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Simultaneous Measurement of HDAC1 and HDAC6 Activity in HeLa Cells Using UHPLC-MS
Published on: August 10, 2017
Selective HDAC inhibition by ACY-241 enhances the activity of paclitaxel in solid tumor models
Pengyu Huang1, Ingrid Almeciga-Pinto1, Matthew Jarpe1
1Acetylon Pharmaceuticals, Inc., Boston, MA 02210, USA.
Abstract:
ACY-241 is a novel, orally available and selective histone deacetylase (HDAC) 6 inhibitor in Phase 1b clinical development in multiple myeloma (NCT 02400242). Like the structurally related drug ACY-1215 (ricolinostat), ACY-241 has the potential for a substantially reduced side effect profile versus current nonselective HDAC inhibitor drug candidates due to reduced potency against Class I HDACs while retaining the potential for anticancer effectiveness. We now show that combination treatment of xenograft models with paclitaxel and either ricolinostat or ACY-241 significantly suppresses solid tumor growth. In cell lines from multiple solid tumor lineages, combination treatment with ACY-241 and paclitaxel enhanced inhibition of proliferation and increased cell death relative to either single agent alone. Combination treatment with ACY-241 and paclitaxel also resulted in more frequent occurrence of mitotic cells with abnormal multipolar spindles and aberrant mitoses, consistent with the observed increase of aneuploid cells. At the molecular level, multipolar mitotic spindle formation was observed to be NuMA-dependent and γ-tubulin independent, suggesting that treatment-induced multipolar spindle formation does not depend on centrosomal amplification. The significantly enhanced efficacy of ACY-241 plus paclitaxel observed here, in addition to the anticipated superior safety profile of a selective HDAC6 inhibitor versus pan-HDAC inhibitors, provides a strong rationale for clinical development of this combination in patients with advanced solid tumors.
Insights
ACY-241, a selective HDAC6 inhibitor, combined with paclitaxel, significantly suppressed solid tumor growth in preclinical models. This combination enhances anti-cancer effects and warrants further clinical investigation for advanced solid tumors.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Histone deacetylase (HDAC) 6 inhibitors offer a potentially reduced side effect profile compared to nonselective HDAC inhibitors.
- ACY-241 is an orally available, selective HDAC6 inhibitor in clinical development.
Purpose of the Study:
- To evaluate the efficacy of combining ACY-241 with paclitaxel in solid tumor models.
- To investigate the molecular mechanisms underlying the combination's effects.
Main Methods:
- Combination treatment of xenograft models and solid tumor cell lines with ACY-241 (or ricolinostat) and paclitaxel.
- Assessment of proliferation, cell death, and mitotic spindle abnormalities.
- Molecular analysis of multipolar spindle formation.
Main Results:
- Combination therapy significantly suppressed solid tumor growth and enhanced inhibition of proliferation and cell death.
- Increased occurrence of mitotic cells with abnormal multipolar spindles and aneuploidy was observed.
- Multipolar spindle formation was NuMA-dependent and γ-tubulin independent.
Conclusions:
- The combination of ACY-241 and paclitaxel demonstrates significantly enhanced efficacy in preclinical solid tumor models.
- The anticipated superior safety profile of ACY-241 supports its clinical development in combination therapy for advanced solid tumors.
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