Cell Death Induction by MO2455, a Novel Potential Anti-Cancer Agent in Monocytic and T-Cell Leukemia Cells

Despite advances in targeted therapies, treatment resistance and disease recurrence remain major obstacles in leukemia management. Structural modification of clinically successful kinase inhibitors represents a promising approach for discovering novel anti-leukemic agents with improved biological activities. In the present study, we investigated the anti-leukemic activity and mechanism of action of MO2455, a newly synthesized imatinib-derived compound, in monocytic leukemia U937, THP−1, and T-cell leukemia CCRF-CEM cells. MO2455 showed substantial cytotoxic activity against all three cell lines, with IC50 values of 0.83 μM, 0.43 μM, and 0.57 μM in U937, THP−1, and CCRF-CEM cells, respectively. Treatment with MO2455 induced early mitochondrial membrane depolarization, internucleosomal DNA laddering, a significant accumulation of sub−G1 population and increased Annexin V positivity, suggesting typical apoptosis without cell cycle arrest in U937 cells. MO2455 induced γ-H2AX induction and upregulated the pro-apoptotic NOXA and BBC3 genes. THP−1 and CCRF-CEM cells displayed distinct large DNA fragmentation with smearing. In PBMCs from two healthy donors, IC50 values were 0.99 and 0.60 μM, respectively, although the cells remained morphologically healthy without obvious extensive cell death. Overall, MO2455 exhibits substantial anti-leukemic activity and induces cell death through apoptosis and other mechanisms, supporting further investigation as an anti-leukemic agent.

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Journal
Cells
Published
2026-09-30
DOI
https://doi.org/10.3390/cells15191780
Primary Topic
Cell death mechanisms and regulation
Type
article
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article

Cell Death Induction by MO2455, a Novel Potential Anti-Cancer Agent in Monocytic and T-Cell Leukemia Cells

Takahiro Tougan, Taiki Aoshi, Yu Yingchun, B. L. Saraswat et al.
Cells
Cell death mechanisms and regulation
article

Cell Death Induction by MO2455, a Novel Potential Anti-Cancer Agent in Monocytic and T-Cell Leukemia Cells

Takahiro Tougan, Taiki Aoshi, Yu Yingchun, B. L. Saraswat, Mitsuko Masutani, Osamu Ohno, Takeji Takamura‐Enya, Ankitha Vadi Velu, Ying Tong, Kenji Matsuno, Fumiaki Koizumi, Zhao Zhenkai
article en

Abstract

Despite advances in targeted therapies, treatment resistance and disease recurrence remain major obstacles in leukemia management. Structural modification of clinically successful kinase inhibitors represents a promising approach for discovering novel anti-leukemic agents with improved biological activities. In the present study, we investigated the anti-leukemic activity and mechanism of action of MO2455, a newly synthesized imatinib-derived compound, in monocytic leukemia U937, THP−1, and T-cell leukemia CCRF-CEM cells. MO2455 showed substantial cytotoxic activity against all three cell lines, with IC50 values of 0.83 μM, 0.43 μM, and 0.57 μM in U937, THP−1, and CCRF-CEM cells, respectively. Treatment with MO2455 induced early mitochondrial membrane depolarization, internucleosomal DNA laddering, a significant accumulation of sub−G1 population and increased Annexin V positivity, suggesting typical apoptosis without cell cycle arrest in U937 cells. MO2455 induced γ-H2AX induction and upregulated the pro-apoptotic NOXA and BBC3 genes. THP−1 and CCRF-CEM cells displayed distinct large DNA fragmentation with smearing. In PBMCs from two healthy donors, IC50 values were 0.99 and 0.60 μM, respectively, although the cells remained morphologically healthy without obvious extensive cell death. Overall, MO2455 exhibits substantial anti-leukemic activity and induces cell death through apoptosis and other mechanisms, supporting further investigation as an anti-leukemic agent.

CellsVol. 15(19)
Kogakuin University (JP), Kanagawa Institute of Technology (JP), Nagasaki University (JP), Yasuda Women's University (JP)
Good health and well-being
Openalex Percentile: Top 19%
Cell death mechanisms and regulation
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