Abstract
Knowledge about the absolute configuration of small bioactive organic molecules is essential in pharmaceutical research because enantiomers can exhibit considerably different effects on living organisms. X-ray crystallography enables chemists to determine the absolute configuration of an enantiopure compound due to anomalous dispersion. Here, we present the determination of the absolute configuration of the flavoring agent (+)-γ-decalactone, which is liquid under ambient conditions. Single crystals were grown from the liquid in a glass capillary by in situ cryo-crystallization. Diffraction data collection was performed using Cu-Kα radiation. The absolute configuration was confirmed. The molecule consists of a linear aliphatic non-polar backbone and a polar lactone head. In the solid state, layers of polar and non-polar sections of the molecule alternating along the c-axis of the unit cell are observed. In favorable cases, this method of absolute configuration determination of pure liquid (bioactive) agents or liquid products from asymmetric catalysis is a convenient alternative to conventional methods of absolute structure determination, such as optical rotatory dispersion, vibrational circular dichroism, ultraviolet-visible spectroscopy, use of chiral shift reagents in proton NMR and Coulomb explosion imaging.
Reference20 articles.
1. Review of chirality and its importance in pharmacology
2. Role of Chirality in Drugs;Jayakumar;Org. Med. Chem. Int. J.,2018
3. Chirotechnology: Designing economic chiral syntheses;Sheldon;J. Chem. Technol. Biotechnol. Int. Res. Process Environ. AND Clean Technol.,1996
4. Enantiodifferentiation in taste perception of isovanillic derivatives
5. Chirality and the Nature of Food Authenticity of Aroma;Zawirska-Wojtasiak;Acta Sci. Pol. Technol. Aliment.,2006
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