Technical Advances in the Chiral Separation of Anti-diabetic Drugs Using Analytical and Bio-analytical Methods: A Comprehensive Review

立体中心 生物分析 对映体 毛细管电泳 色谱分离 手性(物理) 分离法 化学 生化工程 纳米技术 组合化学 计算生物学 色谱法 材料科学 高效液相色谱法 对映选择合成 生物 有机化学 物理 手征对称破缺 Nambu–Jona Lasinio模型 催化作用 量子力学 夸克 工程类
作者
Tatineni Spandana,Narasimha M. Beeraka,P. R. Hemanth Vikram,V. Goli,Chiriki Devi Sri,Bannimath Gurupadayya
出处
期刊:Current Analytical Chemistry [Bentham Science Publishers]
卷期号:18 (10): 1057-1069 被引量:3
标识
DOI:10.2174/1573411018666220820101237
摘要

Abstract: Chirality seems to be a pivotal technique in the field of science. Research teams are quite well versed in empirical separation, however, at the same time, they are clueless about the evolution of chiral separation. As per the guidelines of the United States Food and Drug Administration (US FDA), chiral drugs must be untangled before they are sold to the public. Stereogenic separation has gained prominence during the last 10 decades due to the disparate biological function of enantiomers in the stereogenic environment. Chiral drugs exhibit a wide range of bioavailability, distribution, and pharmacodynamic properties concomitantly they exert divergent pharmacological and toxicological properties. Enantiomeric chiral products could be considered safe and potent in combating various diseases including metabolic diseases like diabetes. Several studies have delineated the development of a novel analytical and bioanalytical method to detect/segregate/quantify chiral chemical components in medicinal chemistry. The same physicochemical characteristics of enantiomers have been proven to be beneficial to the estrangement of stereogenic compounds. Furthermore, the advancement of bioanalytical methods is also critical to shedding light on the destiny of distinct enantiomers in the biological environment. HPLC (High-Performance Liquid Chromatography) and CE (Capillary Electrophoresis) have been the most commonly employed separation techniques. But the technical advances are required to enhance the efficiency of detection and quantification of chiral molecules on a large scale. The current review delineates the need for the chiral separation of stereogenic antidiabetic drug compounds with technical advances. Furthermore, this research is focused on the enantioseparation of chiral antidiabetic drugs and a brief overview of the analytical and bioanalytical methods conducted on distant chiral antidiabetic drugs to improve the efficiency of chiral separation.
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