Methods for the Anti-inflammatory Synthesis, Molecular Modeling, and Biological Evaluation of Novel Pyrimidine Derivatives

Authors

  • Ms. M. Jyothi Department of Pharmaceutical Analysis, Approved by AICTE& Pharmacy Council of India, New Delhi.(Affiliated to jawahalal Nehru Technological University. Anantapur&S.B.T.E.T.A.P) Chennai-Hyderabad By Pass Road, Ukkayapalli, Kadapa-516002. Author
  • Mr. K. Naga Surendra Department of Pharmaceutical Analysis, Approved by AICTE& Pharmacy Council of India, New Delhi.(Affiliated to jawahalal Nehru Technological University. Anantapur & S.B.T.E.T.A.P) Chennai-Hyderabad By Pass Road, Ukkayapalli, Kadapa-516002. Author
  • Ms. A. Padmavathi Department of Pharmaceutical Analysis, Approved by AICTE& Pharmacy Council of India, New Delhi.(Affiliated to jawahalal Nehru Technological University. Anantapur & S.B.T.E.T.A.P) Chennai-Hyderabad By Pass Road, Ukkayapalli, Kadapa-516002. Author
  • Mr. K. Mahendranath Department of Pharmaceutical Analysis, Approved by AICTE& Pharmacy Council of India, New Delhi.(Affiliated to jawahalal Nehru Technological University. Anantapur & S.B.T.E.T.A.P) Chennai-Hyderabad By Pass Road, Ukkayapalli, Kadapa-516002. Author
  • Ms. K. Sai Sireesha Department of Pharmaceutical Analysis, Approved by AICTE& Pharmacy Council of India, New Delhi.(Affiliated to jawahalal Nehru Technological University. Anantapur & S.B.T.E.T.A.P) Chennai-Hyderabad By Pass Road, Ukkayapalli, Kadapa-516002. Author
  • Dr. C.H. Rajaharanadha babu Department of Pharmaceutical Analysis, Approved by AICTE& Pharmacy Council of India, New Delhi.(Affiliated to jawahalal Nehru Technological University. Anantapur & S.B.T.E.T.A.P) Chennai-Hyderabad By Pass Road, Ukkayapalli, Kadapa-516002. Author

DOI:

https://doi.org/10.62649/

Keywords:

Anti-inflammatory; biginelli; cyclooxygenase inhibition; molecular docking; pyrimidine; SAR.

Abstract

The 2-thioxo-1,2,3,4- tetrahydropyrimidine derivative 1 was synthesized using direct Biginelli condensation, and it was then employed in the synthesis of a novel series of pyrimidin-2-thione derivatives (2a-d to 7a-b) with the goal of generating new anti-inflammatory medicines. Using the carrageenan-induced rat paw edema test, we compared the anti-inflammatory effects of each chemical to those of ibuprofen, the gold standard in this field. SYBLYL-X v.2.1 was used for the molecular docking analyses. Docking tests demonstrate strong agreement with anti-inflammatory findings, and a sequence of pyrimidine derivatives made using a simple and readily accessible approach leads to a molecule with promise anti inflammatory action. To confirm the significance of these novel compounds for diverse applications, more study is needed.  Location and Timing of Education: Faculty of Pharmacy, Helwan University, Cairo, Egypt, Department of Pharmaceutical Organic Chemistry and Department of Pharmacology and Toxicology, February 2018 – March 2019. The compounds had anti-inflammatory effectiveness ranging from 61% to 86%, with ibuprofen performing at 69%. At 4 hours post-carrageenan, compounds 2a, 2b, 2c, 2d, 3a, 3b, 3c, 3d, 7a, 7b exhibited substantially different levels of anti-inflammatory action compared to ibuprofen.

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Published

2018-09-13

How to Cite

Methods for the Anti-inflammatory Synthesis, Molecular Modeling, and Biological Evaluation of Novel Pyrimidine Derivatives . (2018). Indo-American Journal of Agricultural and Veterinary Sciences, 6(3), 1-19. https://doi.org/10.62649/

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