Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis
Introduction: The interactions between biomacromolecules such as serum albumin (SA) and various drugs have attracted increasing research attention in recent years. However, the study of SA with those drugs that have relatively high hydrophilicity and a lower affinity for SA could be a challenging is...
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Tabriz University of Medical Sciences
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doaj-e48a377a1a0f4199a2a4fac3bf798a2b2020-11-25T02:46:37ZengTabriz University of Medical SciencesBioImpacts2228-56602228-56522017-06-0172919710.15171/bi.2017.12BI_226_20161225152717Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysisMaryam Sharifi0Jafar Ezzati Nazhad Dolatabadi1Farzaneh Fathi2Mostafa Zakariazadeh3Abolfazl Barzegar4Mohammad Rashidi5Habib Tajalli6Mohammad-Reza Rashidi7Research Institute for Applied Physics and Astronomy, University of Tabriz, Tabriz, IranResearch Center for Pharmaceutical Nanotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, IranResearch Center for Pharmaceutical Nanotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, IranResearch Institute for Fundamental Sciences (RIFS), University of Tabriz, Tabriz, IranResearch Institute for Fundamental Sciences (RIFS), University of Tabriz, Tabriz, IranResearch Center for Pharmaceutical Nanotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, IranResearch Institute for Applied Physics and Astronomy, University of Tabriz, Tabriz, IranResearch Center for Pharmaceutical Nanotechnology, Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, IranIntroduction: The interactions between biomacromolecules such as serum albumin (SA) and various drugs have attracted increasing research attention in recent years. However, the study of SA with those drugs that have relatively high hydrophilicity and a lower affinity for SA could be a challenging issue. At the present study, the interaction of bovine SA (BSA) with neomycin as a hydrophilic drug has been investigated using surface plasmon resonance (SPR) and molecular docking methods. Methods: BSA was immobilized on the carboxymethyl dextran hydrogel sensor chip after activation of carboxylic groups through NHS/EDC and, then, the neomycin interaction with BSA at different concentrations (1-128 µM) was investigated. Results: Dose-response sensorgrams of BSA upon increasing concentration of neomycin has been shown through SPR analysis. The small KD value (4.96 e-7 at 40°C) demonstrated high affinity of neomycin to BSA. Thermodynamic parameters were calculated through van’t Hoff equation at 4 different temperatures. The results showed that neomycin interacts with BSA via Van der Waals interactions and hydrogen bonds and increase of KD with temperature rising indicated that the binding process was entropy driven. Molecular docking study confirmed that hydrogen bond was the major intermolecular force stabilizing neomycin-BSA complex. Conclusion: The attained results showed that neomycin molecules can efficiently distribute within the body after interaction with BSA in spite of having hydrophilic properties. Besides, SPR can be considered as a useful instrument for study of the interaction of hydrophilic drugs with SA.http://bi.tbzmed.ac.ir/PDF/bi-7-91.pdfEnthalpyEntropyEquilibrium constants (KD)Surface plasmon resonanceThermodynamic |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Maryam Sharifi Jafar Ezzati Nazhad Dolatabadi Farzaneh Fathi Mostafa Zakariazadeh Abolfazl Barzegar Mohammad Rashidi Habib Tajalli Mohammad-Reza Rashidi |
spellingShingle |
Maryam Sharifi Jafar Ezzati Nazhad Dolatabadi Farzaneh Fathi Mostafa Zakariazadeh Abolfazl Barzegar Mohammad Rashidi Habib Tajalli Mohammad-Reza Rashidi Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis BioImpacts Enthalpy Entropy Equilibrium constants (KD) Surface plasmon resonance Thermodynamic |
author_facet |
Maryam Sharifi Jafar Ezzati Nazhad Dolatabadi Farzaneh Fathi Mostafa Zakariazadeh Abolfazl Barzegar Mohammad Rashidi Habib Tajalli Mohammad-Reza Rashidi |
author_sort |
Maryam Sharifi |
title |
Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis |
title_short |
Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis |
title_full |
Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis |
title_fullStr |
Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis |
title_full_unstemmed |
Surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis |
title_sort |
surface plasmon resonance and molecular docking studies of bovine serum albumin interaction with neomycin: kinetic and thermodynamic analysis |
publisher |
Tabriz University of Medical Sciences |
series |
BioImpacts |
issn |
2228-5660 2228-5652 |
publishDate |
2017-06-01 |
description |
Introduction: The interactions between biomacromolecules such as serum albumin (SA) and various drugs have attracted increasing research attention in recent years. However, the study of SA with those drugs that have relatively high hydrophilicity and a lower affinity for SA could be a challenging issue. At the present study, the interaction of bovine SA (BSA) with neomycin as a hydrophilic drug has been investigated using surface plasmon resonance (SPR) and molecular docking methods.
Methods: BSA was immobilized on the carboxymethyl dextran hydrogel sensor chip after activation of carboxylic groups through NHS/EDC and, then, the neomycin interaction with BSA at different concentrations (1-128 µM) was investigated.
Results: Dose-response sensorgrams of BSA upon increasing concentration of neomycin has been shown through SPR analysis. The small KD value (4.96 e-7 at 40°C) demonstrated high affinity of neomycin to BSA. Thermodynamic parameters were calculated through van’t Hoff equation at 4 different temperatures. The results showed that neomycin interacts with BSA via Van der Waals interactions and hydrogen bonds and increase of KD with temperature rising indicated that the binding process was entropy driven. Molecular docking study confirmed that hydrogen bond was the major intermolecular force stabilizing neomycin-BSA complex.
Conclusion: The attained results showed that neomycin molecules can efficiently distribute within the body after interaction with BSA in spite of having hydrophilic properties. Besides, SPR can be considered as a useful instrument for study of the interaction of hydrophilic drugs with SA. |
topic |
Enthalpy Entropy Equilibrium constants (KD) Surface plasmon resonance Thermodynamic |
url |
http://bi.tbzmed.ac.ir/PDF/bi-7-91.pdf |
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