2006Cancer ResearchRequires access

MLN8054, an orally active Aurora A kinase small molecule inhibitor in phase I clinical trials

Mark Manfredi, Jeffrey Ecsedy, Kristan Meetze, Suresh K. Balani, Olga Burenkova, Wei Chen, Kara M. Hoar, Jessica J. Huck, Patrick Leroy, Todd B. Sells, Steve Stroud, Tricia J. Vos, Deborah R. Wysong, Mengkun Zhang, Christopher F. Claiborne

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Abstract

4724 The Aurora family of mitotic kinases play key roles in proper cell cycle progression. Aurora A and Aurora B are overexpressed in several human tumors and the Aurora A gene is amplified in a variety of cancers including breast, colon, and pancreatic. Due to their role in cancer, these kinases have been pursued as potential drug targets. Small molecules that inhibit both Aurora A and Aurora B kinase have been described in the literature and three have entered clinical trials. Here, we describe the first selective inhibitor of Aurora A to enter phase I clinical trials, MLN8054. MLN8054 selectively inhibits Aurora A over Aurora B in cultured human tumor cells and treatment results in phenotypes consistent with Aurora A inhibition including accumulation of mitotic cells with spindle abnormalities, and apoptosis. MLN8054 is orally bioavailable with a favorable pharmacokinetic profile to support once a day dosing in mice. A single oral administration of MLN8054 to nude mice bearing human colon tumor lines SW480 and HCT-116 resulted in a time-dependent accumulation of mitotic cells (beginning 4 hours after treatment) as detected by immunofluorescent staining for two mitotic markers. These in vivo results are consistent with MLN8054 mediating pharmacological effects through Aurora A inhibition. MLN8054 did not inhibit Aurora B in vivo at therapeutic doses as determined by the presence of staining in tumor tissue for the Aurora B substrate phosphorylated histone H3 (Ser10). Repeat dosing of MLN8054 induced apoptosis (starting on day 3) and tumor growth inhibition in several tumor models with once or twice a day dosing. MLN8054 is the first reported selective inhibitor of Aurora A kinase that robustly inhibits growth of human tumor xenografts and represents a novel modality for therapeutic intervention of human cancers.

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4724 The Aurora family of mitotic kinases play key roles in proper cell cycle progression. Aurora A and Aurora B are overexpressed in several human tumors and the Aurora A gene is amplified in a variety of cancers including breast, colon, and pancreatic. Due to their role in cancer, these kinases have been pursued as potential drug targets. Small molecules that inhibit both Aurora A and Aurora B kinase have been described in the literature and three have entered clinical trials. Here, we describe the first selective inhibitor of Aurora A to enter phase I clinical trials, MLN8054. MLN8054 selectively inhibits Aurora A over Aurora B in cultured human tumor cells and treatment results in phenotypes consistent with Aurora A inhibition including accumulation of mitotic cells with spindle abnormalities, and apoptosis. MLN8054 is orally bioavailable with a favorable pharmacokinetic profile to support once a day dosing in mice. A single oral administration of MLN8054 to nude mice bearing human colon tumor lines SW480 and HCT-116 resulted in a time-dependent accumulation of mitotic cells (beginning 4 hours after treatment) as detected by immunofluorescent staining for two mitotic markers. These in vivo results are consistent with MLN8054 mediating pharmacological effects through Aurora A inhibition. MLN8054 did not inhibit Aurora B in vivo at therapeutic doses as determined by the presence of staining in tumor tissue for the Aurora B substrate phosphorylated histone H3 (Ser10). Repeat dosing of MLN8054 induced apoptosis (starting on day 3) and tumor growth inhibition in several tumor models with once or twice a day dosing. MLN8054 is the first reported selective inhibitor of Aurora A kinase that robustly inhibits growth of human tumor xenografts and represents a novel modality for therapeutic intervention of human cancers.

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Available abstract

4724 The Aurora family of mitotic kinases play key roles in proper cell cycle progression. Aurora A and Aurora B are overexpressed in several human tumors and the Aurora A gene is amplified in a variety of cancers including breast, colon, and pancreatic. Due to their role in cancer, these kinases have been pursued as potential drug targets. Small molecules that inhibit both Aurora A and Aurora B kinase have been described in the literature and three have entered clinical trials. Here, we describe the first selective inhibitor of Aurora A to enter phase I clinical trials, MLN8054. MLN8054 selectively inhibits Aurora A over Aurora B in cultured human tumor cells and treatment results in phenotypes consistent with Aurora A inhibition including accumulation of mitotic cells with spindle abnormalities, and apoptosis. MLN8054 is orally bioavailable with a favorable pharmacokinetic profile to support once a day dosing in mice. A single oral administration of MLN8054 to nude mice bearing human colon tumor lines SW480 and HCT-116 resulted in a time-dependent accumulation of mitotic cells (beginning 4 hours after treatment) as detected by immunofluorescent staining for two mitotic markers. These in vivo results are consistent with MLN8054 mediating pharmacological effects through Aurora A inhibition. MLN8054 did not inhibit Aurora B in vivo at therapeutic doses as determined by the presence of staining in tumor tissue for the Aurora B substrate phosphorylated histone H3 (Ser10). Repeat dosing of MLN8054 induced apoptosis (starting on day 3) and tumor growth inhibition in several tumor models with once or twice a day dosing. MLN8054 is the first reported selective inhibitor of Aurora A kinase that robustly inhibits growth of human tumor xenografts and represents a novel modality for therapeutic intervention of human cancers.

Key concepts: Aurora inhibitor, Aurora B kinase, Aurora kinase, Aurora A kinase, Mitosis, Cancer research, Kinase, In vivo

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