Evidence map›Paper›PMID 42533249›Full record

ArticlePharmaceutical research2026

Syn-Anti Conformational Equilibrium of Indomethacin: A Combined NOESY and Quantum Chemical Study.

Aleksey Kovalev, Konstantin Belov, Yoshio Barrera, Savaş Kaya, Ilya Khodov

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Article in Pharmaceutical research, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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5 authors.

Aleksey KovalevG.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, Ivanovo, 153045, Russia.
Konstantin BelovG.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, Ivanovo, 153045, Russia.
Yoshio BarreraInstituto de Química, Universidad Nacional Autónoma de México, Mexico City, 04510, Mexico.
Savaş KayaFaculty of Science, Department of Chemistry, Sivas Cumhuriyet University, Sivas, 58140, Turkey. savaskaya@cumhuriyet.edu.tr.
Ilya KhodovG.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, Ivanovo, 153045, Russia. ilya.khodov@gmail.com.ORCID http://orcid.org/0000-0003-2439-9290

Funding

Russian Science Foundation 22-13-00257-П
6 · The paper itself

Abstract

purposeTo elucidate the conformational equilibrium of Indomethacin in solution and to establish its relationship with solvent environment and solid-state polymorphism.

methodsA combined experimental-computational approach was employed. One- and two-dimensional NOESY NMR spectroscopy were used to quantify cross-relaxation rates and derive conformation-sensitive internuclear distances in DMSO-d6 and CDCl3. Conformer populations were determined using the initial rate approximation and isolated spin-pair approximation. Quantum-chemical calculations based on Density Functional Theory (B3LYP-D3(BJ)/def2-TZVP, SMD solvation model) were performed to evaluate conformer energetics and solvent effects.

resultsTwo conformer families, syn- and anti-, were identified as key structural motifs governing indomethacin behavior. InDMSO-d6, the syn-conformer dominates (80.8%), whereas in CDCl3 the equilibrium shifts toward nearly equal populations (51.5% syn, 48.5% anti), revealing a strong solvent-dependent effect. Experimentally derived NOESY distances showed excellent agreement with computed geometries. DFT calculations confirmed the energetic preference of syn-type conformers while demonstrating significant solvent-induced changes in relative stability. Importantly, a direct correlation between solution-phase conformational equilibrium and known polymorphic forms was established.

conclusionThis study demonstrates that solvent-controlled conformational equilibria play a probable role in determining the solid-state forms of indomethacin. The integrated NOESY-DFT methodology provides a robust and quantitative framework for conformational analysis and offers a predictive tool for rational design and optimization of pharmaceutical solid forms.

Indexed as

conformational analysiscross-relaxation ratesdensity functional theorydrug solid formsindomethacinNOESY NMRpolymorphismsolvent effects

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