Development of novel triconjugates fusing melatonin/isatin/N-acylhydrazone targeting colorectal cancer: design, synthesis, biological, and in silico ADME/Tox profiling

IF 2.6 4区 医学 Q3 CHEMISTRY, MEDICINAL
Sara M. Gutiérrez, Wilson Cardona-Galeano, Angie Herrera-Ramírez, Andres F. Yepes
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Abstract

Herein, a new library of triconjugates linked melatonin with the biological active cores of isatin and N-acylhydrazone were designed, synthetized, and their biological activity was evaluated in human colorectal cancer cells. All compounds were screened to determine the potential at a single dose of 100 µM against human colon adenocarcinoma SW480 cells, finding one compound 3e which caused 100% inhibition and a certain grade of lethality at the conditions evaluated. In addition, the most active and soluble hybrids were further assessed using a five-dose scheme in the same colon cancer cells, and non-malignant human colon epithelial cells (NCM460) to establish the selective potential, finding that hybridized molecules 3e, 3g, and 3l were more cytotoxic than parental compounds and 4-fold more selective than the reference drug (5-fluorouracil, 5-FU) which shows that molecular hybridization remains as a valuable tool to produce novel chemical entities that may result in advances in medicine. Lastly, according to a theoretical analysis on drug-like properties, pharmacokinetics, and toxicology, for the most promising hybrid 3e would show a strong possibility of moving on to further preclinical research. Our results clearly demonstrated the effectiveness of melatonin/isatin/N-acylhydrazone triconjugates, with the 2-hydroxyphenylsubstituted compound in particular serving as a prototype drug for future investigations into innovative therapeutic treatments for colorectal cancer.

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来源期刊
Medicinal Chemistry Research
Medicinal Chemistry Research 医学-医药化学
CiteScore
4.70
自引率
3.80%
发文量
162
审稿时长
5.0 months
期刊介绍: Medicinal Chemistry Research (MCRE) publishes papers on a wide range of topics, favoring research with significant, new, and up-to-date information. Although the journal has a demanding peer review process, MCRE still boasts rapid publication, due in part, to the length of the submissions. The journal publishes significant research on various topics, many of which emphasize the structure-activity relationships of molecular biology.
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