首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Human colon cell culture models of different transformation stages to assess conjugated linoleic acid and conjugated linolenic acid metabolism: Challenges and chances
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Human colon cell culture models of different transformation stages to assess conjugated linoleic acid and conjugated linolenic acid metabolism: Challenges and chances

机译:用于评估共轭亚油酸和共轭亚麻酸代谢的不同转化阶段的人类结肠细胞培养模型:挑战和机遇

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摘要

Both cellular transformation status and cell culture conditions affect fatty acid metabolism. Hence, the incorporation and metabolism of c9,. t11-CLA (conjugated linoleic acid) and other CFAs (conjugated fatty acids) were compared in colon cells (LT-97, adenoma; HT-29, adenocarcinoma). Growth inhibition by CFA in LT-97 cells was assessed via the DAPI (4',6-diamidino-2-phenylindole dihydrochloride) assay. Basal gene expression of desaturases (Δ5, Δ6 and Δ9) and elongases (1, 2, 5 and 6) was determined in LT-97 using PCR. Analysis of cellular fatty acids revealed a 2-fold higher incorporation of c9,. t11-CLA (40 and 80 μM) in HT-29 cells compared to LT-97 cells. The β-oxidized and elongated conjugated dienoic (CD) fatty acids differed by 8-fold (CD-C16:2/CD-C20:2; HT-29: 8:1; LT-97: 1:1). Notably, LT-97 cells were shown to convert conjugated linolenic acid (CLnA) to CLA. Moreover, LT-97 cells revealed no basal expression of elongase 2. CLnA caused stronger growth inhibition (≤80 μM) compared to CLA (200 μM). The results indicate that LT-97 cells represent a superior model to carry out elongation and desaturation studies of unsaturated and conjugated fatty acids compared to HT-29 cells. Nevertheless, further in-depth metabolic and transcriptomic analyses are required to confirm this suggestion.
机译:细胞转化状态和细胞培养条件都影响脂肪酸代谢。因此,c9的掺入和代谢。在结肠细胞(LT-97,腺瘤; HT-29,腺癌)中比较了t11-CLA(共轭亚油酸)和其他CFA(共轭脂肪酸)。通过DAPI(4',6-二mid基-2-苯基吲哚二盐酸盐)测定评估了CFA在LT-97细胞中的生长抑制。使用PCR在LT-97中测定去饱和酶(Δ5,Δ6和Δ9)和延伸酶(1、2、5和6)的基础基因表达。细胞脂肪酸的分析表明,c9的掺入高2倍。与LT-97细胞相比,HT-29细胞中的t11-CLA(40和80μM)。 β氧化和伸长的共轭二烯(CD)脂肪酸相差8倍(CD-C16:2 / CD-C20:2; HT-29:8:1; LT-97:1:1)。值得注意的是,LT-97细胞已显示将共轭亚麻酸(CLnA)转化为CLA。此外,LT-97细胞未显示延伸酶2的基础表达。与CLA(200μM)相比,CLnA引起更强的生长抑制作用(≤80μM)。结果表明,与HT-29细胞相比,LT-97细胞代表了进行不饱和脂肪酸和共轭脂肪酸伸长和去饱和研究的优良模型。然而,需要进一步深入的代谢和转录组学分析来证实这一建议。

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