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SBL-JP-0004: A promising dual inhibitor of JAK2 and PI3KCD against gastric cancer.

Oncology research 2025 Vol.33(1) p. 235-243

Otifi HM

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[BACKGROUND] Gastric cancer (GC) remains a global health burden and is often characterized by heterogeneous molecular profiles and resistance to conventional therapies.

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BibTeX ↓ RIS ↓
APA Otifi HM (2025). SBL-JP-0004: A promising dual inhibitor of JAK2 and PI3KCD against gastric cancer.. Oncology research, 33(1), 235-243. https://doi.org/10.32604/or.2024.055677
MLA Otifi HM. "SBL-JP-0004: A promising dual inhibitor of JAK2 and PI3KCD against gastric cancer.." Oncology research, vol. 33, no. 1, 2025, pp. 235-243.
PMID 39735669

Abstract

[BACKGROUND] Gastric cancer (GC) remains a global health burden and is often characterized by heterogeneous molecular profiles and resistance to conventional therapies. The phosphoinositide 3-kinase and PI3K and Janus kinase (JAK) signal transducer and activator of transcription (JAK-STAT) pathways play pivotal roles in GC progression, making them attractive targets for therapeutic interventions.

[METHODS] This study applied a computational and molecular dynamics simulation approach to identify and characterize SBL-JP-0004 as a potential dual inhibitor of JAK2 and PI3KCD kinases. KATOIII and SNU-5 GC cells were used for evaluation.

[RESULTS] SBL-JP-0004 exhibited a robust binding affinity for JAK2 and PI3KCD kinases, as evidenced by molecular docking scores and molecular dynamics simulations. Binding interactions and Gibbs binding free energy estimates confirmed stable and favorable interactions with target proteins. SBL-JP-0004 displayed an half-maximal inhibitory concentration (IC) value of 118.9 nM against JAK2 kinase and 200.9 nM against PI3KCD enzymes. SBL-JP-0004 exhibited potent inhibition of cell proliferation in KATOIII and SNU-5 cells, with half-maximal growth inhibitory concentration (GI) values of 250.8 and 516.3 nM, respectively. A significant elevation in the early phase apoptosis (28.53% in KATOIII cells and 26.85% in SNU-5 cells) and late phase apoptosis (17.37% in KATOIII cells and 10.05% in SNU-5 cells) were observed with SBL-JP-0004 treatment compared to 2.1% and 2.83% in their respective controls.

[CONCLUSION] The results highlight SBL-JP-0004 as a promising dual inhibitor targeting JAK2 and PI3KCD kinases for treating GC and warrant further preclinical and clinical investigations to validate its utility in clinical settings.

MeSH Terms

Janus Kinase 2; Humans; Stomach Neoplasms; Cell Line, Tumor; Molecular Docking Simulation; Cell Proliferation; Class I Phosphatidylinositol 3-Kinases; Protein Kinase Inhibitors; Molecular Dynamics Simulation; Apoptosis; Antineoplastic Agents

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