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Utilizing Synergistic Potential of Mitochondria-Targeting Drugs for Leukemia Therapy
Svetlana B Panina1, Jingqi Pei1, Natalia Baran2
1Department of BioSciences, Rice University, Houston, TX, United States.
Abstract:
Acute myeloid leukemia (AML) is an aggressive group of cancers with high mortality rates and significant relapse risks. Current treatments are insufficient, and new therapies are needed. Recent discoveries suggest that AML may be particularly sensitive to chemotherapeutics that target mitochondria. To further investigate this sensitivity, six compounds that target mitochondria [IACS-010759, rotenone, cytarabine, etoposide, ABT-199 (venetoclax), and carbonyl cyanide m-chlorophenylhydrazone] were each paired with six compounds with other activities, including tyrosine kinase inhibitors (midostaurin and dasatinib), glycolytic inhibitors (2-deoxy-D-glucose, 3-bromopyruvate, and lonidamine), and the microtubule destabilizer vinorelbine. The 36 resulting drug combinations were tested for synergistic cytotoxicity against MOLM-13 and OCI-AML2 AML cell lines. Four combinations (IACS-010759 with vinorelbine, rotenone with 2-deoxy-D-glucose, carbonyl cyanide m-chlorophenylhydrazone with dasatinib, and venetoclax with lonidamine) showed synergistic cytotoxicity in both AML cell lines and were selective for tumor cells, as survival of healthy PBMCs was dramatically higher. Among these drug pairs, IACS-010759/vinorelbine decreased ATP level and impaired mitochondrial respiration and coupling efficiency most profoundly. Some of these four treatments were also effective in K-562, KU812 (chronic myelogenous leukemia) and CCRF-CEM, MOLT-4 (acute lymphoblastic leukemia) cells, suggesting that these treatments may have value in treating other forms of leukemia. Finally, two of the four combinations retained high synergy and strong selectivity in primary AML cells from patient samples, supporting the potential of these treatments for patients.
Insights
New drug combinations targeting mitochondria show promise for treating acute myeloid leukemia (AML). Four synergistic combinations demonstrated tumor cell selectivity and potential efficacy in patient samples, offering hope for improved AML therapies.
Area of Science:
- Oncology
- Pharmacology
- Biochemistry
Background:
- Acute myeloid leukemia (AML) presents significant mortality and relapse challenges.
- Existing treatments for AML are insufficient, necessitating novel therapeutic strategies.
- Emerging evidence indicates AML's heightened sensitivity to mitochondrial-targeting chemotherapeutics.
Purpose of the Study:
- To investigate synergistic cytotoxicity of novel drug combinations in AML.
- To identify effective drug pairs targeting cancer cell mitochondria.
- To evaluate the selectivity and potential of these combinations in patient-derived cells.
Main Methods:
- Screened 36 drug combinations, pairing mitochondrial inhibitors with tyrosine kinase inhibitors, glycolytic inhibitors, or microtubule destabilizers.
- Tested drug combinations for synergistic cytotoxicity against MOLM-13 and OCI-AML2 AML cell lines.
- Assessed selectivity against peripheral blood mononuclear cells (PBMCs) and evaluated efficacy in primary AML patient samples.
Main Results:
- Identified four drug combinations with synergistic cytotoxicity and tumor cell selectivity: IACS-010759/vinorelbine, rotenone/2-deoxy-D-glucose, CCCP/dasatinib, and venetoclax/lonidamine.
- IACS-010759/vinorelbine combination profoundly reduced ATP levels and impaired mitochondrial function.
- Two combinations demonstrated sustained synergy and selectivity in primary AML cells, indicating clinical potential.
Conclusions:
- Novel drug combinations targeting mitochondria offer a promising therapeutic avenue for acute myeloid leukemia.
- The identified synergistic combinations exhibit tumor selectivity and efficacy in patient samples.
- These findings support the further development of these novel treatments for AML and potentially other leukemias.
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