Marotta Giambattista, Massenzio Francesca, Ortega Jose, Russo Debora, Penna Ilaria, Falchi Federico, Babini Giorgia, Petralla Sabrina, Scarpelli Rita, Roggiolani Elena, Fricker Gert, Rosini Michela, Cavalli Andrea, Monti Barbara, Minarini Anna, Basagni Filippo
Department of Pharmacy and Biotechnology, Alma Mater Studiorum─University of Bologna, Via Belmeloro 6, 40126 Bologna, Italy.
Department of Pharmacy and Biotechnology, Alma Mater Studiorum─University of Bologna, Via Selmi 3, 40126 Bologna, Italy.
J Med Chem. 2025 Aug 28;68(16):17130-17154. doi: 10.1021/acs.jmedchem.5c00629. Epub 2025 Aug 8.
The lack of efficient treatments and reliable biomarkers for neurodegenerative diseases requires the development of a late-stage powerful therapy. To this aim, we focused on Fyn and GSK-3β because both kinases are strictly involved in regulating neurodevelopmental processes, besides orchestrating neurotoxic aggregates' deposition and neuroinflammatory processes development. Based on these premises, we developed dual kinase inhibitors to verify at the cellular level the suitability of Fyn and GSK-3β modulation in pursuing the recovery of neural trophism paired to the activation of a neuroprotective profile. Starting from the mild inhibitory potency of the 3-aminothiazole-7-azaindole scaffold, we identified nanomolar dual and selective inhibitors among the kinases of interest. In-depth biological evaluations were performed with the best compounds of the series to assess the neuroprotective and neuromodulatory properties, like enabling neurogenesis or glial polarization, as well as triggering immunomodulation with different patterns relating to their inhibitory profile, setting the stage for potential development of neuroregenerative treatments.
神经退行性疾病缺乏有效的治疗方法和可靠的生物标志物,这需要开发一种晚期强效疗法。为此,我们将重点放在了Fyn和GSK-3β上,因为这两种激酶不仅严格参与调节神经发育过程,还在协调神经毒性聚集体的沉积和神经炎症过程的发展中发挥作用。基于这些前提,我们开发了双激酶抑制剂,以在细胞水平上验证调节Fyn和GSK-3β对于恢复神经营养作用以及激活神经保护作用的适用性。从3-氨基噻唑-7-氮杂吲哚支架的轻度抑制活性出发,我们在感兴趣的激酶中鉴定出了纳摩尔级的双激酶和选择性抑制剂。我们用该系列中最好的化合物进行了深入的生物学评估,以评估其神经保护和神经调节特性,如促进神经发生或胶质细胞极化,以及根据其抑制特性以不同模式触发免疫调节,为神经再生治疗的潜在发展奠定基础。