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The Metformin Immunoregulatory Actions in Tumor Suppression and Normal Tissues Protection
Jitendra Gupta1, Abduladheem Turki Jalil2, Zahraa Hamzaa Abd Alzahraa3
1Institute of Pharmaceutical Research, GLA University, Mathura, Pin Code 281406, U. P., India.
Abstract:
The immune system is the key player in a wide range of responses in normal tissues and tumors to anticancer therapy. Inflammatory and fibrotic responses in normal tissues are the main limitations of chemotherapy, radiotherapy, and also some newer anticancer drugs such as immune checkpoint inhibitors (ICIs). Immune system responses within solid tumors including anti-tumor and tumor-promoting responses can suppress or help tumor growth. Thus, modulation of immune cells and their secretions such as cytokines, growth factors and epigenetic modulators, pro-apoptosis molecules, and some other molecules can be suggested to alleviate side effects in normal tissues and drug-resistance mechanisms in the tumor. Metformin as an anti-diabetes drug has shown intriguing properties such as anti-inflammation, anti-fibrosis, and anticancer effects. Some investigations have uncovered that metformin can ameliorate radiation/chemotherapy toxicity in normal cells and tissues through the modulation of several targets in cells and tissues. These effects of metformin may ameliorate severe inflammatory responses and fibrosis after exposure to ionizing radiation or following treatment with highly toxic chemotherapy drugs. Metformin can suppress the activity of immunosuppressive cells in the tumor through the phosphorylation of AMP-activated protein kinase (AMPK). In addition, metformin may stimulate antigen presentation and maturation of anticancer immune cells, which lead to the induction of anticancer immunity in the tumor. This review aims to explain the detailed mechanisms of normal tissue sparing and tumor suppression during cancer therapy using adjuvant metformin with an emphasis on immune system responses.
Insights
Metformin, an anti-diabetes drug, can protect normal tissues from cancer therapy side effects and enhance anti-tumor immunity. It modulates immune responses to reduce inflammation and fibrosis while boosting anti-cancer immunity within tumors.
Area of Science:
- Immunology
- Oncology
- Pharmacology
Background:
- Immune responses critically influence cancer therapy outcomes in normal tissues and tumors.
- Inflammatory and fibrotic responses limit chemotherapy, radiotherapy, and immune checkpoint inhibitor efficacy.
- Immune modulation within tumors can either promote or suppress cancer growth.
Purpose of the Study:
- To elucidate the mechanisms by which metformin, as an adjuvant therapy, spares normal tissues and suppresses tumors during cancer treatment.
- To emphasize the role of immune system modulation in metformin's therapeutic effects.
Main Methods:
- Review of existing literature on metformin's effects on immune responses in normal tissues and tumors.
- Analysis of metformin's impact on immune cells, cytokines, and epigenetic modulators.
- Exploration of metformin's role in modulating AMP-activated protein kinase (AMPK) signaling.
Main Results:
- Metformin exhibits anti-inflammatory and anti-fibrotic properties, potentially mitigating normal tissue toxicity from radiation and chemotherapy.
- Metformin can suppress immunosuppressive cells within tumors via AMPK activation.
- Metformin may enhance antigen presentation and immune cell maturation, fostering anti-tumor immunity.
Conclusions:
- Adjuvant metformin holds promise for reducing cancer therapy side effects in normal tissues.
- Metformin can enhance anti-tumor immunity and potentially overcome drug resistance mechanisms.
- Targeting immune responses with metformin offers a strategy for improved cancer treatment outcomes.
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