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  2. Design and synthesis of new dihydropyrimidine/sulphonamide hybrids as promising anti-inflammatory agents via dual mPGES-1/5-LOX inhibition

Design and synthesis of new dihydropyrimidine/sulphonamide hybrids as promising anti-inflammatory agents via dual mPGES-1/5-LOX inhibition

  • Front Chem. 2024 May 10:12:1387923. doi: 10.3389/fchem.2024.1387923.
Lamya H Al-Wahaibi 1 Ali M Elshamsy 2 Taha F S Ali 3 Bahaa G M Youssif 4 S Bräse 5 Mohamed Abdel-Aziz 3 Nawal A El-Koussi 2 6
Affiliations

Affiliations

  • 1 Department of Chemistry, College of Sciences, Princess Nourah Bint Abdulrahman University, Riyadh, Saudi Arabia.
  • 2 Medicinal Chemistry Department, Faculty of Pharmacy, Deraya University, Minya, Egypt.
  • 3 Medicinal Chemistry Department, Faculty of Pharmacy, Minia University, Minya, Egypt.
  • 4 Department of Pharmaceutical Organic Chemistry, Faculty of Pharmacy, Assiut University, Minya, Egypt.
  • 5 Institute of Biological and Chemical Systems, IBCS-FMS, Karlsruhe Institute of Technology, Karlsruhe, Germany.
  • 6 Department of Medicinal Chemistry, Faculty of Pharmacy, Assiut University, Assiut, Egypt.
Abstract

A novel series of dihydropyrimidine/sulphonamide hybrids 3a-j with anti-inflammatory properties have been developed and tested as dual mPGES-1/5-LOX inhibitors. In vitro assay, results showed that compounds 3c, 3e, 3h, and 3j were the most effective dual inhibitors of mPGES-1 and 5-LOX activities. Compound 3j was the most potent dual inhibitor with IC50 values of 0.92 µM and 1.98 µM, respectively. In vivo, anti-inflammatory studies demonstrated that compounds 3c, 3e, 3h, and 3e had considerable anti-inflammatory activity, with EI% ranging from 29% to 71%. Compounds 3e and 3j were equivalent to celecoxib after the first hour but exhibited stronger anti-inflammatory effects than celecoxib after the third and fifth hours. Moreover, compounds 3e and 3j significantly reduced the levels of pro-inflammatory cytokines (PGE2, TNF-α, and IL-6) with gastrointestinal safety profiles. Molecular docking simulations explored the most potent derivatives' binding affinities and interaction patterns within mPGES-1 and 5-LOX active sites. This study disclosed that compound 3j is a promising anti-inflammatory lead with dual mPGES-1/5-LOX inhibition that deserves further preclinical investigation.

Keywords

inflammation; lipoxygenase; prostaglandin; pyrimidine; sulphonamide.

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