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Phosphoinositide-3-kinase δ as an immune check-pathway in cancer Immunology. Therapeutic prospects
María Palacios-Ortega1,2,3, Ángel L Corbí4, Blanca García-Solís1,2,3
1Department of Clinical Immunology, Institute of Laboratory Medicine and IdISSC, Hospital Clínico San Carlos, Madrid, Spain.
Introduction:
Phosphoinositide-3-kinase δ (PI3Kδ) is a critical regulator of cellular processes, predominantly within the immune system, and its dysregulation is implicated in inborn errors of immunity, including Activated PI3 Kinase Delta Syndrome (APDS), and various malignancies, including hematological and solid tumors. Given PI3Kδ's predominant expression in leukocytes, its aberrant activation not only promotes tumor growth but also enables immune evasion, underscoring its importance as an 'immune-check pathway,' especially in immune-rich tumor microenvironments.
Areas Covered:
This review examines the oncogenic role of PI3Kδ signaling, emphasizing its contribution to immune evasion, tumor proliferation, survival, and metastasis across different cancers. A bibliographic search was conducted in PubMed, Science Direct, MEDES and SciELO using specific criteria for articles published until 2023.
Expert Opinion:
PI3Kδ signaling can be conceptualized as an immune check pathway, reinforcing its potential as a therapeutic cancer target. Recent clinical trials using PI3Kδ inhibitors have shown efficacy across various cancers (hematological, breast, gynecologic, and digestive cancers), suggesting their applicability beyond APDS and primary malignancies. This approach could prevent cancer-linked immunodeficiency, providing dual therapeutic and prophylactic benefits. Future research should explore PI3Kδ inhibitors as a comprehensive strategy for managing cancer progression and associated immune dysfunction, ultimately improving patient outcomes.
Insights
Phosphoinositide-3-kinase δ (PI3Kδ) is a key regulator in immunity and cancer. Inhibiting PI3Kδ shows promise for treating various cancers and preventing immune dysfunction.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Phosphoinositide-3-kinase δ (PI3Kδ) is crucial for immune cell function.
- Dysregulated PI3Kδ signaling contributes to immune disorders and cancers.
- PI3Kδ's role in leukocytes makes it vital in immune-rich tumors.
Purpose of the Study:
- To review the oncogenic role of PI3Kδ signaling in cancer.
- To highlight PI3Kδ's involvement in immune evasion and tumor progression.
- To assess PI3Kδ inhibitors as a therapeutic strategy.
Main Methods:
- Bibliographic search of PubMed, Science Direct, MEDES, and SciELO.
- Focus on articles published up to 2023.
- Review of PI3Kδ's function in cancer and immunity.
Main Results:
- PI3Kδ signaling promotes tumor growth, survival, and metastasis.
- PI3Kδ acts as an 'immune-check pathway' in tumors.
- PI3Kδ inhibitors demonstrate efficacy in clinical trials for various cancers.
Conclusions:
- PI3Kδ inhibitors are promising therapeutic targets for cancer.
- Targeting PI3Kδ may prevent cancer-associated immunodeficiency.
- Further research on PI3Kδ inhibitors can improve cancer management and patient outcomes.
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