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Updated: Jan 22, 2026

Real-Time Monitoring of Aurora kinase A Activation using Conformational FRET Biosensors in Live Cells
Published on: July 30, 2020
Therapeutic Potential of Exportin 1 and Aurora Kinase A Inhibition in Multiple Myeloma Cells
Seiichi Okabe1, Yuko Tanaka1, Shunsuke Otsuki1
1Department of Hematology, Tokyo Medical University, Tokyo 1600023, Japan.
Abstract:
Background/Objectives: Aurora kinases (AURKs) are key regulators of mitosis, and their dysregulation contributes to plasma cell disorders, including multiple myeloma (MM) and plasma cell leukemia (PCL). Methods: The expression and prognostic relevance of AURK family members were examined, and the therapeutic potential of AURKA inhibition was evaluated. Results: Gene expression analysis demonstrated significant upregulation of AURKA in PCL. Treatment of MM cells with the selective AURKA inhibitor LY3295668 induced dose-dependent cytotoxicity, caspase-3/7 activation, and cellular senescence. Similarly, selinexor, a selective exportin-1 inhibitor, elicited dose-dependent cytotoxicity and apoptosis. Combined treatment with LY3295668 and selinexor significantly improved apoptosis compared with either agent alone, and AURKA knockdown further sensitized MM cells to selinexor, thereby increasing apoptosis. In bortezomib-resistant MM cells and primary PCL samples, the combination therapy induced cytotoxicity and caspase-3/7 activation. Conclusions: These findings underscore AURKA expression as a prognostic marker in plasma cell disorders and support the therapeutic potential of combining AURKA inhibition with selinexor for bortezomib-resistant MM and PCL. To explore biomarker-driven strategies for optimizing therapeutic outcomes, future studies are warranted.
Insights
Aurora kinases (AURK) inhibition, particularly AURKA, shows promise for treating multiple myeloma (MM) and plasma cell leukemia (PCL). Combining AURKA inhibition with selinexor may overcome resistance in these plasma cell disorders.
Area of Science:
- Oncology
- Molecular Biology
- Hematology
Background:
- Aurora kinases (AURKs) are critical for mitosis.
- Their dysregulation is implicated in plasma cell disorders like multiple myeloma (MM) and plasma cell leukemia (PCL).
Purpose of the Study:
- To investigate the expression and prognostic value of AURK family members.
- To evaluate the therapeutic potential of targeting AURKA in MM and PCL.
Main Methods:
- Gene expression analysis of AURK family members.
- In vitro treatment of MM cells with AURKA inhibitor LY3295668 and selinexor.
- Assessment of cytotoxicity, apoptosis, and senescence.
- Evaluation in bortezomib-resistant MM cells and primary PCL samples.
Main Results:
- AURKA was significantly upregulated in PCL.
- LY3295668 induced cytotoxicity, caspase-3/7 activation, and senescence in MM cells.
- Combined LY3295668 and selinexor enhanced apoptosis, particularly in resistant cells and PCL samples.
- AURKA knockdown sensitized MM cells to selinexor.
Conclusions:
- AURKA expression serves as a prognostic marker in plasma cell disorders.
- Combination therapy of AURKA inhibition and selinexor demonstrates therapeutic potential for bortezomib-resistant MM and PCL.
- Further research into biomarker-driven strategies is warranted.
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