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Thiazole: A Versatile Standalone Moiety Contributing to the Development of Various Drugs and Biologically Active Agents

Mohammed Faiz ArshadAftab AlamDepartment of Pharmacognosy, College of Pharmacy, Prince Sattam Bin Abdulaziz University, Al-Kharj 11942, Saudi ArabiaAbdullah A. Al‐ShammariFaculty of Pharmacy, Northern Border University, Rafha 91911, Saudi ArabiaMohammed Bader AlhazzaFaculty of Pharmacy, Northern Border University, Rafha 91911, Saudi ArabiaIbrahim Mohammed AlzimamFaculty of Pharmacy, Northern Border University, Rafha 91911, Saudi ArabiaMd. Anish AlamDepartment of Pharmacognosy, College of Pharmacy, Prince Sattam Bin Abdulaziz University, Al-Kharj 11942, Saudi ArabiaGulam MustafaDepartment of Pharmaceutical Sciences, College of Pharmacy (Al-Dawadmi Campus), Shaqra University, Riyadh 11961, Saudi ArabiaMd Salahuddin AnsariDepartment of Pharmacy Practice, College of Pharmacy (Al-Dawadmi Campus), Shaqra University, Riyadh 11961, Saudi ArabiaAbdulelah M. AlotaibiInternee, College of Pharmacy (Al-Dawadmi Campus), Shaqra University, Riyadh 11961, Saudi ArabiaAbdullah A. AlotaibiInternee, College of Pharmacy (Al-Dawadmi Campus), Shaqra University, Riyadh 11961, Saudi ArabiaSuresh KumarSyed Mohammed Basheeruddin AsdaqDepartment of Pharmacy Practice, College of Pharmacy, AlMaarefa University, Dariyah 13713, Saudi ArabiaMohd ImranDepartment of Pharmaceutical Chemistry, Faculty of Pharmacy, Northern Border University, Rafha 91911, Saudi ArabiaPran Kishore DebDepartment of Pharmaceutical Sciences, Faculty of Pharmacy, Philadelphia University, Amman 19392, JordanKatharigatta N. VenugopalaDepartment of Biotechnology and Food Science, Faculty of Applied Sciences, Durban University of Technology, Durban 4001, South AfricaShahamah Jomah
2022en
ABI

Аннотация

For many decades, the thiazole moiety has been an important heterocycle in the world of chemistry. The thiazole ring consists of sulfur and nitrogen in such a fashion that the pi (π) electrons are free to move from one bond to other bonds rendering aromatic ring properties. On account of its aromaticity, the ring has many reactive positions where donor-acceptor, nucleophilic, oxidation reactions, etc., may take place. Molecules containing a thiazole ring, when entering physiological systems, behave unpredictably and reset the system differently. These molecules may activate/stop the biochemical pathways and enzymes or stimulate/block the receptors in the biological systems. Therefore, medicinal chemists have been focusing their efforts on thiazole-bearing compounds in order to develop novel therapeutic agents for a variety of pathological conditions. This review attempts to inform the readers on three major classes of thiazole-bearing molecules: Thiazoles as treatment drugs, thiazoles in clinical trials, and thiazoles in preclinical and developmental stages. A compilation of preclinical and developmental thiazole-bearing molecules is presented, focusing on their brief synthetic description and preclinical studies relating to structure-based activity analysis. The authors expect that the current review may succeed in drawing the attention of medicinal chemists to finding new leads, which may later be translated into new drugs.

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