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Published on: May 16, 2025
Copper induced immunotoxicity promote differential apoptotic pathways in spleen and thymus
Soham Mitra1, Tarun Keswani, Nabanita Ghosh
1Immunology Lab, Department of Zoology, University of Calcutta, Kolkata 700019, West Bengal, India.
Insights
This study reveals how copper exposure differentially impacts immune cell death pathways in mouse spleen and thymus. Copper-induced apoptosis in the spleen is p53-independent, while in the thymus, it is p53-dependent, affecting T cell populations.
Area of Science:
- Immunology
- Toxicology
- Cell Biology
Background:
- Inorganic copper bypasses the liver, entering the blood's free copper pool and potentially causing immunosuppression.
- The precise signaling pathways governing copper-induced immune cell death are not fully understood.
Purpose of the Study:
- To investigate the detailed apoptotic mechanisms regulated by copper in the spleen and thymus.
- To elucidate the differential effects of copper on apoptotic pathways in vivo.
Main Methods:
- Analysis of protein and mRNA expression using Western blotting, immunohistochemistry, RT-PCR, and gel electrophoresis.
- Assessment of mitochondrial membrane potential, reactive oxygen species (ROS) generation, and CD4+/CD8+ T cell populations via flow cytometry.
Main Results:
- Copper exposure induced distinct apoptotic pathways in spleen and thymus.
- Spleen apoptosis was p53-independent, driven by ROS and mitochondrial changes, decreasing CD4+ and increasing CD8+ T cells.
- Thymus apoptosis involved both extrinsic and intrinsic pathways, was p53-dependent, and altered CD4+/CD8+ T cell populations.
Conclusions:
- Copper differentially regulates apoptotic pathways in the spleen and thymus, contributing to immunosuppression.
- The study identified key apoptotic molecules like p27, p73, p62, and PARP involved in copper-induced immune cell death.
Abstract:
Inorganic copper, such as that in drinking water and copper supplements, largely bypasses the liver and enters the free copper pool of the blood directly and that promote immunosuppression. Nevertheless, the signaling pathways underlying copper-induced immune cell death remains largely unclear. According to our previous in vivo report, to evaluate the further details of the apoptotic mechanism, we have investigated how copper regulates apoptotic pathways in spleen and thymus. We have analyzed different protein expression by western blotting and immunohistochemistry and mRNA expression by RT-PCR and gel electrophoresis. We also have measured mitochondrial trans-membrane potential, ROS and CD4(+) and CD8(+) population by flow cytometry. Sub lethal doses of copper in spleen and thymus of in vivo Swiss albino mice promote different apoptotic pathways. In case of spleen, ROS generation and mitochondrial trans-membrane potential changes promotes intrinsic pathway of apoptosis that was p53 independent, ultimately leads to decrease in CD4(+) T cell population and increase in CD8(+) T cell population. However in case of thymus, ROS generation and mitochondrial trans-membrane potential changes lead to death receptor that regulate extrinsic and intrinsic pathways of apoptosis and the apoptotic mechanism which was p53 dependent. Due to copper treatment, thymic CD4(+) T cell population decreased and CD8(+) T cell population was increased or proliferated. Apart from the role of inflammation, our findings also have identified the role of other partially responsible apoptotic molecules like p27, p73, p62, poly (ADP-ribose) polymerase (PARP) that differentially changed due to copper treatment in spleen and thymus of Swiss albino mice. Present study firstly demonstrates how apoptotic pathways differentially regulate copper induced immunosuppression.
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