An integrated transcriptomic and survival analysis led to the identification of SYK and HDAC isoforms as age- and FLT3-dependent prognostic markers in acute myeloid leukemia (AML). Driven by the aforementioned, our research group employed a classical ligand-based hybrid pharmacophore strategy to furnish dual-target hybrid frameworks. Antitumor profiling culminated in a tractable bifunctional agent (Compound 14, dual SYK-HDAC inhibitor) endowed with substantial cell growth inhibitory effects against MV4−11 cell lines (AML cell lines harboring FLT3-ITD mutations). Compound 14 downregulated the expression levels of p-SYK and modulated the expression levels of the biomarkers associated with intracellular HDAC inhibition. Transcriptomic profiling revealed significantly suppressed lipid-associated metabolic pathways with Compound 14 treatment. Moreover, Compound 14 demonstrated an impressive pharmacokinetic profile and exerted significant antitumor efficacy in the FLT3-ITD-positive AML xenograft mouse model (approximately 80% decrease in tumor mass). Also, biochemical blood analysis and histopathological studies revealed that Compound 14 demonstrated a good safety profile.

Dual SYK-HDAC Inhibitor Elicits Striking Efficacy against Acute Myeloid Leukemia: Rational Design, Synthesis, and Biological Evaluation

Giovanni Stelitano;
2026-01-01

Abstract

An integrated transcriptomic and survival analysis led to the identification of SYK and HDAC isoforms as age- and FLT3-dependent prognostic markers in acute myeloid leukemia (AML). Driven by the aforementioned, our research group employed a classical ligand-based hybrid pharmacophore strategy to furnish dual-target hybrid frameworks. Antitumor profiling culminated in a tractable bifunctional agent (Compound 14, dual SYK-HDAC inhibitor) endowed with substantial cell growth inhibitory effects against MV4−11 cell lines (AML cell lines harboring FLT3-ITD mutations). Compound 14 downregulated the expression levels of p-SYK and modulated the expression levels of the biomarkers associated with intracellular HDAC inhibition. Transcriptomic profiling revealed significantly suppressed lipid-associated metabolic pathways with Compound 14 treatment. Moreover, Compound 14 demonstrated an impressive pharmacokinetic profile and exerted significant antitumor efficacy in the FLT3-ITD-positive AML xenograft mouse model (approximately 80% decrease in tumor mass). Also, biochemical blood analysis and histopathological studies revealed that Compound 14 demonstrated a good safety profile.
2026
Pharmacology & Toxicology includes all aspects of pharmacology, toxicology, and pharmaceutics. Of particular importance are cellular and molecular pharmacology, drug design and metabolism, mechanisms of drug action, drug delivery, natural products, xenobiotics, and clinical therapeutics. Toxicology coverage considers cellular and molecular effects of harmful substances, environmental toxicology, occupational exposure, and clinical toxicology. Drug bulletins, drug updates, and pharmaceutical newsletters are excluded as are resources on pharmaceutical engineering. Medicinal chemistry, or synthesis and chemical analysis of pharmaceuticals are placed in the Chemistry & Analysis category.
Inglese
Genetics, Inhibition, Inhibitors, Nuclear magnetic resonance spectroscopy, Peptides and proteins
https://pubs.acs.org/doi/10.1021/acs.jmedchem.6c00039
16
info:eu-repo/semantics/article
262
Mishra, Anshul; Yang, Wen-Bin; Liu, Tsu-Shao; Thakur, Amandeep; Singh Grewal, Ajmer; Marczyk, Jacek; Stelitano, Giovanni; Sharma, Ram; Rana, Mandeep; ...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1551458
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