Study on Cytotoxicity and Genotoxicity of Repeatedly Fried Cooking Oils by Cell Culture
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Creator Jetana Weerakul
Title Study on Cytotoxicity and Genotoxicity of Repeatedly Fried Cooking Oils by Cell Culture
Contributor Wongwiwat Tassaneeyakul, Pramote Mahakunakorn, Supattra Porasuphatana
Publisher Faculty of Pharmaceutical Sciences KKU MSU UBU
Publication Year 2552
Journal Title Isan Journal ofPharmaceutical Sciences
Journal Vol. 5
Journal No. 3
Page no. 235-242
Keyword Cytotoxicity, Genotoxicity, Repeatedly fried cooking oils
URL Website https://tci-thaijo.org/index.php/IJPS
Website title Isan Journal ofPharmaceutical Sciences, IJPS
ISSN 19050852
Abstract This study aimed to investigate the formation of polycyclic aromatic hydrocarbons (PAHs) and cytotoxicity of extracts from repeatedly fried cooking oils. Special focus was on the correlation between the level of total polar compounds (TPCs) and toxicity to the hepatoma cell line (HepG2). Soybean (SBO) and palm (PO) oil samples were prepared by frying dough at high temperature (165?C), and periodically determining %TPCs by the standard IUPAC 2.507 method. Analysis of PAHs was carried out by liquid extraction followed by gas chromatography (GC), using PAHs mixed consisting of 18 PAHs compounds as standards. Cytotoxicities were measured using cell viability (MTT assay) and micronucleus assays. Results showed undetectable levels of PAHs in frying SBO at %TPCs less than 25%. By comparing fluorene, phenanthrene and anthracene were detected in PO at 20.30% and higher, indicating the formation of PAHs in PO when its %TPCs were close to or exceeding the legal limitation of 25%. Cytotoxicity of extracts from repeated frying PO was confirmed by the reduction of cell viability at 48 and 72 hours incubation. Formation of micronucleus gradually increased with increases in %TPCs, and reached significant levels at 39.66%TPCs and 29.54%TPCs for SBO and PO, respectively. Results from this study suggest that carcinogenic PAHs form when cooking oils are repeatedly used. This is the case for higher %TPCs especially. These findings may aid campaigns for consumer protection against toxic substances generated from repeatedly used cooking oil.
Faculty of Pharmaceutical Sciences, Khon Kaen University

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