4.6 Review

Enantioselectivity in Drug Pharmacokinetics and Toxicity: Pharmacological Relevance and Analytical Methods

期刊

MOLECULES
卷 26, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/molecules26113113

关键词

chirality; metabolism; enantiomers; chiral analyses; chiral stationary phases

资金

  1. FCT [UIDB/04423/2020, UIDP/04423/2020, SFRH/BD/146999/2019]
  2. ERDF through the COMPETE-POFC program
  3. COMPETE 2020, under the PORTUGAL 2020 Partnership Agreement [POCI-01-0145-FEDER-028736]
  4. ERDF
  5. CESPU [CHIRALBIOACTIVEPI-3RL-IINFACTS-2019, CHIRALSINTE-SE_APSFCT_IINFACTS_2021]
  6. Fundação para a Ciência e a Tecnologia [SFRH/BD/146999/2019] Funding Source: FCT

向作者/读者索取更多资源

Enzymes, receptors, and other binding molecules in biological processes can recognize enantiomers as different molecular entities, leading to diverse responses. Enantioselectivity is observed in drug pharmacodynamics and pharmacokinetics, influencing metabolic pathways and toxicity mechanisms. The configuration of enantiomers can cause unexpected effects during pharmacokinetic processes, with factors like genetic variability and drug interactions playing a role in the outcomes.
Enzymes, receptors, and other binding molecules in biological processes can recognize enantiomers as different molecular entities, due to their different dissociation constants, leading to diverse responses in biological processes. Enantioselectivity can be observed in drugs pharmacodynamics and in pharmacokinetic (absorption, distribution, metabolism, and excretion), especially in metabolic profile and in toxicity mechanisms. The stereoisomers of a drug can undergo to different metabolic pathways due to different enzyme systems, resulting in different types and/or number of metabolites. The configuration of enantiomers can cause unexpected effects, related to changes as unidirectional or bidirectional inversion that can occur during pharmacokinetic processes. The choice of models for pharmacokinetic studies as well as the subsequent data interpretation must also be aware of genetic factors (such as polymorphic metabolic enzymes), sex, patient age, hepatic diseases, and drug interactions. Therefore, the pharmacokinetics and toxicity of a racemate or an enantiomerically pure drug are not equal and need to be studied. Enantioselective analytical methods are crucial to monitor pharmacokinetic events and for acquisition of accurate data to better understand the role of the stereochemistry in pharmacokinetics and toxicity. The complexity of merging the best enantioseparation conditions with the selected sample matrix and the intended goal of the analysis is a challenge task. The data gathered in this review intend to reinforce the importance of the enantioselectivity in pharmacokinetic processes and reunite innovative enantioselective analytical methods applied in pharmacokinetic studies. An assorted variety of methods are herein briefly discussed.

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