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Publication Date:
June 2005
ISSN:
1437-4331
DOI:
10.1515/CCLM.2004.070

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Clinical Chemistry and Laboratory Medicine (CCLM)

Published in Association with the International Federation of Clinical Chemistry and Laboratory Medicine and the European Federation of Clinical Chemistry and Laboratory Medicine

Editor-in-Chief: Plebani, Mario

Editorial Board Member: Lippi, Giuseppe / Gillery, Philippe / Kazmierczak, Steven / Lackner, Karl J. / Melichar, Bohuslav / Siest, Gérard / Whitfield, John B. / Abi Fadel, Marianne / Alvarez Menendez, Francisco V. / Azzazy, Hassan M.E. / Diamandis, Eleftherios P. / Eckardstein, Arnold / Favaloro, Emmanuel J. / Griesmacher, Andrea / Herrmann, Wolfgang / Hoffmann, Johannes J.M.L. / Hooijkaas, Herbert / Ichihara, Kiyoshi / Kaabachi, Naziha / Kim, Jeong-Ho / Korte, Wolfgang / Kroupis, Christos / Lai, Leslie Charles / Lam, Wai Kei Christopher / Marc, Janja / Miyoshi, Eiji / Özben, Tomris / Palicka, Vladimir / Panteghini, Mauro / Queralto, Jose M. / Scartezini, Marileia / Simundic, Ana-Maria / Tsongalis, Gregory J. / Wallemacq, Pierre E. / Yan, Shengkai / Young, Ian S. / Chiu, Rossa Wai Kwun / Ghosh, Debabrata / Kappelmayer, Janos / Lehmann, Sylvain / Sypniewska, Grazyna

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Increased IMPACT FACTOR 2011: 2.150
Rank 10 out of 32 in category Medical Laboratory Technology in the 2011 Thomson Reuters Journal Citation Report/Science Edition

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Impurities from polypropylene microcentrifuge tubes as a potential source of interference in simultaneous analysis of multiple lipid-soluble antioxidants by HPLC with electrochemical detection

Hsiu-Chuan Yen / Yi-Tzu Hsu

Citation Information: Clinical Chemistry and Laboratory Medicine. Volume 42, Issue 4, Pages 390–395, ISSN (Print) 1434-6621, DOI: 10.1515/CCLM.2004.070, June 2005

Publication History:
Published Online:
2005-06-01

Abstract

High-performance liquid chromatography (HPLC) with electrochemical detection was used to analyze lipidsoluble antioxidants and micronutrients in plasma. Small amounts of plasma samples are often extracted in polypropylene (PP) microcentrifuge tubes before HPLC analysis due to its convenience. We therefore investigated the effect of impurities released from different PP tubes during extraction on the electrochemical detection of retinol, lutein, α-tocopherol, γ-tocopherol, retinyl palmitate, β-carotene and total coenzyme Q10 by an HPLC systemwith a coulometric array detector (CoulArray HPLC). An array of eight electrical potentials and gradient elution were applied. Human plasma or ultrapure water were extracted in four different PP tubes. Peaks at different retention times with varied amounts of unknown compounds were detected from different PP tubes. Although all those unknown peaks could be differentiated frompeaks of interest by the CoulArray HPLC, they caused busy chromatographs, and one peak had an overlap with the dominant peak of lutein. Moreover, that peak completely masked the lutein peak when only one oxidizing potential was applied. Our results suggest potential interference fromPP tubes on electrochemical detection especially when using only one electrical potential or having poor separation for these antioxidants if PP tubes are not carefully tested.

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