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Synthesis, crystal structure and in silico studies of novel 2,4-dimethoxy-tetrahydropyrimido[4,5-b]quinolin-6(7H)-ones.
Patel, Subham G; Vala, Ruturajsinh M; Patel, Paras J; Upadhyay, Dipti B; Ramkumar, V; Gardas, Ramesh L; Patel, Hitendra M.
Affiliation
  • Patel SG; Department of Chemistry, Sardar Patel University Vallabh Vidyanagar 388120 Gujarat India hm_patel@spuvvn.edu.
  • Vala RM; Department of Chemistry, Sardar Patel University Vallabh Vidyanagar 388120 Gujarat India hm_patel@spuvvn.edu.
  • Patel PJ; Department of Chemistry, Sardar Patel University Vallabh Vidyanagar 388120 Gujarat India hm_patel@spuvvn.edu.
  • Upadhyay DB; Department of Chemistry, Sardar Patel University Vallabh Vidyanagar 388120 Gujarat India hm_patel@spuvvn.edu.
  • Ramkumar V; Department of Chemistry, Indian Institute of Technology, Madras India.
  • Gardas RL; Department of Chemistry, Indian Institute of Technology, Madras India.
  • Patel HM; Department of Chemistry, Sardar Patel University Vallabh Vidyanagar 388120 Gujarat India hm_patel@spuvvn.edu.
RSC Adv ; 12(29): 18806-18820, 2022 Jun 22.
Article in En | MEDLINE | ID: mdl-35873341
ABSTRACT
Herein, acetic acid mediated multicomponent synthesis of novel 2,4-dimethoxy-tetrahydropyrimido[4,5-b]quinolin-6(7H)-one (2,4-dimethoxy-THPQs) was reported. Single-crystal XRD analysis of four newly developed crystals of 2,4-dimethoxy-THPQs and their DFT study were also reported. The structure of all molecules was optimized using DFT B3LYP/6-31G(d) level and compared with the corresponding single-crystal XRD data. As a result, the theoretical and experimental geometrical parameters (bond lengths and bond angles) were found to be in good agreement. Frontier molecular orbital (FMO) and molecule electrostatic potential (MEP) analyses were used to investigate the physicochemical properties and relative reactivity of 2,4-dimethoxy-THPQs. The formation of strong C-H⋯O and N-H⋯O interaction was investigated by Hirshfeld analysis. Furthermore, electronic charge density concentration in 2,4-dimethoxy-THPQs was analysed by the Mulliken atomic charges which helps to predict the ability of 2,4-dimethoxy-THPQs to bind in the receptor. The molecular docking of the crystal structure of 2,4-dimethoxy-THPQs in the main protease (Mpro) of SARS-CoV-2 suggested that all four 2,4-dimethoxy-THPQs efficiently docked in Mpro. Furthermore, 2,4-dimethoxy-THPQs with a 3-chloro substitution in the phenyl ring have the highest binding affinity because of the additional formation of halogen bonds and highest dipole moment.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: RSC Adv Year: 2022 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: RSC Adv Year: 2022 Document type: Article
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