Recent studies of synthetic antibody-based 3-MCPD determination technology

3-Chloro-1,2-propanediol (3-MCPD) is classified by the International Agency for Research on Cancer as carcinogenic material. 3-MCPD will also become one of the European Union's requirements, proposing the maximum level of the 3-MCPD in palm oil until 2.5 ppm. Although the reported technologies...

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Main Authors: Hasim Munawar, Prima Luna, Irma Kresnawaty, Happy Widiastuti
Format: Article
Language:English
Published: indonesian research institute for biotechnology and bioindustry 2021-04-01
Series:Menara Perkebunan
Subjects:
Online Access:http://mp.iribb.org/index.php/mpjurnal/article/view/402
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author Hasim Munawar
Prima Luna
Irma Kresnawaty
Happy Widiastuti
author_facet Hasim Munawar
Prima Luna
Irma Kresnawaty
Happy Widiastuti
author_sort Hasim Munawar
collection DOAJ
description 3-Chloro-1,2-propanediol (3-MCPD) is classified by the International Agency for Research on Cancer as carcinogenic material. 3-MCPD will also become one of the European Union's requirements, proposing the maximum level of the 3-MCPD in palm oil until 2.5 ppm. Although the reported technologies GCMS and HPLC-FLD demonstrated high sensitivity and selectivity on 3-MCPD determination, those technologies invest in chemical and time-consuming sample preparation and analysis. Molecularly imprinted polymer (MIP), or a synthetic antibody, can be used to recognize 3-MCPD. MIP is more robust under extreme environments such as temperature and pH. This paper, therefore, aims to discuss the application of MIP on sample extraction and analysis to detect 3-MCPD. MIP is synthesized by polymerization of functional monomers surrounding 3-MCPD as a template. 3-MCPD is then removed from the MIP, leaving active cavities. Thus, these sites can either covalently or non-covalently rebind to 3-MCPD. Computational or empirical studies could investigate the composition of MIP. MIP can be manufactured as MIP-based solid phase extraction (MIPSPE) and MIP-based sensor. Both applications showed significant analytical parameters, such as recovery higher than 90% and detection limit lower than 2.5 ppm. Therefore, the application of MIP can be flexible for sample preparation and analysis on the 3-MCPD determination. MIP-based technology would be a prospective instrument to detect 3-MCPD. In the future, producing MIP on an industrial scale will be a challenge to monitor the 3-MCPD level in palm oil.
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spelling doaj.art-ada29c120c64495da94ead563be325b72022-12-21T22:27:18Zengindonesian research institute for biotechnology and bioindustryMenara Perkebunan0125-93181858-37682021-04-01891627210.22302/iribb.jur.mp.v89i1.402Recent studies of synthetic antibody-based 3-MCPD determination technologyHasim Munawar0Prima Luna1Irma Kresnawaty 2Happy Widiastuti 3Balai Besar Penelitian VeterinerBalai Besar Litbang Pasca Panen PertanianPusat Penelitian Bioteknologi dan Bioindustri IndonesiaPusat Penelitian Bioteknologi dan Bioindustri Indonesia3-Chloro-1,2-propanediol (3-MCPD) is classified by the International Agency for Research on Cancer as carcinogenic material. 3-MCPD will also become one of the European Union's requirements, proposing the maximum level of the 3-MCPD in palm oil until 2.5 ppm. Although the reported technologies GCMS and HPLC-FLD demonstrated high sensitivity and selectivity on 3-MCPD determination, those technologies invest in chemical and time-consuming sample preparation and analysis. Molecularly imprinted polymer (MIP), or a synthetic antibody, can be used to recognize 3-MCPD. MIP is more robust under extreme environments such as temperature and pH. This paper, therefore, aims to discuss the application of MIP on sample extraction and analysis to detect 3-MCPD. MIP is synthesized by polymerization of functional monomers surrounding 3-MCPD as a template. 3-MCPD is then removed from the MIP, leaving active cavities. Thus, these sites can either covalently or non-covalently rebind to 3-MCPD. Computational or empirical studies could investigate the composition of MIP. MIP can be manufactured as MIP-based solid phase extraction (MIPSPE) and MIP-based sensor. Both applications showed significant analytical parameters, such as recovery higher than 90% and detection limit lower than 2.5 ppm. Therefore, the application of MIP can be flexible for sample preparation and analysis on the 3-MCPD determination. MIP-based technology would be a prospective instrument to detect 3-MCPD. In the future, producing MIP on an industrial scale will be a challenge to monitor the 3-MCPD level in palm oil.http://mp.iribb.org/index.php/mpjurnal/article/view/4023-mcpdmolecularly imprinted polymer (mip)mip-based spemip-based sensor
spellingShingle Hasim Munawar
Prima Luna
Irma Kresnawaty
Happy Widiastuti
Recent studies of synthetic antibody-based 3-MCPD determination technology
Menara Perkebunan
3-mcpd
molecularly imprinted polymer (mip)
mip-based spe
mip-based sensor
title Recent studies of synthetic antibody-based 3-MCPD determination technology
title_full Recent studies of synthetic antibody-based 3-MCPD determination technology
title_fullStr Recent studies of synthetic antibody-based 3-MCPD determination technology
title_full_unstemmed Recent studies of synthetic antibody-based 3-MCPD determination technology
title_short Recent studies of synthetic antibody-based 3-MCPD determination technology
title_sort recent studies of synthetic antibody based 3 mcpd determination technology
topic 3-mcpd
molecularly imprinted polymer (mip)
mip-based spe
mip-based sensor
url http://mp.iribb.org/index.php/mpjurnal/article/view/402
work_keys_str_mv AT hasimmunawar recentstudiesofsyntheticantibodybased3mcpddeterminationtechnology
AT primaluna recentstudiesofsyntheticantibodybased3mcpddeterminationtechnology
AT irmakresnawaty recentstudiesofsyntheticantibodybased3mcpddeterminationtechnology
AT happywidiastuti recentstudiesofsyntheticantibodybased3mcpddeterminationtechnology