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February 2, 20260 citationsOpen Access

Tecovirimat-Related Substance: Characterization, Hirshfeld Analysis, Theoretical Study, In Silico Toxicity Assessment

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FWFengfeng WangXHXiaowen HuCZCaiyu Zhang

Key Points

  • The research aims to characterize new tecovirimat-related substances and assess their toxicity.
  • Characterization of crystal structures using single-crystal analysis.
  • Hirshfeld analysis for assessing intermolecular interactions.
  • Phase purity confirmed by PXRD.
  • DSC data used to analyze melting points and packing energies.
  • In silico genotoxicity assessment using Derek Nexus and Sarah Nexus.
  • Identified three new crystal structures of related compounds and described tecovirimat's structure.
  • Hirshfeld analysis quantified interactions, and PXRD confirmed high crystal purity.
  • Melting point order matched packing energies, indicating stability.
  • Compound 2 showed no genotoxicity alerts, while compounds 1 and 3 indicated potential risks.

Abstract

Crystal structures of 4- (trifluoromethyl) benzene-1-carbohydrazide (1), 4- (trifluoromethyl) -N’-4- (trifluoromethyl) phenylcarbonylbenzohydrazide (2) and (1R, 2S, 6R, 7S, 8S, 10R) -4- (4- (trifluoromethyl) phenylcarbonylamino) -4-azatetracyclo 5. 3. 2. 08, 10. 02, 6dodec-11-ene-3, 5-dione (3) were first reported. Besides the three new single-crystal structures, the single-crystal structure of tecovirimat (4) was also described herein. Hirshfeld analysis quantified intermolecular interactions, and PXRD confirmed high crystal phase purity. DSC data and packing energy calculations demonstrated that the melting point order matched the magnitude of packing energies for compounds with similar structures and analogous intermolecular interactions. According to the ICH M7 guidelines, in silico genotoxicity assessment using Derek Nexus and Sarah Nexus indicated that 2 showed no structural alerts for genotoxicity (ICH M7 Class 5), whereas 1 and 3 were classified as ICH M7 Class 3 due to structural features associated with potential genotoxicity, warranting further experimental evaluation.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6980ffb4c1c9540dea8126b3https://doi.org/10.3390/molecules31030502
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