch pathway activity in cancer.
- Understanding the interplay between inflammation and Notch signaling is crucial for deciphering their context-dependent roles in tumorigenesis.
- This interaction offers potential insights into cancer development and therapeutic strategies, particularly in colorectal cancer.
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