Journal article
NN-01-195, a Novel Conjugate of HSP90 and AURKA Inhibitors, Effectively Targets Solid Tumors
Molecular cancer therapeutics, v 25(8), pp 1231-1245
04 Aug 2026
PMID: 41576363
Featured in Collection : Drexel's Newest Publications
Abstract
Aurora kinase A (AURKA) regulates cell-cycle progression into and through mitosis. As overexpression of AURKA in cancer cells is common and associated with mitotic defects and aneuploidy, small-molecule inhibitors of AURKA have been developed as candidate therapies for cancer. However, these have typically low activity in clinical trials, with systemic toxicities limiting dose escalation. To concentrate an AURKA inhibitor in tumors, we exploited the fact that cancer cells in solid tumors selectively express high levels of the chaperone HSP90 to counteract intratumoral stresses, providing a potential targeting moiety. We developed NN-01-195 as a novel chimeric small molecule that combines an AURKA inhibitor related to TAS-119/VIC-1911 with an HSP90-binding moiety related to SNX2112 and evaluated its function. NN-01-195 tightly binds and inhibits both AURKA and HSP90 in biochemical assays. In cancer cells, NN-01-195 causes mitotic arrest and spindle abnormalities and a profile of signaling changes that closely resembles that of an AURKA inhibitor. ADME assessment indicates moderate metabolism in liver microsomes (T1/2 = 46.7 minutes) and sustained plasma exposure following single intraperitoneal injection. Maximum tolerated repeated dose testing over 5 days indicates no weight loss or toxicity at 80 mg/kg. Importantly, NN-01-195 accumulates in xenografted tumors at higher levels and for longer duration than does an AURKA inhibitor. Furthermore, in combination with an inhibitor of the G2/M checkpoint protein WEE1, NN-01-195 is more potent than VIC-1911 in limiting growth of xenograft tumors. These data support the exploration of NN-01-195 and improved analogs as promising new candidates for therapeutic evaluation.
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Details
- Title
- NN-01-195, a Novel Conjugate of HSP90 and AURKA Inhibitors, Effectively Targets Solid Tumors
- Creators
- Theodore T Nguyen - Fox Chase Cancer CenterNitesh K Nandwana - The Wistar InstituteYellamelli V V Srikanth - The Wistar InstituteTetyana Bagnyukova - Fox Chase Cancer CenterOleksandra Chkhalo - Fox Chase Cancer CenterKathy Q Cai - Fox Chase Cancer CenterJulia Lamperelli - Fox Chase Cancer CenterShabnam Pirestani - Fox Chase Cancer CenterManish Kumar Mehra - The Wistar InstituteBarbara A Burtness - Yale Cancer CenterHossein Borghaei - Fox Chase Cancer CenterRavikumar Akunuri - The Wistar InstituteJoel Cassel - The Wistar InstituteLily Lu - The Wistar InstituteJoseph M Salvino - The Wistar InstituteErica A Golemis - Fox Chase Cancer Center
- Publication Details
- Molecular cancer therapeutics, v 25(8), pp 1231-1245
- Publisher
- AMER ASSOC CANCER RESEARCH; PHILADELPHIA
- Number of pages
- 15
- Grant note
- CA202045 / DOD Peer Reviewed Cancer Research Program (PRCRP) 1S10OD030245 / NIH Office of the Director (OD) William Wikoff Smith Charitable Trust P30 CA006927 / NCI NIH HHS R03 CA292552 / NCI NIH HHS DE030707 / National Institute of Dental and Craniofacial Research (NIDR) S10 OD030245 / NIH HHS CA006927 / National Cancer Institute (NCI) P30 CA010815 / NCI NIH HHS P50 DE030707 / NIDCR NIH HHS
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- Biochemistry and Molecular Biology
- Web of Science ID
- WOS:001839554500002
- Scopus ID
- 2-s2.0-105046443064
- Other Identifier
- 991022201736904721