Ultra-fast LC was used to establish a new bioanalytical method for enantiomeric separation of oxomemazine. The proposed study was carried out using the ultra-fast LC technique with an amylose chiral column. The bioanalytical approach was used in rabbit plasma following US FDA regulations and then extended to oxomemazine enantiomeric separation using metronidazole as the internal standard. The retention times of ()-oxomemazine, ()-oxomemazine and the internal standard were found to be 9.511, 10.712 and 6.503 min, respectively. Within-run and between-run precision (percent relative standard deviation) was found to be in the range of 0.018-0.102% for ()-oxomemazine and 0.028-0.675% for ()-oxomemazine, whereas accuracy (%) was found to be in the range of 95.971-99.720% for ()-oxomemazine and 97.199-103.921% for ()-oxomemazine. The findings revealed that stereospecific distribution of oxomemazine enantiomers does not change significantly.
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http://dx.doi.org/10.4155/bio-2022-0008 | DOI Listing |
Chirality
January 2025
Department of Chemistry, Shyam Lal College, University of Delhi, New Delhi, India.
Enantiomeric analysis of chiral drugs is very significant, as their enantiomers display different pharmacological or toxicological behavior towards living systems. Among these drugs, β-blockers are available as racemates, where their enantiomers display different pharmacological effects. Herein, we report enantioselective separation of two β-blockers, namely, atenolol and sotalol, using a derivatization approach.
View Article and Find Full Text PDFChem Commun (Camb)
January 2025
Institut de Química Computacional i Catàlisi (IQCC), Universitat de Girona, Maria Aurèlia Capmany 69, 17003 Girona, Spain.
Discrimination of enantiomeric substrate molecules is one of the fundamental properties of biological hosts. Replicating enantioselective molecular recognition with synthetic receptors is a topic of interest with implications in diverse applications such as bioinspired enantioselective catalysis, enantiomer separation, or sensing. In this review, five different systems reported in the literature are discussed, and their performance and versatility are analyzed.
View Article and Find Full Text PDFJ Chromatogr A
December 2024
I. U. CINQUIMA, Analytical Chemistry Group (TESEA), Dept. Analytical Chemistry, Faculty of Sciences, University of Valladolid 47011, Valladolid, Spain. Electronic address:
The simultaneous separation of the enantiomers of six anticoagulant rodenticides, derived from 4-hydroxycoumarin, has been studied in this work. Ten different stationary phases (zwitterionic, Pirkle-type, polysaccharides and macrocyclic antibiotics derivatives) were evaluated by using supercritical fluid chromatography coupled to two different detectors (circular dichroism and mass spectrometry-single quadrupole). The effect of the type of organic modifier and temperature on the chiral separation was investigated, and the best results were obtained with the column Regis S,S-Whelk-O1 at 25 °C when using a gradient elution program with methanol as organic modifier.
View Article and Find Full Text PDFInt J Mol Sci
November 2024
Department of Drug Sciences, University of Pavia, Viale Taramelli 12, 27100 Pavia, Italy.
The 1,3-dithiolane ring has been recently rehabilitated as a chemical scaffold in drug design. However, for derivatives that are substituted in position 4, the introduction of a chiral center on the heterocycle demands the separation and characterization of the stereoisomers. We report the first chiral resolution and absolute configuration (AC) assignment for (1,4-dithiaspiro[4.
View Article and Find Full Text PDFMolecules
December 2024
Faculty of Medicine, The John Paul II Catholic University of Lublin, Konstantynów 1J/4.03, 20-708 Lublin, Poland.
Improved methods for the synthesis of nicotine are of great importance due to the wide range of applications of synthetic nicotine, which is free from contamination with nitrosamines. Herein, we present a four-step chemical synthesis of ()-nicotine, involving the reduction in myosmine, enantiomeric separation of nornicotine, and subsequent methylation of the appropriate enantiomer of nornicotine obtained. The reduction in myosmine was investigated using both electrochemical and chemical approaches, achieving up to 90% yields of pure nornicotine.
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