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Vector-borne parasitic diseases (VBPDs) represent a major global public health concern, with human African trypanosomiasis (HAT), Chagas disease, leishmaniasis, and malaria collectively threatening millions of people, particularly in developing regions. Climate change may further influence their transmission and geographic spread, increasing the global burden. As drug resistance continues to rise, there is an urgent need for novel therapeutic agents to expand treatment options and limit disease progression.

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A set of small molecules containing an unusual sp-rich heterobicyclic scaffold were prepared and evaluated in vitro for their ability to increase GLP-1 secretion in STC-1 cells and to protect SH-SY5Y cells from acute and chronic damage induced by glucose and methylglyoxal, respectively. The results obtained showed that some compounds, especially those containing an electron-withdrawing and/or lipophilic group at the meta position of the aryl moiety present at position 9, are effective non-covalent TRPA1 agonists. The lead compound so far individuated (compound 4b) was also prepared by asymmetric synthesis in both enantiomeric forms.

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Introduction: Mutations in the MAPT gene that are causal for frontotemporal dementia (FTD) lead to mislocalization of tau protein to the neuronal cell body, changing microtubule dynamics to disrupt the nuclear envelope and nucleocytoplasmic transport.

Methods: We report a high content imaging-based phenotypic screen to identify novel small molecules that correct nuclear envelope defects in human neurons expressing the MAPT IVS10+16 mutation causal for FTD.

Results: Screening a 19,786-compound chemical diversity library, we identified > 100 compounds that corrected nuclear membrane defects in MAPT IVS10+16 neurons, with 23 demonstrating robust dose-dependent rescue.

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Water-based pharmacophore modeling is an emerging approach in inhibitor design that leverages the dynamics of explicit water molecules within ligand-free, water-filled binding sites to derive 3D pharmacophores for virtual screening. In this study, we assess the potential of this strategy through a case study targeting the ATP binding sites of Fyn and Lyn protein kinases─members of the Src family that have been less explored in anticancer drug discovery compared to other family members. Molecular dynamics simulations of multiple kinase structures were used to generate and validate several water-derived pharmacophores, which were subsequently employed to screen chemically diverse libraries of compounds.

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Somatic hybridization represents a powerful tool for generating novel chemotypes with enhanced biosynthetic capabilities. This study provides the first comprehensive phytochemical characterization of interspecific somatic hybrids between L. and King ex Hook.

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