ArticleChemistry & biodiversity2026
Unlocking Anti-Toxoplasma Activity: The Essential Role of a Cis-Configured Vinyl Linker.
Article in Chemistry & biodiversity, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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4 authors.
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Abstract
Separation of cis/trans isomers is critical for SAR studies but challenging due to similar properties. To address this, we designed a rigid triple-connected heterocyclic scaffold locking stereochemical geometry, enabling reliable separation and unambiguous assignment. From a library of cis/trans oxadiazole derivatives, cis compound 6 emerged as the most potent anti-Toxoplasma agent, displaying superior selectivity, lower cytotoxicity, and enhanced intracellular parasite clearance compared to its trans counterpart and reference drug spiramycin. Mechanistic investigations revealed compound 6 induces pronounced oxidative stress, evidenced by elevated NO/ROS and GSH depletion. Complementary in silico studies, including docking and 100-ns MD simulations, supported a stereospecific binding mode within TgNTPDase, with cis-6 forming dual hydrogen bonds that the trans isomer cannot access; the simulation further demonstrated stable protein-ligand interactions with backbone RMSD 0.235 ± 0.043 nm and minimum distance 0.15-0.22 nm throughout. ADMET predictions indicated improved solubility, slower clearance, and lower hERG risk for cis-6, consistent with its better selectivity. Collectively, this work establishes the rigid tris-heterocyclic core as a versatile stereochemically predictable platform for isomer-resolved drug design, positioning compound 6 as a promising lead for anti-toxoplasmosis therapy.
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