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The molecular and crystal structures of six compounds containing sulfonamide moieties are described. It has been shown that the geometric parameters of the sulfonamide group depend little on the nature of the substituents. Their bond lengths and bond angles remain almost the same and are in good accordance with those known from the literature. In crystals, depending on the type of substituents the molecules exist in the form of either monomers or dimers joined by intermolecular hydrogen bonds involving sulfonamide fragments. Introduction of large substituents into the molecules changes the way of packing of the studied sulfonamides and decreases the number of intermolecular hydrogen bonds in the crystals. The value of this dihedral angle may affect the nature and strength of the intermolecular bonding of the species in crystals. analyses predicted low toxicity and potential enzyme inhibition, along with antiprotozoal properties, suggesting these compounds as candidates against protozoan pathogens. Molecular docking confirmed inhibitory potential against trypanothione reductase, supporting antiprotozoal activity. Consequently, these compounds may serve as promising lead-like molecules for drug development targeting protozoan infections.
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http://dx.doi.org/10.1098/rsos.241402 | DOI Listing |
Bioorg Chem
September 2025
Aix Marseille Univ., CNRS UMR 7325 Centre Interdisciplinaire de Nanoscience de Marseille (CINaM), Campus de Luminy, 13288 Marseille cedex 09, France. Electronic address:
In the field of theranostics, triaminophenaziniums are promising molecules due to their intrinsic properties such as an absorbance beyond 500 nm associated with large molar extinction coefficients, high fluorescence quantum yields, as well as phototoxicity. This study explored how three triaminophenazinium salts relate in structure and activity, highlighting their potential as theranostic agents. The nature of the moiety in position 2 of the dyes was varied from H, to -CH or -Bu.
View Article and Find Full Text PDFChem Asian J
September 2025
School of Chemistry and Chemical Engineering, Hainan University, Haikou, 570228, China.
Molecules that exhibit excited-state intramolecular proton transfer (ESIPT) have demonstrated great promise in fluorescent probes. The electronic effect of substituents has an important influence on the ESIPT process. In this study, we investigated the effects of substituents on the ESIPT mechanism and the photophysical behavior of single-benzene fluorophore (SBF) derivatives with computational chemistry methods.
View Article and Find Full Text PDFActa Crystallogr E Crystallogr Commun
September 2025
Department of Chemistry, Tulane University, 6400 Freret Street, New Orleans, Louisiana 70118-5698, USA.
The crystal structure of the title compound, [Ni(CHFS)] (), reveals averaged S-C [1.708 (2) Å] and C-C [1.395 (4) Å] bond lengths that are consistent with radical monoanionic ligands paired with a divalent Ni ion.
View Article and Find Full Text PDFActa Crystallogr E Crystallogr Commun
September 2025
In the title mol-ecule, 3-ethyl-2-(methyl-sulfan-yl)-5,5-diphenyl-3-imidazol-4(5)-one, CHNOS, the two substituent phenyl rings are inclined of 59.50 (7) and 83.53 (8)° with respect to the plane of the five-membered ring.
View Article and Find Full Text PDFIUCrdata
August 2025
Department of Chemistry Louisiana State University,Baton Rouge Louisiana 70803 USA.
In the title compound, CHClNO, the acetamide substituent is twisted out of the phenyl plane, forming a dihedral angle of 58.61 (7)°. In the extended structure, each mol-ecule donates two hydrogen bonds [N-H⋯O(carbon-yl) and O-H⋯O(carbon-yl)] and thus also accepts two such hydrogen bonds.
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