New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samples

A magnetic solid-phase extraction (MSPE) procedure on the newly synthesized magnetic β-cyclodextrin functionalized with toluene diisocyanate (TDI) as a linker and further modified with bio-polymeric spores of sporopollenin (MSp-TDI-βCD), was developed for the extraction of nonsteroidal anti-inflamma...

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Main Authors: Syed Fariq Fathullah Syed Yaacob, Muhammad Afzal Kamboh, Wan Aini Wan Ibrahim, Sharifah Mohamad
Format: Article
Language:English
Published: The Royal Society 2018-01-01
Series:Royal Society Open Science
Subjects:
Online Access:https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171311
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author Syed Fariq Fathullah Syed Yaacob
Muhammad Afzal Kamboh
Wan Aini Wan Ibrahim
Sharifah Mohamad
author_facet Syed Fariq Fathullah Syed Yaacob
Muhammad Afzal Kamboh
Wan Aini Wan Ibrahim
Sharifah Mohamad
author_sort Syed Fariq Fathullah Syed Yaacob
collection DOAJ
description A magnetic solid-phase extraction (MSPE) procedure on the newly synthesized magnetic β-cyclodextrin functionalized with toluene diisocyanate (TDI) as a linker and further modified with bio-polymeric spores of sporopollenin (MSp-TDI-βCD), was developed for the extraction of nonsteroidal anti-inflammatory drugs (NSAIDs), namely, indoprofen (INP), ketoprofen (KTP), ibuprofen (IBP) and fenoprofen (FNP) from water samples prior to their HPLC-DAD determination. The newly synthesized MSp-TDI-βCD was comprehensibly characterized using FT-IR, XRD, SEM-EDX, BET and VSM analyses. The separation of selected NSAIDs on MSp-TDI-βCD from aqueous solution was simply achieved by applying an external magnetic field via a permanent magnet. The MSPE parameters affecting extraction performance, i.e. sorbent dosage, sample volume, extraction and desorption time, type of organic eluent and volume and solution pH were investigated and optimized. The proposed method showed linear range between 0.5 and 500 ng ml−1, low limit of detection at S/N = 3 (0.16–0.37 ng ml−1) and limit of quantification at S/N = 10 (0.53–1.22 ng ml−1). The inter-day (n = 15) and intra-day (n = 5) precision for the proposed methods given by relative standard deviation (RSD%) was in the range of 2.5–4.0 and 2.1–5.5, respectively. The extraction recoveries of NSAIDs from environmental samples (tap, drinking and river water) ranged from 92.5% to 123.6%, with satisfactory precision (RSD% less than 12.4%).
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spelling doaj.art-870502f0e1854e6d80d75915e4ae333a2022-12-21T20:15:21ZengThe Royal SocietyRoyal Society Open Science2054-57032018-01-015710.1098/rsos.171311171311New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samplesSyed Fariq Fathullah Syed YaacobMuhammad Afzal KambohWan Aini Wan IbrahimSharifah MohamadA magnetic solid-phase extraction (MSPE) procedure on the newly synthesized magnetic β-cyclodextrin functionalized with toluene diisocyanate (TDI) as a linker and further modified with bio-polymeric spores of sporopollenin (MSp-TDI-βCD), was developed for the extraction of nonsteroidal anti-inflammatory drugs (NSAIDs), namely, indoprofen (INP), ketoprofen (KTP), ibuprofen (IBP) and fenoprofen (FNP) from water samples prior to their HPLC-DAD determination. The newly synthesized MSp-TDI-βCD was comprehensibly characterized using FT-IR, XRD, SEM-EDX, BET and VSM analyses. The separation of selected NSAIDs on MSp-TDI-βCD from aqueous solution was simply achieved by applying an external magnetic field via a permanent magnet. The MSPE parameters affecting extraction performance, i.e. sorbent dosage, sample volume, extraction and desorption time, type of organic eluent and volume and solution pH were investigated and optimized. The proposed method showed linear range between 0.5 and 500 ng ml−1, low limit of detection at S/N = 3 (0.16–0.37 ng ml−1) and limit of quantification at S/N = 10 (0.53–1.22 ng ml−1). The inter-day (n = 15) and intra-day (n = 5) precision for the proposed methods given by relative standard deviation (RSD%) was in the range of 2.5–4.0 and 2.1–5.5, respectively. The extraction recoveries of NSAIDs from environmental samples (tap, drinking and river water) ranged from 92.5% to 123.6%, with satisfactory precision (RSD% less than 12.4%).https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171311sporopolleninmagnetic nanoparticlesβ-cyclodextrinnsaidsmagnetic solid-phase extraction
spellingShingle Syed Fariq Fathullah Syed Yaacob
Muhammad Afzal Kamboh
Wan Aini Wan Ibrahim
Sharifah Mohamad
New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samples
Royal Society Open Science
sporopollenin
magnetic nanoparticles
β-cyclodextrin
nsaids
magnetic solid-phase extraction
title New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samples
title_full New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samples
title_fullStr New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samples
title_full_unstemmed New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samples
title_short New sporopollenin-based β-cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid-phase extraction of nonsteroidal anti-inflammatory drugs from water samples
title_sort new sporopollenin based β cyclodextrin functionalized magnetic hybrid adsorbent for magnetic solid phase extraction of nonsteroidal anti inflammatory drugs from water samples
topic sporopollenin
magnetic nanoparticles
β-cyclodextrin
nsaids
magnetic solid-phase extraction
url https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.171311
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