Original ArtcileJournal of Young PharmacistsVol. 17 | Issue 1 | 2025 | pp. 138–148Open access
Synthesis, in silico and Pharmacological Activity of 1, 3-Benzothiazol Derivatives
- 1,
- 1,
- 1*,
- 2,
- 2,
- 3,
- 4
- 1 Faculty of Pharmaceutical Science, Assam Down Town University, Panikhaiti, Guwahati, Assam, INDIA.
- 2 DMBH Institute of Medical Science, Dadpur, Puinan, Hooghly, West Bengal, INDIA.
- 3 Department of Pharmacology, Mata Gujri College of Pharmacy, Purabpali Road, Kishanganj, Bihar, INDIA.
- 4 Royal School of Pharmacy, The Assam Royal Global University, Betkuchi, Guwahati, Assam, INDIA.
Published in Journal of Young Pharmacists
Correspondence: Faruk Alam
Faculty of Pharmaceutical Science, Assam Down Town University, Panikhaiti, Guwahati, Assam, INDIA.
Email: faruk_2007a@rediffmail.com
Copyright: © 2025 Manuscript Technomedia. This is an open access article.
- Published:
- Jun 6, 2025
- Received:
- Jun 27, 2024
- Accepted:
- Oct 6, 2024
- DOI:
- 10.5530/jyp.20251339
How to cite
Bora, R., Kemisetti, D. P., Alam, F., Ghosh, A., Dutta, A., Roy, S., & Judder, M. I. (2025). Synthesis, in silico and Pharmacological Activity of 1, 3-Benzothiazol Derivatives. Journal of Young Pharmacists, 17(1), 138–148. https://doi.org/10.5530/jyp.20251339
Abstract
Background: Benzothiazole and its derivatives serve as a unique and versatile moiety for experimental drug design, especially in pharmaceutical chemistry, because of their potent pharmacological activities. Hence, the present study is planned to develop benzothiazole-containing benzohydrazide derivatives to determine what modifications result in a better corrective benzothiazole shift moiety that permits the achievement of a novel pharmacological profile, action and toxicity reduction. Materials and Methods: Five novel derivatives of benzothiazole containing benzohydrazide were synthesized and evaluated for their anti-inflammatory and analgesic activities through in silico and in vivo studies. Results: The molecular docking analysis displayed a strong binding affinity of the newly synthesized compounds with the receptors (PDB ID: 1EQG and 1CX2), with compound 3C exhibiting the highest binding energy of -10.41 and -9.20 kcal/mol. Compounds 3C and 3E prevented rat paw oedema caused by carrageenan at 70.03% and 62. 06%, at 1 hr, 74.38% and 71.04% at 2 hr and 78.11% and 76.14% at 3 hr, correspondingly. Throughout the study evaluating analgesic activity, components 3C, 3E and also 3B had ED50 (mM/kg) of 85±4.2 (Mean±SEM; n=4), 126±0.5, 95±1.6 after 0.5 hr; 71±4.8, 83±1.0 and 99±1.4, after 1 hr and 68±6.4, 75±5.7 and 87±2.1 mM/kg subsequent 2 hr, accordingly, it is comparably equated with 155±4.2, 70±1.4 and 69±0.9 mM/kg for celecoxib. Discussion: The Structure-Activity Relationship (SAR) analysis highlighted whether the replacement in the ortho/para position of benzohydrazide, despite furtherance of being part of halogen groups (I2) and electron-rich -NH or -OH groups, played a crucial role in enhancing the anti-inflammatory and analgesic properties of the synthesized compounds. Conclusion: These findings underscore the potential of these derivatives as promising candidates for further development in the field of drug discovery.
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Article metadata
| Title | Synthesis, in silico and Pharmacological Activity of 1, 3-Benzothiazol Derivatives |
|---|---|
| Authors | Rinchi Bora; Durga Prasad Kemisetti; Faruk Alam; Alindam Ghosh; Avik Dutta; Sarbani Roy; Moidul Islam Judder |
| Affiliations | Faculty of Pharmaceutical Science, Assam Down Town University, Panikhaiti, Guwahati, Assam, INDIA.; DMBH Institute of Medical Science, Dadpur, Puinan, Hooghly, West Bengal, INDIA.; Department of Pharmacology, Mata Gujri College of Pharmacy, Purabpali Road, Kishanganj, Bihar, INDIA.; Royal School of Pharmacy, The Assam Royal Global University, Betkuchi, Guwahati, Assam, INDIA. |
| Corresponding author | faruk_2007a@rediffmail.com |
| Journal | Journal of Young Pharmacists |
| Volume / Issue | Vol. 17, Issue 1 (2025) |
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