Literature DB >> 34071328

Enzyme Models-From Catalysis to Prodrugs.

Zeinab Breijyeh1, Rafik Karaman1.   

Abstract

Enzymes are highly specific biological catalysts that accelerate the rate of chemical reactions within the cell. Our knowledge of how enzymes work remains incomplete. Computational methodologies such as molecular mechanics (MM) and quantum mechanical (QM) methods play an important role in elucidating the detailed mechanisms of enzymatic reactions where experimental research measurements are not possible. Theories invoked by a variety of scientists indicate that enzymes work as structural scaffolds that serve to bring together and orient the reactants so that the reaction can proceed with minimum energy. Enzyme models can be utilized for mimicking enzyme catalysis and the development of novel prodrugs. Prodrugs are used to enhance the pharmacokinetics of drugs; classical prodrug approaches focus on alternating the physicochemical properties, while chemical modern approaches are based on the knowledge gained from the chemistry of enzyme models and correlations between experimental and calculated rate values of intramolecular processes (enzyme models). A large number of prodrugs have been designed and developed to improve the effectiveness and pharmacokinetics of commonly used drugs, such as anti-Parkinson (dopamine), antiviral (acyclovir), antimalarial (atovaquone), anticancer (azanucleosides), antifibrinolytic (tranexamic acid), antihyperlipidemia (statins), vasoconstrictors (phenylephrine), antihypertension (atenolol), antibacterial agents (amoxicillin, cephalexin, and cefuroxime axetil), paracetamol, and guaifenesin. This article describes the works done on enzyme models and the computational methods used to understand enzyme catalysis and to help in the development of efficient prodrugs.

Entities:  

Keywords:  catalytic models; computational methods; enzymes; intramolecularity; prodrug approach; proton transfer reactions

Year:  2021        PMID: 34071328     DOI: 10.3390/molecules26113248

Source DB:  PubMed          Journal:  Molecules        ISSN: 1420-3049            Impact factor:   4.411


  116 in total

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Authors:  Rafik Karaman
Journal:  Bioorg Chem       Date:  2008-10-25       Impact factor: 5.275

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Journal:  Toxicol Appl Pharmacol       Date:  1980-06-30       Impact factor: 4.219

7.  A computational analysis of intramolecularity in proton transfer reactions.

Authors:  Rafik Karaman; Robert Pascal
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Review 8.  Prodrugs of NSAIDs: A Review.

Authors:  Kamal Shah; Jeetendra K Gupta; Nagendra S Chauhan; Neeraj Upmanyu; Sushant K Shrivastava; Pradeep Mishra
Journal:  Open Med Chem J       Date:  2017-11-30

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Authors:  Riccardo Concu; M Natália D S Cordeiro
Journal:  Int J Mol Sci       Date:  2019-10-29       Impact factor: 5.923

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Review 2.  Strategies to Improve Drug Strength in Nasal Preparations for Brain Delivery of Low Aqueous Solubility Drugs.

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Journal:  Pharmaceutics       Date:  2022-03-08       Impact factor: 6.321

  2 in total

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