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首页> 外文期刊>International Journal of Technology >Upscaling the Cymbopogon citratus (lemongrass) Extraction Process to Obtain Optimum Alpha-glucosidase Inhibitor (AGI) Levels
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Upscaling the Cymbopogon citratus (lemongrass) Extraction Process to Obtain Optimum Alpha-glucosidase Inhibitor (AGI) Levels

机译:升高Cymbogon Citratus(柠檬草)提取过程,以获得最佳α-葡糖苷酶抑制剂(AGI)水平

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摘要

Cymbopogon citratus (lemongrass) has a great potential to be commercialized as an antidiabetic medication due to its alpha glucosidase inhibitor (AGI) activity. To achieve this goal, this paper continues the study of extraction optimization at the pilot scale to determine the effect of sample quantities on AGI activity. This experiment comprised three phases: designing the percolator, optimizing the process parameters and conditions, and determining the correlation between various sample quantities and AGI activity. The effects of macerating the plant material prior to percolation and using different solvent flow rates during extraction were observed. Four different variations were used in the extraction process trials: 63.09 cm3 s -1, 94.64 cm3 s -1, 126.20 cm3 s -1, and 189.30 cm3 s -1. Sample quantities of 400 g and 500 g were used to upscale the analysis. The results showed that maceration did not significantly increase AGI activity (P ?0.17), but it did shorten the time needed to reach equilibrium concentration. Similarly, the solvent flow rate variations did not affect AGI activity (P ?0.078), but they shortened the extraction time. A significant decrease in AGI activities was observed when switching from laboratory to pilot scale, and an even greater decrease in AGI activity was observed when the sample quantity was increased to pilot scale. It was therefore concluded that lemongrass extract can only be used to maintain optimal AGI activity at the maximum sample quantity of 300 g for the percolator designed in this research, which produced an extraction yield of 39.45±1.59%.
机译:Cymbogon Citratus(柠檬草)由于其α葡萄糖磷酶抑制剂(AGI)活性而具有作为抗糖尿病药物的潜力。为实现这一目标,本文继续研究试验规模提取优化,以确定样品量对AGI活性的影响。该实验包括三个阶段:设计渗滤器,优化工艺参数和条件,并确定各种样品量和AGI活动之间的相关性。观察到在萃取期间在渗透和使用不同溶剂流速的渗透和使用不同溶剂流速中浸渍植物材料的效果。在提取过程试验中使用四种不同的变化:63.09cm 3 S -1,94.64cm 3 S -1,126.20cm 3 S -1和189.30cm 3 S -1。使用400g和500g的样品量用于高档分析。结果表明,浸渍没有显着增加AGI活动(P <0.17),但确实缩短了达到平衡浓度所需的时间。类似地,溶剂流速变化不影响AGI活性(P <0.078),但它们缩短了提取时间。当从实验室切换到先导量表时,观察到AGI活性的显着降低,并且当样品量增加到导频量表时,观察到AGI活性的更大降低。因此得出结论,柠檬草提取物只能用于在本研究中设计的渗滤器的最大样本量的最大样本量的最佳样品量,其产生39.45±1.59%的提取产率。

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