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Luxeptinib (CG-806) Targets FLT3 and Clusters of Kinases Operative in Acute Myeloid Leukemia
William G Rice1, Stephen B Howell2, Hongying Zhang1
1Aptose Biosciences, Inc, San Diego, California.
Abstract:
Luxeptinib (CG-806) simultaneously targets FLT3 and select other kinase pathways operative in myeloid malignancies. We investigated the range of kinases it inhibits, its cytotoxicity landscape ex vivo with acute myeloid leukemia (AML) patient samples, and its efficacy in xenograft models. Luxeptinib inhibits wild-type (WT) and many of the clinically relevant mutant forms of FLT3 at low nanomolar concentrations. It is a more potent inhibitor of the activity of FLT3-internal tandem duplication, FLT3 kinase domain and gatekeeper mutants than against WT FLT3. Broad kinase screens disclosed that it also inhibits other kinases that can drive oncogenic signaling and rescue pathways, but spares kinases known to be associated with clinical toxicity. In vitro profiling of luxeptinib against 186 AML fresh patient samples demonstrated greater potency relative to other FLT3 inhibitors, including cases with mutations in FLT3, isocitrate dehydrogenase-1/2, ASXL1, NPM1, SRSF2, TP53, or RAS, and activity was documented in a xenograft AML model. Luxeptinib administered continuously orally every 12 hours at a dose that yielded a mean Cmin plasma concentration of 1.0 ± 0.3 μmol/L (SEM) demonstrated strong antitumor activity but no myelosuppression or evidence of tissue damage in mice or dogs in acute toxicology studies. On the basis of these studies, luxeptinib was advanced into a phase I trial for patients with AML and myelodysplastic/myeloproliferative neoplasms.
Insights
Luxeptinib effectively targets FLT3 mutations in acute myeloid leukemia (AML) and other myeloid malignancies. This novel FLT3 inhibitor shows potent ex vivo activity and efficacy in preclinical models with a favorable safety profile.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Acute myeloid leukemia (AML) and myelodysplastic/myeloproliferative neoplasms are driven by dysregulated kinase signaling.
- FLT3 mutations are common in AML and confer poor prognosis.
- Targeting FLT3 and other oncogenic kinases is a key therapeutic strategy.
Purpose of the Study:
- To characterize the kinase inhibition profile of luxeptinib (CG-806).
- To evaluate the ex vivo cytotoxicity of luxeptinib in patient-derived AML samples.
- To assess the in vivo efficacy and safety of luxeptinib in preclinical models.
Main Methods:
- Comprehensive kinase inhibition screening.
- Ex vivo drug sensitivity testing using 186 primary AML samples.
- In vivo efficacy studies in AML xenograft models.
- Acute toxicology studies in mice and dogs.
Main Results:
- Luxeptinib potently inhibits wild-type and mutant FLT3, including clinically relevant mutations.
- It demonstrates broad kinase inhibition, sparing kinases associated with toxicity.
- Ex vivo studies show superior potency compared to other FLT3 inhibitors across various AML subtypes.
- In vivo studies confirm strong antitumor activity without myelosuppression or tissue damage.
Conclusions:
- Luxeptinib exhibits a promising therapeutic profile for myeloid malignancies.
- Its dual targeting and broad activity warrant further clinical investigation.
- Luxeptinib has advanced to Phase I clinical trials for AML and related neoplasms.
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