Drug-Induced Senescence in Liver Cells Promotes M2 Macrophage Polarization: Implications for Tyrosine Kinase
Gargi Mukherjee1, Abhishek Mitra1, Vrinda Joshi1
1Department of Life Sciences, Shiv Nadar Institution of Eminence.
Abstract:
Lapatinib and neratinib are tyrosine kinase inhibitors (TKIs) approved for treating HER2-positive metastatic breast cancer, but their clinical use is limited by hepatotoxicity. Within hepatocytes, cytochrome P450 enzymes produce reactive metabolites of these drugs, causing DNA damage, mitochondrial dysfunction, and oxidative stress, which lead to hepatocyte injury. This cellular stress triggers hepatocyte senescence, a state of growth arrest accompanied by the secretion of pro-inflammatory and tissue-remodeling factors called the senescence-associated secretory phenotype (SASP). SASP significantly modifies the liver microenvironment, influences immune cell behavior, and worsens tissue damage. We show that lapatinib and neratinib induce senescence and SASP in the HepG2 liver cell line. Additionally, SASP from these senescent cells promotes M2-like polarization of RAW264.7 macrophages. Although M2 macrophages are associated with anti-inflammatory responses and tissue repair, their excessive or prolonged activity can lead to tissue damage and fibrosis. Our findings highlight a mechanism by which TKI-induced hepatocyte senescence and SASP modulate the immune response and may contribute to liver toxicity in breast cancer patients. This underscores the importance of targeting senescent cells or SASP factors to reduce liver toxicity and improve treatment outcomes, making the identification of effective senotherapeutics a vital research focus. There hasn't been any literature report demonstrating the effect of TKI-induced liver cell secretome on macrophage polarization.
Insights
Lapatinib and neratinib cause liver cell senescence and inflammation, potentially worsening breast cancer treatment toxicity. Targeting these senescent cells may reduce liver damage.
Area of Science:
- Hepatology
- Immunology
- Pharmacology
Background:
- Tyrosine kinase inhibitors (TKIs) like lapatinib and neratinib treat HER2-positive breast cancer but cause liver toxicity.
- Drug metabolites induce oxidative stress, DNA damage, and mitochondrial dysfunction in hepatocytes.
- This cellular stress leads to hepatocyte senescence and the secretion of pro-inflammatory factors (SASP).
Purpose of the Study:
- To investigate the mechanism of TKI-induced hepatotoxicity.
- To determine if TKIs induce hepatocyte senescence and SASP.
- To examine the effect of TKI-induced SASP on macrophage polarization.
Main Methods:
- Used HepG2 cells to model TKI-induced hepatocyte senescence and SASP.
- Exposed RAW264.7 macrophages to SASP from senescent HepG2 cells.
- Analyzed macrophage polarization markers.
Main Results:
- Lapatinib and neratinib induced senescence and SASP in HepG2 cells.
- SASP from senescent hepatocytes promoted M2-like polarization in macrophages.
- This is the first report on TKI-induced liver cell secretome influencing macrophage polarization.
Conclusions:
- TKI-induced hepatocyte senescence and SASP contribute to liver toxicity by modulating immune responses.
- Targeting senescent cells or SASP is a potential strategy to mitigate TKI-induced hepatotoxicity.
- Further research into senotherapeutics is crucial for improving breast cancer treatment outcomes.
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