Cargando…

Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools

Phenytoin (PHT) and Carbamazepine (CBZ) are excellent sodium channel blockers administered in clinical treatment of epileptic seizures. However, the narrow therapeutic range and limited pharmacokinetics of these drugs have raised serious concerns in the proper management of epilepsy. To overcome thi...

Descripción completa

Detalles Bibliográficos
Autores principales: Shaheen, Uzma, Akka, Jyothy, Hinore, Jitendra Singh, Girdhar, Amandeep, Bandaru, Srinivas, Sumithnath, Tharaparambil Gangadharan, Nayarisseri, Anuraj, Munshi, Anjana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biomedical Informatics 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4403034/
https://www.ncbi.nlm.nih.gov/pubmed/25914447
http://dx.doi.org/10.6026/97320630011131
_version_ 1782367303697956864
author Shaheen, Uzma
Akka, Jyothy
Hinore, Jitendra Singh
Girdhar, Amandeep
Bandaru, Srinivas
Sumithnath, Tharaparambil Gangadharan
Nayarisseri, Anuraj
Munshi, Anjana
author_facet Shaheen, Uzma
Akka, Jyothy
Hinore, Jitendra Singh
Girdhar, Amandeep
Bandaru, Srinivas
Sumithnath, Tharaparambil Gangadharan
Nayarisseri, Anuraj
Munshi, Anjana
author_sort Shaheen, Uzma
collection PubMed
description Phenytoin (PHT) and Carbamazepine (CBZ) are excellent sodium channel blockers administered in clinical treatment of epileptic seizures. However, the narrow therapeutic range and limited pharmacokinetics of these drugs have raised serious concerns in the proper management of epilepsy. To overcome this, the present study attempts to identify a candidate molecule with superior pharmacological profile than PHT and CBZ through In silico approaches. PHT and CBZ served as query small molecules for Tanimoto based similarity search with a threshold of 95% against PubChem database. Aided by MolDock algorithm, high affinity similar compound against each query was retrieved. PHT and CBZ and their respective similar were further tested for toxicity profiles, LC 50 values and biological activity. Compounds, NSC403438 and AGN-PC-0BPCBP respectively similar to PHT and CBZ demonstrated higher affinity to sodium channel protein than their respective leads. Of particular relevance, NSC403438 demonstrated highest binding affinity bestowed with least toxicity, better LC 50 values and optimal bioactivity. NSC403438 was further mapped for its structure based pharmacophoric features. In the study, we report NSC403438 as potential sodium channel blocker as a better candidate than PHT and CBZ which can be put forth for pharmacodynamic and pharmacokinetic studies. ABBREVIATIONS: AEDs - Antiepileptic drugs, BLAST - Basic Local Alignment Search Tool, CBZ - Carbamazepine, GEFS+ - Generalized Epilepsy with Febrile Seizures Plus, GPCR - G Protein Coupled Receptor, Nav - Sodium channel with specific voltage conduction, PDB - Protein Data Bank, PHT - Phenytoin, PIR - Protein Information resources, SAVES - Structural Analysis and Verification Server, VGSC - Voltage-gated Sodium channels.
format Online
Article
Text
id pubmed-4403034
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Biomedical Informatics
record_format MEDLINE/PubMed
spelling pubmed-44030342015-04-24 Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools Shaheen, Uzma Akka, Jyothy Hinore, Jitendra Singh Girdhar, Amandeep Bandaru, Srinivas Sumithnath, Tharaparambil Gangadharan Nayarisseri, Anuraj Munshi, Anjana Bioinformation Hypothesis Phenytoin (PHT) and Carbamazepine (CBZ) are excellent sodium channel blockers administered in clinical treatment of epileptic seizures. However, the narrow therapeutic range and limited pharmacokinetics of these drugs have raised serious concerns in the proper management of epilepsy. To overcome this, the present study attempts to identify a candidate molecule with superior pharmacological profile than PHT and CBZ through In silico approaches. PHT and CBZ served as query small molecules for Tanimoto based similarity search with a threshold of 95% against PubChem database. Aided by MolDock algorithm, high affinity similar compound against each query was retrieved. PHT and CBZ and their respective similar were further tested for toxicity profiles, LC 50 values and biological activity. Compounds, NSC403438 and AGN-PC-0BPCBP respectively similar to PHT and CBZ demonstrated higher affinity to sodium channel protein than their respective leads. Of particular relevance, NSC403438 demonstrated highest binding affinity bestowed with least toxicity, better LC 50 values and optimal bioactivity. NSC403438 was further mapped for its structure based pharmacophoric features. In the study, we report NSC403438 as potential sodium channel blocker as a better candidate than PHT and CBZ which can be put forth for pharmacodynamic and pharmacokinetic studies. ABBREVIATIONS: AEDs - Antiepileptic drugs, BLAST - Basic Local Alignment Search Tool, CBZ - Carbamazepine, GEFS+ - Generalized Epilepsy with Febrile Seizures Plus, GPCR - G Protein Coupled Receptor, Nav - Sodium channel with specific voltage conduction, PDB - Protein Data Bank, PHT - Phenytoin, PIR - Protein Information resources, SAVES - Structural Analysis and Verification Server, VGSC - Voltage-gated Sodium channels. Biomedical Informatics 2015-03-31 /pmc/articles/PMC4403034/ /pubmed/25914447 http://dx.doi.org/10.6026/97320630011131 Text en © 2015 Biomedical Informatics This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited.
spellingShingle Hypothesis
Shaheen, Uzma
Akka, Jyothy
Hinore, Jitendra Singh
Girdhar, Amandeep
Bandaru, Srinivas
Sumithnath, Tharaparambil Gangadharan
Nayarisseri, Anuraj
Munshi, Anjana
Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools
title Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools
title_full Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools
title_fullStr Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools
title_full_unstemmed Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools
title_short Computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools
title_sort computer aided identification of sodium channel blockers in the clinical treatment of epilepsy using molecular docking tools
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4403034/
https://www.ncbi.nlm.nih.gov/pubmed/25914447
http://dx.doi.org/10.6026/97320630011131
work_keys_str_mv AT shaheenuzma computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools
AT akkajyothy computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools
AT hinorejitendrasingh computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools
AT girdharamandeep computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools
AT bandarusrinivas computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools
AT sumithnaththaraparambilgangadharan computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools
AT nayarisserianuraj computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools
AT munshianjana computeraidedidentificationofsodiumchannelblockersintheclinicaltreatmentofepilepsyusingmoleculardockingtools