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The Extraction and Activity Test of Bioactive Compounds in Phaleria macrocarpa as Antioxidants

机译:磷虾宏观生物活性化合物作为抗氧化剂的萃取和活性试验

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Phaleria macrocarpa, one of native Indonesian plants, contains various bioactive compounds and thus possesses antioxidant, antimicrobial, or even anti cancer attributes. This study is the first stage of ongoing 3 years project to isolate and quantify the antioxidant content in the fruit of Phaleria macrocarpa, which possessed higher antioxidant activity than berry fruits, especially for natural food preservative application. In particular, the optimum condition for the extraction process using methanol was the main purpose of this study. The raw material pretreatment (drying) method prior to extraction was also investigated. The bioactivity of the extract obtained from each method was then compared to commercial dried P. macrocarpa by phytochemical screening methods. Tray and air drying methods resulted in the most complete phytochemical content followed by sun drying, in which the alkaloid were lost. Commercial dried P.macrocarpa showed similar phytochemical contents with sun drying specimen, but with additional lost of saponin compounds. The antioxidant contents were measured as DPPH equivalencies which showed tray drying method had the best antioxidant activity of 0.200 μmol DPPH/mg (dry basis), followed by air drying and sun drying of 0.117 and 0.037 μmol DPPH/mg (dry basis), respectively. Two important extraction process parameters were optimized using central composite experimental design by varying operation temperatures from 35 to 50 °C and F:S (g/mL) ratio from 1:20 to 1:50. The response surface analysis showed a maximum response point (F:S=0.02 and T= 50 °C), at which the highest antioxidant content (yield) of 0.3234 μmol DPPH/mg dry basis could be achieved.
机译:Phaleria Macrocarpa是本土印度尼西亚植物之一,含有各种生物活性化合物,因此具有抗氧化剂,抗微生物或甚至抗癌属性。本研究是持续3年项目的第一阶段,以分离和量化蛋白质宏观疗法果实果实中的抗氧化含量,这些抗氧化活性高于浆果水果,特别是对于天然食品防腐剂应用。特别是,使用甲醇的提取过程的最佳条件是本研究的主要目的。还研究了在提取之前的原料预处理(干燥)方法。然后将从每种方法获得的提取物的生物活性通过植物化学筛选方法与商业干燥的宏观糖粉进行比较。托盘和空气干燥方法导致最完整的植物化学含量,然后是阳光干燥,其中生物碱损失。商业干燥P.Macrocarpa显示出与阳光干燥标本类似的植物化学内容物,但含有额外的皂苷化合物。测量抗氧化物含量作为DPPH当量,显示托盘干燥方法的最佳抗氧化活性为0.200μmoldpph/ mg(干基),然后分别为0.117和0.037μmoldpph/ mg(干基)的空气干燥和阳光干燥。 。通过从1:20至1:50从35至50°C和F:S(g / ml)的比率不同,使用中央复合实验设计优化了两个重要的提取工艺参数。响应表面分析显示最大响应点(F:S = 0.02和T = 50℃),其可以实现0.3234μmoldpph/ mg干基的最高抗氧化含量(产率)。

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