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Updated: May 20, 2025

Quantitative Structure-Activity Relationship, Activity Prediction, and Molecular Dynamics of Non-nucleotide Reverse Transcriptase Inhibitors
Published on: May 9, 2025
Structure activity relationships of antischistosomal N-phenylbenzamides by incorporation of electron-withdrawing
Ameera Mohammed Dawoodjee1, John Sichinga1, Harrison Banda1
1Department of Chemistry, School of Natural Sciences, University of Zambia, P.O. Box 32379, Lusaka, Zambia.
Abstract:
For the adult Schistosoma mansoni flatworm pathogen, we report further structure activity relationships (SAR) of 19 N-phenylbenzamide analogs. Our previous SAR studies, designed by selecting representative substituents from the Craig plot, identified 9 and 11 which possessed electron-withdrawing groups that benefited potency. This study sought to enhance the potency of this chemotype by incorporating other electron-withdrawing functionalities not studied previously and to overcome the potential pharmacokinetic liabilities associated with the high lipophilicity of frontrunner compounds. Compared to the most potent compound, 9 (EC50 = 80 nM), from our previous work, the most potent compounds in the current study (32 (EC50 = 1.17 μM), 34 (EC50 = 1.64 μM) and 38 (EC50 = 1.16 μM)) were less active although they retained single digit micromolar potency. Furthermore, compound 38 generated a CC50 value of > 20 μM in counter toxicity screens using HEK 293 cells, translating to a wide selectivity index of > 17.
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