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SPHINX-Based Combination Therapy as a Potential Novel Treatment Strategy for Acute Myeloid Leukaemia
Chigeru Wodi1, Tareg Belali1, Ruth Morse1
1Centre for Research in Bioscience, Faculty of Health and Applied Sciences, University of the West of England, Bristol, United Kingdom.
Abstract:
Introduction: Dysregulated alternative splicing is a prominent feature of cancer. The inhibition and knockdown of the SR splice factor kinase SRPK1 reduces tumour growth in vivo. As a result several SPRK1 inhibitors are in development including SPHINX, a 3-(trifluoromethyl)anilide scaffold. The objective of this study was to treat two leukaemic cell lines with SPHINX in combination with the established cancer drugs azacitidine and imatinib. Materials and Methods: We selected two representative cell lines; Kasumi-1, acute myeloid leukaemia, and K562, BCR-ABL positive chronic myeloid leukaemia. Cells were treated with SPHINX concentrations up to 10μM, and in combination with azacitidine (up to 1.5 μg/ml, Kasumi-1 cells) and imatinib (up to 20 μg/ml, K562 cells). Cell viability was determined by counting the proportion of live cells and those undergoing apoptosis through the detection of activated caspase 3/7. SRPK1 was knocked down with siRNA to confirm SPHINX results. Results: The effects of SPHINX were first confirmed by observing reduced levels of phosphorylated SR proteins. SPHINX significantly reduced cell viability and increased apoptosis in Kasumi-1 cells, but less prominently in K562 cells. Knockdown of SRPK1 by RNA interference similarly reduced cell viability. Combining SPHINX with azacitidine augmented the effect of azacitidine in Kasumi-1 cells. In conclusion, SPHINX reduces cell viability and increases apoptosis in the acute myeloid leukaemia cell line Kasumi-1, but less convincingly in the chronic myeloid leukaemia cell line K562. Conclusion: We suggest that specific types of leukaemia may present an opportunity for the development of SRPK1-targeted therapies to be used in combination with established chemotherapeutic drugs.
Insights
SPHINX, a novel SR splice factor kinase 1 (SRPK1) inhibitor, effectively reduced viability and increased apoptosis in acute myeloid leukaemia cells. Combining SPHINX with azacitidine enhanced treatment effects, suggesting potential for targeted leukaemia therapies.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Dysregulated alternative splicing is a hallmark of cancer.
- SR splice factor kinase 1 (SRPK1) inhibition shows promise in reducing tumor growth.
- SPHINX is an emerging SRPK1 inhibitor based on a 3-(trifluoromethyl)anilide scaffold.
Purpose of the Study:
- To investigate the effects of SPHINX on leukaemic cell lines.
- To evaluate SPHINX in combination with established chemotherapeutics azacitidine and imatinib.
- To assess SRPK1's role in leukaemic cell viability and apoptosis.
Main Methods:
- Treatment of Kasumi-1 (acute myeloid leukaemia) and K562 (chronic myeloid leukaemia) cells with SPHINX.
- Combination therapy assays with azacitidine (Kasumi-1) and imatinib (K562).
- Assessment of cell viability, apoptosis (caspase 3/7 activation), and SRPK1 knockdown via siRNA.
Main Results:
- SPHINX reduced phosphorylated SR proteins, confirming target engagement.
- SPHINX significantly decreased viability and increased apoptosis in Kasumi-1 cells.
- Combination of SPHINX with azacitidine augmented azacitidine's anti-leukaemic effects in Kasumi-1 cells.
Conclusions:
- SPHINX demonstrates efficacy against acute myeloid leukaemia cells, particularly Kasumi-1.
- The combination of SPHINX with azacitidine shows synergistic potential in Kasumi-1 cells.
- SRPK1-targeted therapies, like SPHINX, may offer new combination strategies for specific leukaemias.
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