Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysis

Agilent’s innovative EMR-Lipid and Captiva EMRLipid sorbents efficiently replace the traditional QuEChERS d-SPE clean-up products in selective lipid removal from fatty matrices, thus improving instrumental analytical reproducibility, reliability, and long-term use. These products have dual function...

Full description

Bibliographic Details
Main Authors: Quang Hoang Hanh Le, Nguyen Ngoc Chau Tran, Thi Cam Tuyen Nguyen, Huong Giang Nguyen, Kien Trieu Lac, Thi Anh Pham, Pham Ngoc Son Chu
Format: Article
Language:English
Published: Vietnam Ministry of Science and Technology 2022-03-01
Series:Vietnam Journal of Science, Technology and Engineering
Subjects:
Online Access:https://vietnamscience.vjst.vn/index.php/vjste/article/view/105
_version_ 1797937795351707648
author Quang Hoang Hanh Le
Nguyen Ngoc Chau Tran
Thi Cam Tuyen Nguyen
Huong Giang Nguyen
Kien Trieu Lac
Thi Anh Pham
Pham Ngoc Son Chu
author_facet Quang Hoang Hanh Le
Nguyen Ngoc Chau Tran
Thi Cam Tuyen Nguyen
Huong Giang Nguyen
Kien Trieu Lac
Thi Anh Pham
Pham Ngoc Son Chu
author_sort Quang Hoang Hanh Le
collection DOAJ
description Agilent’s innovative EMR-Lipid and Captiva EMRLipid sorbents efficiently replace the traditional QuEChERS d-SPE clean-up products in selective lipid removal from fatty matrices, thus improving instrumental analytical reproducibility, reliability, and long-term use. These products have dual functionality; a hydrophobic interaction between the sorbent with long aliphatic lipid chains of the matrices, which allows for complete lipid retention, and a size exclusion property that does not retain analytes, thus this maximizes, in principle, analyte recovery in any sample. As most of the analytes under study were polar or not highly nonpolar and had a relatively large size, the examination of small-sized nonpolar or less polar compounds is necessary to check for partial retention by the sorbents and if any, further precautions should be taken when using these sorbents. These queries are answered in our present communication concerning the analytes Trifluralin (logP: 5.27), Fipronil (logP: 4.0), and Clenbuterol (logP: 2.63).
first_indexed 2024-04-10T18:49:46Z
format Article
id doaj.art-d94f943674b444ac9ccc468017961b43
institution Directory Open Access Journal
issn 2525-2461
2615-9937
language English
last_indexed 2024-04-10T18:49:46Z
publishDate 2022-03-01
publisher Vietnam Ministry of Science and Technology
record_format Article
series Vietnam Journal of Science, Technology and Engineering
spelling doaj.art-d94f943674b444ac9ccc468017961b432023-02-01T08:16:45ZengVietnam Ministry of Science and TechnologyVietnam Journal of Science, Technology and Engineering2525-24612615-99372022-03-0162310.31276/VJSTE.62(3).19-25Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysisQuang Hoang Hanh Le0Nguyen Ngoc Chau Tran1Thi Cam Tuyen Nguyen2Huong Giang Nguyen3Kien Trieu Lac4Thi Anh Pham5Pham Ngoc Son Chu6TSL Hi-Tech Training and Research CenterTSL Hi-Tech Training and Research CenterTSL Hi-Tech Training and Research CenterHo Chi Minh City Centre for the Quality Control of Food, Drug and CosmeticsHo Chi Minh City Centre for the Quality Control of Food, Drug and CosmeticsChemical Society of Ho Chi Minh CityChemical Society of Ho Chi Minh City Agilent’s innovative EMR-Lipid and Captiva EMRLipid sorbents efficiently replace the traditional QuEChERS d-SPE clean-up products in selective lipid removal from fatty matrices, thus improving instrumental analytical reproducibility, reliability, and long-term use. These products have dual functionality; a hydrophobic interaction between the sorbent with long aliphatic lipid chains of the matrices, which allows for complete lipid retention, and a size exclusion property that does not retain analytes, thus this maximizes, in principle, analyte recovery in any sample. As most of the analytes under study were polar or not highly nonpolar and had a relatively large size, the examination of small-sized nonpolar or less polar compounds is necessary to check for partial retention by the sorbents and if any, further precautions should be taken when using these sorbents. These queries are answered in our present communication concerning the analytes Trifluralin (logP: 5.27), Fipronil (logP: 4.0), and Clenbuterol (logP: 2.63). https://vietnamscience.vjst.vn/index.php/vjste/article/view/105Captiva EMR-LipidEMR-Lipid Sorbentssize exclusion and hydrophobic interaction with fatty materialsfood analysis
spellingShingle Quang Hoang Hanh Le
Nguyen Ngoc Chau Tran
Thi Cam Tuyen Nguyen
Huong Giang Nguyen
Kien Trieu Lac
Thi Anh Pham
Pham Ngoc Son Chu
Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysis
Vietnam Journal of Science, Technology and Engineering
Captiva EMR-Lipid
EMR-Lipid Sorbents
size exclusion and hydrophobic interaction with fatty materials
food analysis
title Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysis
title_full Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysis
title_fullStr Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysis
title_full_unstemmed Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysis
title_short Comparison and applicability of Agilent EMR-Lipid and Captiva EMR-Lipid Sorbents in QuEChERS method for food analysis
title_sort comparison and applicability of agilent emr lipid and captiva emr lipid sorbents in quechers method for food analysis
topic Captiva EMR-Lipid
EMR-Lipid Sorbents
size exclusion and hydrophobic interaction with fatty materials
food analysis
url https://vietnamscience.vjst.vn/index.php/vjste/article/view/105
work_keys_str_mv AT quanghoanghanhle comparisonandapplicabilityofagilentemrlipidandcaptivaemrlipidsorbentsinquechersmethodforfoodanalysis
AT nguyenngocchautran comparisonandapplicabilityofagilentemrlipidandcaptivaemrlipidsorbentsinquechersmethodforfoodanalysis
AT thicamtuyennguyen comparisonandapplicabilityofagilentemrlipidandcaptivaemrlipidsorbentsinquechersmethodforfoodanalysis
AT huonggiangnguyen comparisonandapplicabilityofagilentemrlipidandcaptivaemrlipidsorbentsinquechersmethodforfoodanalysis
AT kientrieulac comparisonandapplicabilityofagilentemrlipidandcaptivaemrlipidsorbentsinquechersmethodforfoodanalysis
AT thianhpham comparisonandapplicabilityofagilentemrlipidandcaptivaemrlipidsorbentsinquechersmethodforfoodanalysis
AT phamngocsonchu comparisonandapplicabilityofagilentemrlipidandcaptivaemrlipidsorbentsinquechersmethodforfoodanalysis