macrocyclic glycopeptide
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Molecules ◽  
2021 ◽  
Vol 26 (11) ◽  
pp. 3380
Author(s):  
Róbert Berkecz ◽  
Dániel Tanács ◽  
Antal Péter ◽  
István Ilisz

Numerous chemical compounds of high practical importance, such as drugs, fertilizers, and food additives are being commercialized as racemic mixtures, although in most cases only one of the isomers possesses the desirable properties. As our understanding of the biological actions of chiral compounds has improved, the investigation of the pharmacological and toxicological properties has become more and more important. Chirality has become a major issue in the pharmaceutical industry; therefore, there is a continuous demand to extend the available analytical methods for enantiomeric separations and enhance their efficiency. Direct liquid chromatography methods based on the application of chiral stationary phases have become a very sophisticated field of enantiomeric separations by now. Hundreds of chiral stationary phases have been commercialized so far. Among these, macrocyclic glycopeptide-based chiral selectors have proved to be an exceptionally useful class of chiral selectors for the separation of enantiomers of biological and pharmacological importance. This review focuses on direct liquid chromatography-based enantiomer separations, applying macrocyclic glycopeptide-based chiral selectors. Special attention is paid to the characterization of the physico-chemical properties of these macrocyclic glycopeptide antibiotics providing detailed information on their applications published recently.



2021 ◽  
Vol 164 ◽  
pp. 105957
Author(s):  
Mariana da Silva Gonçalves ◽  
Daniel W. Armstrong ◽  
Lucio Mendes Cabral ◽  
Eduardo Costa Pinto ◽  
Valeria Pereira de Sousa


Molecules ◽  
2021 ◽  
Vol 26 (1) ◽  
pp. 213
Author(s):  
Marziyeh E. Kenari ◽  
Joshua I. Putman ◽  
Ravi P. Singh ◽  
Brandon B. Fulton ◽  
Huy Phan ◽  
...  

Twelve new azole compounds were synthesized through an ene reaction involving methylidene heterocycles and phenylmaleimide, producing four oxazoles, five thiazoles, and one pyridine derivative, and ethyl glyoxylate for an oxazole and a thiazole compound. The twelve azoles have a stereogenic center in their structure. Hence, a method to separate the enantiomeric pairs, must be provided if any further study of chemical and pharmacological importance of these compounds is to be accomplished. Six chiral stationary phases were assayed: four were based on macrocyclic glycopeptide selectors and two on linear carbohydrates, i.e., derivatized maltodextrin and amylose. The enantiomers of the entire set of new chiral azole compounds were separated using three different mobile phase elution modes: normal phase, polar organic, and reversed phase. The most effective chiral stationary phase was the MaltoShell column, which was able to separate ten of the twelve compounds in one elution mode or another. Structural similarities in the newly synthesized oxazoles provided some insights into possible chiral recognition mechanisms.



Chirality ◽  
2018 ◽  
Vol 30 (12) ◽  
pp. 1304-1311 ◽  
Author(s):  
Imran Ali ◽  
Mohd Suhail ◽  
Leonid Asnin


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