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A Combined Experimental and Theoretical Study of Nitrofuran Antibiotics: Crystal Structures, DFT Computations, Sublimation and Solution Thermodynamics

Overview
Journal Molecules
Publisher MDPI
Specialty Biology
Date 2021 Jul 2
PMID 34198944
Citations 4
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Abstract

Single crystal of furazolidone (FZL) has been successfully obtained, and its crystal structure has been determined. Common and distinctive features of furazolidone and nitrofurantoin (NFT) crystal packing have been discussed. Combined use of QTAIMC and Hirshfeld surface analysis allowed characterizing the non-covalent interactions in both crystals. Thermophysical characteristics and decomposition of NFT and FZL have been studied by differential scanning calorimetry (DSC), thermogravimetric analysis (TG) and mass-spectrometry. The saturated vapor pressures of the compounds have been measured using the transpiration method, and the standard thermodynamic functions of sublimation were calculated. It was revealed that the sublimation enthalpy and Gibbs energy of NFT are both higher than those for FZL, but a gain in the crystal lattice energy of NFT is leveled by an entropy increase. The solubility processes of the studied compounds in buffer solutions with pH 2.0, 7.4 and in 1-octanol was investigated at four temperatures from 298.15 to 313.15 K by the saturation shake-flask method. The thermodynamic functions of the dissolution and solvation processes of the studied compounds have been calculated based on the experimental data. Due to the fact that NFT is unstable in buffer solutions and undergoes a solution-mediated transformation from an anhydrate form to monohydrate in the solid state, the thermophysical characteristics and dissolution thermodynamics of the monohydrate were also investigated. It was demonstrated that a combination of experimental and theoretical methods allows performing an in-depth study of the relationships between the molecular and crystal structure and pharmaceutically relevant properties of nitrofuran antibiotics.

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References
1.
Chen L, CADWALLADER D, Jun H . Nitrofurantoin solubility in aqueous urea and creatinine solutions. J Pharm Sci. 1976; 65(6):868-72. DOI: 10.1002/jps.2600650617. View

2.
Sarvi S, Crispin R, Lu Y, Zeng L, Hurley T, Houston D . ALDH1 Bio-activates Nifuroxazide to Eradicate ALDH Melanoma-Initiating Cells. Cell Chem Biol. 2018; 25(12):1456-1469.e6. PMC: 6309505. DOI: 10.1016/j.chembiol.2018.09.005. View

3.
Pascale F, Zicovich-Wilson C, Lopez Gejo F, Civalleri B, Orlando R, Dovesi R . The calculation of the vibrational frequencies of crystalline compounds and its implementation in the CRYSTAL code. J Comput Chem. 2004; 25(6):888-97. DOI: 10.1002/jcc.20019. View

4.
Jiang X, Sun L, Qiu J, Sun X, Li S, Wang X . A novel application of furazolidone: anti-leukemic activity in acute myeloid leukemia. PLoS One. 2013; 8(8):e72335. PMC: 3739762. DOI: 10.1371/journal.pone.0072335. View

5.
Grimme S, Ehrlich S, Goerigk L . Effect of the damping function in dispersion corrected density functional theory. J Comput Chem. 2011; 32(7):1456-65. DOI: 10.1002/jcc.21759. View