Abstract
During the last twenty years, the interest towards the development of chiral compound has exponentially been increased. Indeed, the set-up of suitable asymmetric enantioselective synthesis protocols is currently one of the focuses of many pharmaceutical research projects. In this scenario, chiral HPLC separations have gained great importance as well, both for analytical- and preparative-scale applications, the latter devoted to the quantitative isolation of enantiopure compounds. Molecular modelling and quantum chemistry methods can be fruitfully applied to solve chirality related problems especially when enantiomerically pure reference standards are missing. In this framework, with the aim to explain the molecular basis of the enantioselective retention, we performed computational studies to rationalize the enantiomer elution order with both low- and high-molecular weight chiral selectors. Semi-empirical and quantum mechanical computational procedures were successfully applied in the domains of chiral ligand-exchange and chiral ion-exchange chromatography, as well as in studies dealing with the use of polysaccharide-based enantioresolving materials.
Keywords: Chiral recognition mechanism, computational studies, enantiomeric elution order, high-performance liquid chromatography, low- and high-molecular weight chiral selectors, medicinal chemistry.
Mini-Reviews in Medicinal Chemistry
Title:Elucidation of the Chromatographic Enantiomer Elution Order Through Computational Studies
Volume: 18 Issue: 2
Author(s): Roccaldo Sardella, Federica Ianni, Antonio Macchiarulo, Lucia Pucciarini, Andrea Carotti*Benedetto Natalini
Affiliation:
- Department of Pharmaceutical Sciences, University of Perugia, Via Fabretti 48, 06123-Perugia,Italy
Keywords: Chiral recognition mechanism, computational studies, enantiomeric elution order, high-performance liquid chromatography, low- and high-molecular weight chiral selectors, medicinal chemistry.
Abstract: During the last twenty years, the interest towards the development of chiral compound has exponentially been increased. Indeed, the set-up of suitable asymmetric enantioselective synthesis protocols is currently one of the focuses of many pharmaceutical research projects. In this scenario, chiral HPLC separations have gained great importance as well, both for analytical- and preparative-scale applications, the latter devoted to the quantitative isolation of enantiopure compounds. Molecular modelling and quantum chemistry methods can be fruitfully applied to solve chirality related problems especially when enantiomerically pure reference standards are missing. In this framework, with the aim to explain the molecular basis of the enantioselective retention, we performed computational studies to rationalize the enantiomer elution order with both low- and high-molecular weight chiral selectors. Semi-empirical and quantum mechanical computational procedures were successfully applied in the domains of chiral ligand-exchange and chiral ion-exchange chromatography, as well as in studies dealing with the use of polysaccharide-based enantioresolving materials.
Export Options
About this article
Cite this article as:
Sardella Roccaldo, Ianni Federica, Macchiarulo Antonio, Pucciarini Lucia, Carotti Andrea*, Natalini Benedetto, Elucidation of the Chromatographic Enantiomer Elution Order Through Computational Studies, Mini-Reviews in Medicinal Chemistry 2018; 18 (2) . https://dx.doi.org/10.2174/1389557516666161018143629
DOI https://dx.doi.org/10.2174/1389557516666161018143629 |
Print ISSN 1389-5575 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5607 |
Call for Papers in Thematic Issues
Bioprospecting of Natural Products as Sources of New Multitarget Therapies
According to the Convention on Biological Diversity, bioprospecting is the exploration of biodiversity and indigenous knowledge to develop commercially valuable products for pharmaceutical and other applications. Bioprospecting involves searching for useful organic compounds in plants, fungi, marine organisms, and microorganisms. Natural products traditionally constituted the primary source of more than ...read more
Computational Frontiers in Medicinal Chemistry
The thematic issue "Computational Frontiers in Medicinal Chemistry" provides a robust platform for delving into state-of-the-art computational methodologies and technologies that significantly propel advancements in medicinal chemistry. This edition seeks to amalgamate top-tier reviews spotlighting the latest trends and breakthroughs in the fusion of computational approaches, including artificial intelligence (AI) ...read more
Drugs and mitochondria
Mitochondria play a central role in the life and death of cells. They are not merely the center for energy metabolism but are also the headquarters for different catabolic and anabolic processes, calcium fluxes, and various signaling pathways. Mitochondria maintain homeostasis in the cell by interacting with reactive oxygen-nitrogen species ...read more
Mitochondria as a Therapeutic Target in Metabolic Disorders
Mitochondria are the primary site of adenosine triphosphate (ATP) production in mammalian cells. Moreover, these organelles are an important source of reactive oxygen and nitrogen species in virtually any nucleated cell type. The modulation of a myriad of cellular signaling pathways depends on the mitochondrial physiology. Mitochondrial dysfunction is observed ...read more
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
Related Articles
-
Integrins: A Method of Early Intervention in the Treatment of Colorectal Liver Metastases
Current Pharmaceutical Design Diabetes Mellitus: Channeling Care through Cellular Discovery
Current Neurovascular Research Regulation of Apoptosis and Cell Survival by Resveratrol
Mini-Reviews in Organic Chemistry Diverse Mechanisms of AKT Pathway Activation in Human Malignancy
Current Cancer Drug Targets Nutraceuticals for Promoting Longevity
Current Nutraceuticals Thymoquinone Anticancer Discovery: Possible Mechanisms
Current Drug Discovery Technologies Low-Dose Methotrexate (LD-MTX) in Rheumatology Practice - A Most Widely Misunderstood Drug
Current Rheumatology Reviews A Rationalized Approach to Design and Discover Novel Non-steroidal Derivatives through Computational Aid for the Treatment of Prostate Cancer
Current Computer-Aided Drug Design Shared Signaling Pathways Between Endocrine and Immune System Receptors: The Model of Gamma Chain
Current Signal Transduction Therapy The Comparison of Rat and Human Intestinal and Hepatic Glucuronidation of Enterolactone Derived from Flaxseed Lignans
The Natural Products Journal Amygdalin Decreases Adhesion and Migration of MDA-MB-231 and MCF-7 Breast Cancer Cell Lines
Current Molecular Pharmacology Direct incorporation of [<sup>18</sup>F] into Aliphatic Systems: A promising Mn-catalysed Labelling Technique for PET Imaging
Current Radiopharmaceuticals Cardiotoxicity of 5-Fluorouracil
Cardiovascular & Hematological Agents in Medicinal Chemistry Radioligands for the Angiotensin II Subtype 1 (AT1) Receptor
Current Topics in Medicinal Chemistry Polyphenols and Stem Cells for Neuroregeneration in Parkinson’s Disease and Amyotrophic Lateral Sclerosis
Current Pharmaceutical Design The Function of the Selective Inhibitors of Cycloxygenase 2
Mini-Reviews in Medicinal Chemistry Nanomedicine-Combined Immunotherapy for Cancer
Current Medicinal Chemistry An Overview on the Role of miR-451 in Lung Cancer: Diagnosis, Therapy, and Prognosis
MicroRNA Recent Advances in the Development of Selective CB2 Agonists as Promising Anti-Inflammatory Agents
Current Medicinal Chemistry Stem Cells: Their Role in Breast Cancer Development and Resistance to Treatment
Current Pharmaceutical Biotechnology