Abstract
The voltage-gated sodium channels (VGSCs) play a fundamental role in controlling cellular excitability. Abnormal activity of sodium channels is related to several pathological processes, including cardiac arrhythmias, epilepsy, chronic pain, neurodegenerative diseases and spasticity. In view of this, VGSCs are considered important therapeutic targets for the treatment of these disorders. To date, nine VGSC isoforms have been identified and have a distinct pattern of expression within the human body. In addition, VGSCs also have distinct electrophysiological profiles with differing activation and inactivation states. As such, there is a concerted effort to develop not only isoform selective antagonists, but also antagonists that exhibit state selectivity, particularly to the inactivated state of the channel. This review will provide a brief historical prospective and will primarily focus on recent advances in the development of isoform specific and state selective sodium channel antagonists and the medicinal chemistry involved, surveying the emerging therapeutic fields.
Keywords: Sodium channels, blockers, Nav isoforms, pain, epilepsy
Current Topics in Medicinal Chemistry
Title: Recent Advances in the Medicinal Chemistry of Sodium Channel Blockers and their Therapeutic Potential
Volume: 9 Issue: 4
Author(s): Valentina Zuliani, Manoj K. Patel, Marco Fantini and Mirko Rivara
Affiliation:
Keywords: Sodium channels, blockers, Nav isoforms, pain, epilepsy
Abstract: The voltage-gated sodium channels (VGSCs) play a fundamental role in controlling cellular excitability. Abnormal activity of sodium channels is related to several pathological processes, including cardiac arrhythmias, epilepsy, chronic pain, neurodegenerative diseases and spasticity. In view of this, VGSCs are considered important therapeutic targets for the treatment of these disorders. To date, nine VGSC isoforms have been identified and have a distinct pattern of expression within the human body. In addition, VGSCs also have distinct electrophysiological profiles with differing activation and inactivation states. As such, there is a concerted effort to develop not only isoform selective antagonists, but also antagonists that exhibit state selectivity, particularly to the inactivated state of the channel. This review will provide a brief historical prospective and will primarily focus on recent advances in the development of isoform specific and state selective sodium channel antagonists and the medicinal chemistry involved, surveying the emerging therapeutic fields.
Export Options
About this article
Cite this article as:
Zuliani Valentina, Patel K. Manoj, Fantini Marco and Rivara Mirko, Recent Advances in the Medicinal Chemistry of Sodium Channel Blockers and their Therapeutic Potential, Current Topics in Medicinal Chemistry 2009; 9 (4) . https://dx.doi.org/10.2174/156802609788317856
DOI https://dx.doi.org/10.2174/156802609788317856 |
Print ISSN 1568-0266 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-4294 |
- 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
- Announcements
Related Articles
-
Psychopharmacological Treatment of Obsessive-Compulsive Disorder (OCD)
Current Neuropharmacology HCN Channels Modulators: The Need for Selectivity
Current Topics in Medicinal Chemistry Drug Therapy of Neuropathic Pain: Current Developments and Future Perspectives
Current Drug Targets Neuro-Inflammatory Mechanisms in Developmental Disorders Associated with Intellectual Disability and Autism Spectrum Disorder: A Neuro- Immune Perspective
CNS & Neurological Disorders - Drug Targets Selenium and Selenoproteins: An Overview on Different Biological Systems
Current Protein & Peptide Science Voxel-wise Functional Connectivity of the Default Mode Network in Epilepsies: A Systematic Review and Meta-Analysis
Current Neuropharmacology PDZ Domains at Excitatory Synapses: Potential Molecular Targets for Persistent Pain Treatment
Current Neuropharmacology GABA Receptors: Pharmacological Potential and Pitfalls
Current Pharmaceutical Design Preparation and Characterization of Rivastigmine Loaded Human Serum Albumin (HSA) Nanoparticles
Current Drug Delivery Human Microdialysis
Current Pharmaceutical Biotechnology Melatonin and Respiratory Diseases: A Review
Current Topics in Medicinal Chemistry Applications of Artificial Neural Networks in Medical Science
Current Clinical Pharmacology Cannabis sativa L. Constituents and Their Role in Neuroinflammation
Current Bioactive Compounds Conotoxins and Structural Biology: A Prospective Paradigm for Drug Discovery
Current Protein & Peptide Science Biomedical Application of Polymers: A Case Study of Non-CNS Drugs Becoming CNS Acting Drugs
Central Nervous System Agents in Medicinal Chemistry Selective Modulators of α<sub>5</sub>-Containing GABA<sub>A</sub> Receptors and their Therapeutic Significance
Current Drug Targets GABA-A Receptor Complex and Memory Processes
Medicinal Chemistry Reviews - Online (Discontinued) Combination Therapy for Multi-Target Manipulation of Secondary Brain Injury Mechanisms
Current Neuropharmacology Computer-Aided Drug Discovery and Design Targeting Ion Channels
Current Topics in Medicinal Chemistry The Role of the Urokinase Receptor in Epilepsy, in Disorders of Language, Cognition, Communication and Behavior, and in the Central Nervous System
Current Pharmaceutical Design