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Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
Defective apoptosis of U937 cells induced by benzyl isothiocyanate (BITC)
Grzegorz Stasiłojć1, Anna Nagel1, Patrycja Koszałka1
1Department of Cell Biology and Immunology, Intercollegiate Faculty of Biotechnology UG-MUG, Medical University of Gdansk, Gdańsk, Poland.
Abstract:
Isothiocyanates precursors (ITCs), including benzyl isothiocyanate (BITC), are considered as cancer chemopreventive agents. ITC derivatives were tested in clinical trials (NCT00005883, NCT01265953, NCT01790204) and preclinical studies aimed to inhibit tumor growth and modulation of their microenvironment. Although efficacy of ITCs was demonstrated with several leukemic cell lines, the final steps of BITC-induced apoptosis were not completely elucidated in the literature. Therefore, we focused on morphological and biochemical events occurring upon treatment of U937 leukemia cells with BITC. Micromolar concentrations of BITC induced cytotoxicity in U937 cells, with major features resembling the hallmarks of apoptosis: phosphatidylserine exposure, low mitochondrial membrane potential, and presence of PARP cleavage by caspases. Disassembly to apoptotic bodies, a final step of classic apoptosis, was not observed. While tracing the signalling pathways, our results showed increased levels of BAG-1 and PUMA proteins, but in contrast to other models of ITCs-induced apoptosis, downregulation of Mcl-1 protein was not noticed. Additionally, BITC-induced dying U937 cells released lower levels of chemoattractants, such as IL-8 and MCP-1, when compared to cells undergoing classical apoptosis. This may disrupt clearance of cell debris by macrophages in vivo (efferocytosis), and in turn affect the inflammatory response. In summary, BITC inhibits tumor growth which makes it a good candidate for supporting cancer treatment. However, atypical apoptosis of leukemic U937 cells induced with BITC may affect the ability of phagocytes to effectively scavenge cellular debris, which poses a question of BITC effectiveness as a chemopreventive agent for leukemias.
Insights
Benzyl isothiocyanate (BITC) shows anti-leukemia potential by inducing atypical apoptosis. However, this process may hinder immune cell clearance, raising questions about its effectiveness as a cancer chemopreventive agent.
Area of Science:
- Oncology
- Cell Biology
- Immunology
Background:
- Isothiocyanates (ITCs), including benzyl isothiocyanate (BITC), are investigated as cancer chemopreventive agents.
- While ITCs show efficacy against leukemia, the precise mechanisms of BITC-induced apoptosis remain unclear.
Purpose of the Study:
- To elucidate the morphological and biochemical events of BITC-induced apoptosis in U937 leukemia cells.
- To investigate the impact of BITC on signaling pathways and the release of chemoattractants.
Main Methods:
- Treatment of U937 leukemia cells with BITC.
- Analysis of apoptotic hallmarks (phosphatidylserine exposure, mitochondrial membrane potential, PARP cleavage).
- Assessment of protein levels (BAG-1, PUMA, Mcl-1) and chemoattractant release (IL-8, MCP-1).
Main Results:
- BITC induced cytotoxicity with apoptotic features but lacked typical apoptotic body formation.
- Increased BAG-1 and PUMA, but not decreased Mcl-1, were observed.
- BITC-treated cells released lower levels of IL-8 and MCP-1, potentially impairing efferocytosis.
Conclusions:
- BITC exhibits anti-tumor properties but induces an atypical apoptosis in leukemia cells.
- The altered apoptotic process and reduced chemoattractant release may compromise immune clearance, questioning BITC's chemopreventive role in leukemia.
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