Events8th International Electronic Conference on Medicinal Chemistry
Published
This submission belongs to the session S4. Small molecules as drug candidates of the event 8th International Electronic Conference on Medicinal Chemistry
Published date
01 Nov, 2022
Academic Editor
author-avatarMaria Emília Sousa
Citation
Omar Alaa ElKhouly, Dina Ibrahim A. Othman, Amany Salah Mostafa, Mohammed Adel Mahmoud Massoud, Thiazolopyrimidine as a Promising Anticancer Pharmacophore: In Silico Drug Design, Molecular Docking and ADMET prediction Studies, in Proceedings of 8th International Electronic Conference on Medicinal Chemistry, 1 November–30 November 2022, MDPI: Basel, Switzerland, doi: 10.3390/ECMC2022-13313
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Thiazolopyrimidine as a Promising Anticancer Pharmacophore: In Silico Drug Design, Molecular Docking and ADMET prediction Studies

Amany Salah Mostafa 1
Mohammed Adel Mahmoud Massoud 1
1. Department of Pharmaceutical Organic Chemistry, Faculty of Pharmacy, Mansoura University, Mansoura, 35516, Egypt.
2. Faculty of Pharmacy, New Mansoura University, New Mansoura, Egypt.
Abstract

Thiazolopyrimidines are well known to be designed to act as bio-isosteric analogues of purine nucleus. They proved to show a wide range of biological activities; such as anticancer, anti-inflammatory, antifungal, antiviral and antitubercular activity. In this study, a literature survey was thoroughly performed to elect the most active thiazolopyrimidine-containing scaffolds; acting as anticancer agents; to be subjected to extensive computational studies in order to explore the possible credible mode of their anticancer activity. First, drug-likeness was investigated for the most active derivatives, followed by molecular docking study against CDK, VEGFR and PI3K enzymes to assess their binding energy and propose the mode of action. Then, contact preference and surface mapping studies were carried out to explain the presence of remarkable affinity of certain analogues towards a specific enzyme, in addition to providing more information about their activity. Finally, physicochemical properties, Lipinski's rule of five and ADMET prediction studies were applied to predict the best route of administration and to suggest the pharmacokinetics of the most promising candidates.

Keywords
Thiazolopyrimidines
anticancer
computational studies
molecular docking
ADMET prediction
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