Utvidet returrett til 31. januar 2025

INTERACTION OF FAVIPIRAVIR AND RIBAVIRIN COMPOUNDS WITH DNA BASES

Om INTERACTION OF FAVIPIRAVIR AND RIBAVIRIN COMPOUNDS WITH DNA BASES

Different properties of the molecular structures of favipiravir and ribavirin, which are used in the treatment of SARS-CoV-2 and also needed in the treatment of coronavirus disease (COVID-19) in recent years, have been investigated using Density Functional Theory (DFT) B3LYP/6-311G(d, p) and 6-311+G(d, p) methods. The geometrical optimization of the molecular structures of favipiravir and ribavirin was made in the ground state, gas, and water solvent environments, the bond parameters were obtained and the theoretical results were compared with the values in the literature. By obtaining molecular orbital energy values from energy calculations, global reactivity parameters such as electron affinity, electronegativity, chemical potential, chemical hardness, softness, and electrophilicity index were obtained for both environments. The interactions between adenine, guanine, cytosine, and thymine DNA bases and the molecular structures of favipiravir and ribavirin were investigated in water with the help of two parameters such as ¿N (charge transfer) and ECT (electrophilicity-based charge transfer) using global reactivity values.

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  • Språk:
  • Engelsk
  • ISBN:
  • 9786206845119
  • Bindende:
  • Paperback
  • Sider:
  • 76
  • Utgitt:
  • 24. desember 2023
  • Dimensjoner:
  • 150x5x220 mm.
  • Vekt:
  • 131 g.
  • BLACK NOVEMBER
  Gratis frakt
Leveringstid: 2-4 uker
Forventet levering: 22. desember 2024
Utvidet returrett til 31. januar 2025

Beskrivelse av INTERACTION OF FAVIPIRAVIR AND RIBAVIRIN COMPOUNDS WITH DNA BASES

Different properties of the molecular structures of favipiravir and ribavirin, which are used in the treatment of SARS-CoV-2 and also needed in the treatment of coronavirus disease (COVID-19) in recent years, have been investigated using Density Functional Theory (DFT) B3LYP/6-311G(d, p) and 6-311+G(d, p) methods. The geometrical optimization of the molecular structures of favipiravir and ribavirin was made in the ground state, gas, and water solvent environments, the bond parameters were obtained and the theoretical results were compared with the values in the literature. By obtaining molecular orbital energy values from energy calculations, global reactivity parameters such as electron affinity, electronegativity, chemical potential, chemical hardness, softness, and electrophilicity index were obtained for both environments. The interactions between adenine, guanine, cytosine, and thymine DNA bases and the molecular structures of favipiravir and ribavirin were investigated in water with the help of two parameters such as ¿N (charge transfer) and ECT (electrophilicity-based charge transfer) using global reactivity values.

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