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Food Ingredient Extracts of Cyclopia subternata (Honeybush): Variation in Phenolic Composition and Antioxidant Capacity

机译:Cyclopia subternata(Honeybush)食品成分提取物:酚类成分和抗氧化能力的变化

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摘要

Cyclopia subternata plants are traditionally used for the production of the South African herbal tea, honeybush, and recently as aqueous extracts for the food industry. A C. subternata aqueous extract and mangiferin (a major constituent) are known to have anti-diabetic properties. Variation in phenolic composition and antioxidant capacity is expected due to cultivation largely from seedlings, having implications for extract standardization and quality control. Aqueous extracts from 64 seedlings of the same age, cultivated under the same environmental conditions, were analyzed for individual compound content, total polyphenol (TP) content and total antioxidant capacity (TAC) in a number of assays. An HPLC method was developed and validated to allow quantification of xanthones (mangiferin, isomangiferin), flavanones (hesperidin, eriocitrin), a flavone (scolymoside), a benzophenone (iriflophenone-3-C-β-glucoside) and dihydrochalcones (phloretin-3',5'-di-C-β-glucoside, 3-hydroxyphloretin-3',5'-di-C-hexoside). Additional compounds were tentatively identified using mass spectrometric detection, with the presence of the 3-hydroxyphloretin-glycoside, an iriflophenone-di-O,C-hexoside, an eriodictyol-di-C-hexoside and vicenin-2 being demonstrated for the first time. Variability of the individual phenolic compound contents was generally higher than that of the TP content and TAC values. Among the phenolic compounds, scolymoside, hesperidin and iriflophenone-3-C-β-glucoside contents were the most variable. A combination of the measured parameters could be useful in product standardization by providing a basis for specifying minimum levels.
机译:传统上,Cyclopia subternata植物用于生产南非凉茶,蜂蜜和最近用于食品工业的水性提取物。已知C.subternata水提取物和芒果苷(主要成分)具有抗糖尿病特性。预计酚类成分和抗氧化剂能力会发生变化,这主要是由于从幼苗中进行种植,这对提取物的标准化和质量控制有影响。在许多试验中,分析了在相同环境条件下种植的64棵相同年龄的幼苗的水提物的单个化合物含量,总多酚(TP)含量和总抗氧化能力(TAC)。已开发并验证了HPLC方法,可定量分析x吨酮(芒果苷,异麦芽素),黄烷酮(橙皮苷,芥酸甘油酯),黄酮(鞘氨醇),二苯甲酮(iriflophenone-3-C-β-葡萄糖苷)和二氢查耳酮(phloretin-3 ',5'-二-C-β-葡糖苷,3-羟基ph-3',5'-二-C-己糖苷)。尝试使用质谱检测法初步鉴定出其他化合物,其中首次发现了3-羟基金鸡苷-糖苷,伊利氟酮-di-O,C-己糖苷,芥酸-di-C-己糖苷和Vicenin-2的存在。 。单个酚类化合物含量的变异性通常高于TP含量和TAC值的变异性。在酚类化合物中,麦考糖苷,橙皮苷和伊利鸟酮-3-C-β-葡萄糖苷含量变化最大。通过提供指定最低水平的依据,可以将测量参数的组合用于产品标准化。

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