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Optimization of Lycopene Extraction from Tomato Cell Suspension Culture by Response Surface Methodology

机译:响应面法优化番茄细胞悬液中番茄红素的提取

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摘要

Radioisotope-labeled lycopene is an important tool for biomedical research but currently is not commercially available. A tomato cell suspension culture system for the production of radioisotope-labeled lycopene was previously developed in our laboratory. In the current study, the goal was to optimize the lycopene extraction efficiency from tomato cell cultures for preparatory high-performance liquid chromatography (HPLC) separation. We employed response surface methodology (RSM), which combines fractional factorial design and a second-degree polynomial model. Tomato cells were homogenized with ethanol, saponified by KOH, and extracted with hexane, and the lycopene content was analyzed by HPLC-PDA. We varied five factors at five levels: ethanol volume (1.33–4 mL/g); homogenization period (0–40 s/g); saturated KOH solution volume (0–0.67 mL/g); hexane volume (1.67–3 mL/g); and vortex period (5–25 s/g). Ridge analysis by SAS suggested that the optimal extraction procedure to extract 1 g of tomato cells was at 1.56 mL of ethanol, 28 s homogenization, 0.29 mL of KOH, 2.49 mL of hexane, and 17.5 s vortex. These optimal conditions predicted by RSM were confirmed to enhance lycopene yield from standardized tomato cell cultures by more than 3-fold.
机译:放射性同位素标记的番茄红素是生物医学研究的重要工具,但目前尚无商业销售。以前在我们的实验室中开发了用于生产放射性同位素标记的番茄红素的番茄细胞悬浮培养系统。在当前的研究中,目标是优化从番茄细胞培养物中番茄红素的提取效率,以进行制备型高效液相色谱(HPLC)分离。我们采用了响应面方法(RSM),该方法结合了分数阶乘设计和二次多项式模型。将番茄细胞用乙醇匀浆,用KOH皂化,并用己烷萃取,并通过HPLC-PDA分析番茄红素含量。我们在五个水平上改变了五个因素:乙醇体积(1.33–4 mL / g);均质时间(0-40 s / g);饱和KOH溶液体积(0-0.67 mL / g);己烷体积(1.67–3 mL / g);涡旋周期(5-25 s / g)。 SAS的Ridge分析表明,提取1 g番茄细胞的最佳提取程序为1.56 mL乙醇,28 s匀浆,0.29 mL KOH,2.49 mL己烷和17.5 s涡旋。经证实,RSM预测的这些最佳条件可使标准番茄细胞培养物中番茄红素的产量提高3倍以上。

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