Isolation and Identification of Antioxidant Compounds from Stained Pyrus serotina Fruit Extract for alternative tea development

Hyeong-Ju Jeon, Seung-Ho Lee
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Abstract

For alternative tea development, 2 kg of dried stained Pyrus serotina was extracted with 70 % MeOH aqueous solution, and the extract was solvent-fractionated with EtOAc, n-BuOH and Water. Two types of bioactive compounds were separated from the EtOAc fraction, by purification with silica gel and octadecyle silica gel (ODS) column chromatography. The chemical structure of the compounds were identified as quercetin (1) and geniposide (2) by analyzing spectral data with NMR, MS and IR. For the evaluation of antioxidant activity, DPPH inhibitory efficacy test and ROS production inhibitory efficacy test were performed. First, as a result of measuring the DPPH inhibitory efficacy of two samples up to the highest concentration of 50 ppm in the DPPH inhibition efficacy test, the IC50 values of NICS-1 and NICS-2 were measured to be 25.554 ppm and 22.943 ppm, respectively. In ROS production inhibitory efficacy test, the ROS production was reduced in a concentration-dependent manner in both samples, and statistically significantly inhibited ROS production compared to the UV irradiation group. According to recent reports, this study is expected to develop eco-friendly sustainable health drinks using pears and cheese and functional raw materials using pears and teeth through organic cosmetics.
染色梨果提取物中抗氧化成分的分离与鉴定
为了开发替代茶,用70%的MeOH水溶液提取2 kg干燥染色的梨属血清,用乙酸乙酯、正丁醇和水进行溶剂分馏。通过硅胶和十八环硅胶(ODS)柱层析纯化,从乙酸乙酯馏分中分离出两种生物活性化合物。通过核磁共振、质谱和红外光谱分析,鉴定化合物的化学结构为槲皮素(1)和栀子苷(2)。通过DPPH抑制作用试验和ROS抑制作用试验评价其抗氧化活性。首先,在DPPH抑制效果测试中,测量了两种样品在最高浓度为50 ppm时的DPPH抑制效果,测得NICS-1和NICS-2的IC50值分别为25.554 ppm和22.943 ppm。在抑制ROS生成效果测试中,两种样品的ROS生成均呈浓度依赖性降低,且与UV照射组相比,具有统计学意义的抑制ROS生成。根据最近的报道,该研究有望通过有机化妆品开发出利用梨和奶酪的环保可持续健康饮料和利用梨和牙齿的功能性原料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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