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N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities

In the search for new ‘sulfa drugs’ with therapeutic properties, o-nitro­sul­fonamides and N-cyclo­amino-o-sul­fan­il­amides were synthesized and characterized using techniques including (1)H NMR, (13)C NMR and FT–IR spectroscopy, and single-crystal X-ray diffraction (SC-XRD). The calculated density...

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Autores principales: Kolade, Sherif O., Izunobi, Josephat U., Gordon, Allen T., Hosten, Eric C., Olasupo, Idris A., Ogunlaja, Adeniyi S., Asekun, Olayinka T., Familoni, Oluwole B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9720883/
https://www.ncbi.nlm.nih.gov/pubmed/36468556
http://dx.doi.org/10.1107/S2053229622010130
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author Kolade, Sherif O.
Izunobi, Josephat U.
Gordon, Allen T.
Hosten, Eric C.
Olasupo, Idris A.
Ogunlaja, Adeniyi S.
Asekun, Olayinka T.
Familoni, Oluwole B.
author_facet Kolade, Sherif O.
Izunobi, Josephat U.
Gordon, Allen T.
Hosten, Eric C.
Olasupo, Idris A.
Ogunlaja, Adeniyi S.
Asekun, Olayinka T.
Familoni, Oluwole B.
author_sort Kolade, Sherif O.
collection PubMed
description In the search for new ‘sulfa drugs’ with therapeutic properties, o-nitro­sul­fonamides and N-cyclo­amino-o-sul­fan­il­amides were synthesized and characterized using techniques including (1)H NMR, (13)C NMR and FT–IR spectroscopy, and single-crystal X-ray diffraction (SC-XRD). The calculated density functional theory (DFT)-optimized geometry of the mol­ecules showed similar conformations to those obtained by SC-XRD. Mol­ecular docking of N-piperidinyl-o-sul­fan­il­amide and N-indolinyl-o-sul­fan­il­amide supports the notion that o-sul­fan­il­amides are able to bind to human carbonic anhydrase II and IX inhibitors (hCA II and IX; PDB entries 4iwz and 5fl4). Hirshfeld surface analyses and DFT studies of three o-nitro­sul­fonamides {1-[(2-nitro­phen­yl)sul­fon­yl]pyrrolidine, C(10)H(12)N(2)O(4)S, 1, 1-[(2-nitro­phen­yl)sul­fon­yl]piperidine, C(11)H(14)N(2)O(4)S, 2, and 1-[(2-nitro­phen­yl)sul­fon­yl]-2,3-di­hydro-1H-indole, C(14)H(12)N(2)O(4)S, 3} and three N-cyclo­amino-o-sul­fan­il­amides [2-(pyrrolidine-1-sul­fon­yl)aniline, C(10)H(14)N(2)O(2)S, 4, 2-(piperidine-1-sul­fon­yl)aniline, C(11)H(16)N(2)O(2)S, 5, and 2-(2,3-di­hydro-1H-indole-1-sul­fon­yl)aniline, C(14)H(14)N(2)O(2)S, 6] suggested that forces such as hydro­gen bonding and π–π inter­actions hold mol­ecules together and further showed that charge transfer could promote bioactivity and the ability to form biological inter­actions at the piperidinyl and phenyl moieties.
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spelling pubmed-97208832022-12-22 N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities Kolade, Sherif O. Izunobi, Josephat U. Gordon, Allen T. Hosten, Eric C. Olasupo, Idris A. Ogunlaja, Adeniyi S. Asekun, Olayinka T. Familoni, Oluwole B. Acta Crystallogr C Struct Chem Research Papers In the search for new ‘sulfa drugs’ with therapeutic properties, o-nitro­sul­fonamides and N-cyclo­amino-o-sul­fan­il­amides were synthesized and characterized using techniques including (1)H NMR, (13)C NMR and FT–IR spectroscopy, and single-crystal X-ray diffraction (SC-XRD). The calculated density functional theory (DFT)-optimized geometry of the mol­ecules showed similar conformations to those obtained by SC-XRD. Mol­ecular docking of N-piperidinyl-o-sul­fan­il­amide and N-indolinyl-o-sul­fan­il­amide supports the notion that o-sul­fan­il­amides are able to bind to human carbonic anhydrase II and IX inhibitors (hCA II and IX; PDB entries 4iwz and 5fl4). Hirshfeld surface analyses and DFT studies of three o-nitro­sul­fonamides {1-[(2-nitro­phen­yl)sul­fon­yl]pyrrolidine, C(10)H(12)N(2)O(4)S, 1, 1-[(2-nitro­phen­yl)sul­fon­yl]piperidine, C(11)H(14)N(2)O(4)S, 2, and 1-[(2-nitro­phen­yl)sul­fon­yl]-2,3-di­hydro-1H-indole, C(14)H(12)N(2)O(4)S, 3} and three N-cyclo­amino-o-sul­fan­il­amides [2-(pyrrolidine-1-sul­fon­yl)aniline, C(10)H(14)N(2)O(2)S, 4, 2-(piperidine-1-sul­fon­yl)aniline, C(11)H(16)N(2)O(2)S, 5, and 2-(2,3-di­hydro-1H-indole-1-sul­fon­yl)aniline, C(14)H(14)N(2)O(2)S, 6] suggested that forces such as hydro­gen bonding and π–π inter­actions hold mol­ecules together and further showed that charge transfer could promote bioactivity and the ability to form biological inter­actions at the piperidinyl and phenyl moieties. International Union of Crystallography 2022-11-08 /pmc/articles/PMC9720883/ /pubmed/36468556 http://dx.doi.org/10.1107/S2053229622010130 Text en © Kolade et al. 2022 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Kolade, Sherif O.
Izunobi, Josephat U.
Gordon, Allen T.
Hosten, Eric C.
Olasupo, Idris A.
Ogunlaja, Adeniyi S.
Asekun, Olayinka T.
Familoni, Oluwole B.
N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities
title N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities
title_full N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities
title_fullStr N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities
title_full_unstemmed N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities
title_short N-Cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase II and IX inhibitory activities
title_sort n-cyclo­amino substituent effects on the packing architecture of ortho-sul­fan­il­amide mol­ecular crystals and their in silico carbonic anhydrase ii and ix inhibitory activities
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9720883/
https://www.ncbi.nlm.nih.gov/pubmed/36468556
http://dx.doi.org/10.1107/S2053229622010130
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