Dichloroacetyl Amides of 3,5-Bis(benzylidene)-4-piperidones Displaying Greater Toxicity to Neoplasms than to Non-Malignant Cells

A series of 3,5-bis(benzylidene)-1-dichloroacetyl-4-piperidones <b>1a</b>–<b>l</b> was evaluated against Ca9-22, HSC-2, HSC-3, and HSC-4 squamous cell carcinomas. Virtually all of the compounds displayed potent cytotoxicity, with 83% of the CC<sub>50</sub> values...

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Bibliographic Details
Main Authors: Mohammad Hossain, Praveen K. Roayapalley, Hiroshi Sakagami, Keitaro Satoh, Kenjiro Bandow, Umashankar Das, Jonathan R. Dimmock
Format: Article
Language:English
Published: MDPI AG 2022-06-01
Series:Medicines
Subjects:
Online Access:https://www.mdpi.com/2305-6320/9/6/35
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Summary:A series of 3,5-bis(benzylidene)-1-dichloroacetyl-4-piperidones <b>1a</b>–<b>l</b> was evaluated against Ca9-22, HSC-2, HSC-3, and HSC-4 squamous cell carcinomas. Virtually all of the compounds displayed potent cytotoxicity, with 83% of the CC<sub>50</sub> values being submicromolar and several CC<sub>50</sub> values being in the double digit nanomolar range. The compounds were appreciably less toxic to human HGF, HPLF, and HPC non-malignant cells, which led to some noteworthy selectivity index (SI) figures. From these studies, <b>1d</b>,<b>g</b>,<b>k</b> emerged as the lead molecules in terms of their potencies and SI values. A Quantitative Structure-Activity Relationship (QSAR) study revealed that cytotoxic potencies and potency–selectivity expression figures increased when the magnitude of the sigma values in the aryl rings was elevated. The modes of action of the representative cytotoxins in Ca9-22 cells were found to include G2/M arrest and stimulation of the cells to undergo mitosis and cause poly(ADP-ribose) polymerase (PARP) and procaspase 3 cleavage.
ISSN:2305-6320