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Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals

The design of novel supramolecular synthons for functional groups relevant to drugs is an essential prerequisite for applying crystal engineering in the development of novel pharmaceutical cocrystals. It has been convincingly shown over the past decade that molecular level control and modulation can...

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Autores principales: Bolla, Geetha, Mittapalli, Sudhir, Nangia, Ashwini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4491311/
https://www.ncbi.nlm.nih.gov/pubmed/26175899
http://dx.doi.org/10.1107/S2052252515004960
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author Bolla, Geetha
Mittapalli, Sudhir
Nangia, Ashwini
author_facet Bolla, Geetha
Mittapalli, Sudhir
Nangia, Ashwini
author_sort Bolla, Geetha
collection PubMed
description The design of novel supramolecular synthons for functional groups relevant to drugs is an essential prerequisite for applying crystal engineering in the development of novel pharmaceutical cocrystals. It has been convincingly shown over the past decade that molecular level control and modulation can influence the physicochemical properties of drug cocrystals. Whereas considerable advances have been reported on the design of cocrystals for carboxylic acids and carboxamide functional groups, the sulfonamide group, which is a cornerstone of sulfa drugs, is relatively unexplored for reproducible heterosynthon-directed crystal engineering. The occurrence of synthons and isostructurality in sulfonamide–lactam cocrystals (SO(2)NH(2)⋯CONH hydrogen bonding) is analyzed to define a strategy for amide-type GRAS (generally recognized as safe) coformers with sulfonamides. Three types of supramolecular synthons are identified for the N—H donor of sulfonamide hydrogen bonding to the C=O acceptor of amide. Synthon 1: catemer synthon C (2) (1)(4) chain motif, synthon 2: dimer–cyclic ring synthon R (2) (2)(8)R (4) (2)(8) motifs, and synthon 3: dimer–catemer synthon of R (2) (2)(8)C (1) (1)(4)D notation. These heterosynthons of the cocrystals observed in this study are compared with the N—H⋯O dimer R (2) (2)(8) ring and C(4) chain motifs of the individual sulfonamide structures. The X-ray crystal structures of sulfonamide–lactam cocrystals exhibit interesting isostructurality trends with the same synthon being present. One-dimensional, two-dimensional and three-dimensional isostructurality in crystal structures is associated with isosynthons and due to their recurrence, novel heterosynthons for sulfonamide cocrystals are added to the crystal engineer’s toolkit. With the predominance of sulfa drugs in medicine, these new synthons provide rational strategies for the design of binary and potentially ternary cocrystals of sulfonamides.
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spelling pubmed-44913112015-07-14 Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals Bolla, Geetha Mittapalli, Sudhir Nangia, Ashwini IUCrJ Research Papers The design of novel supramolecular synthons for functional groups relevant to drugs is an essential prerequisite for applying crystal engineering in the development of novel pharmaceutical cocrystals. It has been convincingly shown over the past decade that molecular level control and modulation can influence the physicochemical properties of drug cocrystals. Whereas considerable advances have been reported on the design of cocrystals for carboxylic acids and carboxamide functional groups, the sulfonamide group, which is a cornerstone of sulfa drugs, is relatively unexplored for reproducible heterosynthon-directed crystal engineering. The occurrence of synthons and isostructurality in sulfonamide–lactam cocrystals (SO(2)NH(2)⋯CONH hydrogen bonding) is analyzed to define a strategy for amide-type GRAS (generally recognized as safe) coformers with sulfonamides. Three types of supramolecular synthons are identified for the N—H donor of sulfonamide hydrogen bonding to the C=O acceptor of amide. Synthon 1: catemer synthon C (2) (1)(4) chain motif, synthon 2: dimer–cyclic ring synthon R (2) (2)(8)R (4) (2)(8) motifs, and synthon 3: dimer–catemer synthon of R (2) (2)(8)C (1) (1)(4)D notation. These heterosynthons of the cocrystals observed in this study are compared with the N—H⋯O dimer R (2) (2)(8) ring and C(4) chain motifs of the individual sulfonamide structures. The X-ray crystal structures of sulfonamide–lactam cocrystals exhibit interesting isostructurality trends with the same synthon being present. One-dimensional, two-dimensional and three-dimensional isostructurality in crystal structures is associated with isosynthons and due to their recurrence, novel heterosynthons for sulfonamide cocrystals are added to the crystal engineer’s toolkit. With the predominance of sulfa drugs in medicine, these new synthons provide rational strategies for the design of binary and potentially ternary cocrystals of sulfonamides. International Union of Crystallography 2015-05-01 /pmc/articles/PMC4491311/ /pubmed/26175899 http://dx.doi.org/10.1107/S2052252515004960 Text en © Geetha Bolla et al. 2015 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Bolla, Geetha
Mittapalli, Sudhir
Nangia, Ashwini
Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals
title Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals
title_full Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals
title_fullStr Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals
title_full_unstemmed Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals
title_short Modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals
title_sort modularity and three-dimensional isostructurality of novel synthons in sulfonamide–lactam cocrystals
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4491311/
https://www.ncbi.nlm.nih.gov/pubmed/26175899
http://dx.doi.org/10.1107/S2052252515004960
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