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TP-0903 Is Active in Preclinical Models of Acute Myeloid Leukemia with TP53 Mutation/Deletion
Eric D Eisenmann1, Jack C Stromatt1, Sydney Fobare2
1Division of Pharmaceutics and Pharmacology, The Ohio State University, Columbus, OH 43212, USA.
Abstract:
Acute myeloid leukemia (AML) with mutations in the tumor suppressor gene TP53 confers a dismal prognosis with 3-year overall survival of <5%. While inhibition of kinases involved in cell cycle regulation induces synthetic lethality in a variety of TP53 mutant cancers, this strategy has not been evaluated in mutant TP53 AML. Previously, we demonstrated that TP-0903 is a novel multikinase inhibitor with low nM activity against AURKA/B, Chk1/2, and other cell cycle regulators. Here, we evaluated the preclinical activity of TP-0903 in TP53 mutant AML cell lines, including a single-cell clone of MV4-11 containing a TP53 mutation (R248W), Kasumi-1 (R248Q), and HL-60 (TP 53 null). TP-0903 inhibited cell viability (IC50, 12−32 nM) and induced apoptosis at 50 nM. By immunoblot, 50 nM TP-0903 upregulated pChk1/2 and pH2AX, suggesting induction of DNA damage. The combination of TP-0903 and decitabine was additive in vitro, and in vivo significantly prolonged median survival compared to single-agent treatments in mice xenografted with HL-60 (vehicle, 46 days; decitabine, 55 days; TP-0903, 63 days; combination, 75 days) or MV4-11 (R248W) (51 days; 62 days; 81 days; 89 days) (p < 0.001). Together, these results provide scientific premise for the clinical evaluation of TP-0903 in combination with decitabine in TP53 mutant AML.
Insights
TP-0903, a novel multikinase inhibitor, shows preclinical promise against TP53-mutant Acute Myeloid Leukemia (AML). Combining TP-0903 with decitabine significantly improved survival in preclinical models, supporting clinical evaluation.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- TP53 mutations in Acute Myeloid Leukemia (AML) are associated with poor prognosis.
- Targeting cell cycle kinases is a potential therapeutic strategy for TP53-mutant cancers.
- TP-0903 is a novel multikinase inhibitor targeting cell cycle regulators.
Purpose of the Study:
- To evaluate the preclinical efficacy of TP-0903 in TP53-mutant AML.
- To assess the combination therapy of TP-0903 and decitabine in preclinical models.
Main Methods:
- TP53-mutant AML cell lines (MV4-11, Kasumi-1, HL-60) were treated with TP-0903.
- Cell viability, apoptosis, and DNA damage markers were assessed.
- In vivo studies utilized mouse xenograft models of AML treated with TP-0903 and decitabine.
Main Results:
- TP-0903 inhibited cell viability (12–32 nM IC50) and induced apoptosis.
- TP-0903 upregulated markers of DNA damage (pChk1/2, pH2AX).
- The combination of TP-0903 and decitabine significantly prolonged survival in vivo compared to single agents.
Conclusions:
- TP-0903 demonstrates preclinical activity against TP53-mutant AML.
- Combination therapy with decitabine shows enhanced efficacy.
- These findings support the clinical investigation of TP-0903 plus decitabine for TP53-mutant AML.

