Synthesis and Anticancer Activity of Thiadiazole Containing Thiourea, Benzothiazole and Imidazo[2,1-b][1,3,4]thiadiazole Scaffolds

Author:

Avvaru Stephen P.1,Noolvi Malleshappa N.2,More Uttam A.3,Chakraborty Sudipta4,Dash Ashutosh4,Aminabhavi Tejraj M.3,Narayan Kumar P.5,Sutariya Vishnu6

Affiliation:

1. Department of Pharmacy, Gujarat Technological University, Ahmedabad, India

2. Department of Pharmaceutical Chemistry, Shree Dhanvantary Pharmacy College, Surat, India

3. Pharmaceutical Chemistry, Shree Dhanvantary Pharmacy College, Surat, India

4. Radiopharmaceuticals Division, Bhabha Atomic Research Centre, Mumbai, India

5. Biological Sciences, Birla Institute of Technology & Science-Pilani, Hyderabad, India

6. Pharmaceutical Analysis, Shree Dhanvantary Pharmacy College, Surat, India

Abstract

Background: A great array of nitrogen-containing heterocyclic rings were being extensively explored for their functional versatility in the field of medicine especially in anticancer research. 1,3,4-thiadiazole is one of such heterocyclic ring with promising anticancer activity against several cancer cell lines, inhibiting diverse biological targets. Introduction: The 1,3,4-thiadiazole, when equipped with other heterocyclic scaffolds, has displayed enhanced anticancer properties. The thiourea, benzothiazole, imidazo[2,1,b][1,3,4]-thiadiazoles are such potential scaffolds with promising anticancer activity. Method: A new series of 5-substituted-1,3,4-thiadiazoles linked with phenyl thiourea, benzothiazole and 2,6-disubstituted imidazo[2,1- b][1,3,4]thiadiazole derivatives were synthesized and tested for in-vitro anticancer activity on various cancer cell lines. Results: The National Cancer Institute’s preliminary anticancer screening results showed compounds 4b and 5b having potent antileukemic activity. Compound 4b selectively showed 32 percent lethality on Human Leukemia-60 cell line. The docking studies of the derivatives on aromatase enzyme (Protein Data Bank: 3S7S) have shown reversible interactions at the active site with good docking scores comparable to Letrozole and Exemestane. Further, the selected derivatives were tested for anticancer activity on HeLa cell line based on the molecular docking studies. Conclusion: Compound 4b and 5b showed effective inhibition equivalent to Letrozole. These preliminary biological screening studies have given positive anticancer activity for these new classes of derivatives. An additional research study like the mechanism of action of the anticancer activity of this new class of compounds is necessary. These groundwork studies illuminate a future pathway for research of this class of compounds enabling the discovery of potent antitumor agents.

Funder

Board of Research in Nuclear Science

Publisher

Bentham Science Publishers Ltd.

Subject

Drug Discovery

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