Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological Fluids

Several emerging nano scale forms of carbon are showing great promise in electrochemical sensing such as graphene and multi-walled carbon nanotubes (MWCNTs). Herein we present an ecofriendly method to fabricate long life and sensitive ion selective sensors based on graphene and MWCNTs nanocomposites...

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Main Authors: Eman A. Al-Harbi, Mona H. Abdelrahman, Amira M. El-Kosasy
Format: Article
Language:English
Published: MDPI AG 2019-05-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/19/10/2357
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spelling doaj-23de5c7814164bf3877dd87c755698812020-11-25T00:53:39ZengMDPI AGSensors1424-82202019-05-011910235710.3390/s19102357s19102357Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological FluidsEman A. Al-Harbi0Mona H. Abdelrahman1Amira M. El-Kosasy2Department of Chemistry, Faculty of Science, Taibah University, Al-Madina Al-Mounawara 42353, Saudi ArabiaDepartment of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Ain Shams University, Cairo 11566, EgyptDepartment of Pharmaceutical Analytical Chemistry, Faculty of Pharmacy, Ain Shams University, Cairo 11566, EgyptSeveral emerging nano scale forms of carbon are showing great promise in electrochemical sensing such as graphene and multi-walled carbon nanotubes (MWCNTs). Herein we present an ecofriendly method to fabricate long life and sensitive ion selective sensors based on graphene and MWCNTs nanocomposites with no need for volatile organic solvents. Both sensors were fabricated, for the analysis of carbachol in ophthalmic solutions, plasma and urine where ion- association complex was formed between cationic carbachol and anionic Sodium tetra phenyl borate (NaTBP) in a ratio 1:1. Both sensors were evaluated according to the IUPAC recommendation data, revealing linear response in the concentration range 10<sup>&#8722;7</sup> M to 10<sup>&#8722;2</sup> M with near Nernstian slopes 50.80 &#177; 5 and 58.14 &#177; 3 mV/decade and correlation coefficients 0.9992 and 0.9998 for graphene and MWCNTs based sensors, respectively. Both sensors were successfully applied as stability indicating method for the analysis of carbachol in presence of its metabolite choline, in ophthalmic preparations, in plasma and urine showing good recovery percentage values. MWCNTs based sensor showed some advantages over graphene sensor regarding lower limit of detection (LOD), longer life time and higher selectivity towards carbachol. Statistical comparison of the proposed sensors with the official method showed no significant difference for accuracy and precision.https://www.mdpi.com/1424-8220/19/10/2357graphenecarbacholsensornanocomposites, ecofriendly
collection DOAJ
language English
format Article
sources DOAJ
author Eman A. Al-Harbi
Mona H. Abdelrahman
Amira M. El-Kosasy
spellingShingle Eman A. Al-Harbi
Mona H. Abdelrahman
Amira M. El-Kosasy
Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological Fluids
Sensors
graphene
carbachol
sensor
nanocomposites, ecofriendly
author_facet Eman A. Al-Harbi
Mona H. Abdelrahman
Amira M. El-Kosasy
author_sort Eman A. Al-Harbi
title Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological Fluids
title_short Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological Fluids
title_full Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological Fluids
title_fullStr Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological Fluids
title_full_unstemmed Ecofriendly Long Life Nanocomposite Sensors for Determination of Carbachol in Presence of Choline: Application in Ophthalmic Solutions and Biological Fluids
title_sort ecofriendly long life nanocomposite sensors for determination of carbachol in presence of choline: application in ophthalmic solutions and biological fluids
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2019-05-01
description Several emerging nano scale forms of carbon are showing great promise in electrochemical sensing such as graphene and multi-walled carbon nanotubes (MWCNTs). Herein we present an ecofriendly method to fabricate long life and sensitive ion selective sensors based on graphene and MWCNTs nanocomposites with no need for volatile organic solvents. Both sensors were fabricated, for the analysis of carbachol in ophthalmic solutions, plasma and urine where ion- association complex was formed between cationic carbachol and anionic Sodium tetra phenyl borate (NaTBP) in a ratio 1:1. Both sensors were evaluated according to the IUPAC recommendation data, revealing linear response in the concentration range 10<sup>&#8722;7</sup> M to 10<sup>&#8722;2</sup> M with near Nernstian slopes 50.80 &#177; 5 and 58.14 &#177; 3 mV/decade and correlation coefficients 0.9992 and 0.9998 for graphene and MWCNTs based sensors, respectively. Both sensors were successfully applied as stability indicating method for the analysis of carbachol in presence of its metabolite choline, in ophthalmic preparations, in plasma and urine showing good recovery percentage values. MWCNTs based sensor showed some advantages over graphene sensor regarding lower limit of detection (LOD), longer life time and higher selectivity towards carbachol. Statistical comparison of the proposed sensors with the official method showed no significant difference for accuracy and precision.
topic graphene
carbachol
sensor
nanocomposites, ecofriendly
url https://www.mdpi.com/1424-8220/19/10/2357
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AT monahabdelrahman ecofriendlylonglifenanocompositesensorsfordeterminationofcarbacholinpresenceofcholineapplicationinophthalmicsolutionsandbiologicalfluids
AT amiramelkosasy ecofriendlylonglifenanocompositesensorsfordeterminationofcarbacholinpresenceofcholineapplicationinophthalmicsolutionsandbiologicalfluids
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