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Distribution of Polyphenolic and Isoprenoid Compounds and Biological Activity Differences between in the Fruit Skin + Pulp, Seeds, and Leaves of New Biotypes of Elaeagnusmultiflora Thunb

机译:水果皮肤+纸浆,种子和ElaeagnusMultiflora Thunb新生物型的果皮+纸浆,种子和叶片之间的多酚和异戊二烯化合物的分布及生物活性差异

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摘要

The purpose of this study was to determine the distribution of polyphenolic and isoprenoid compounds and organic acids in the fruit skin + pulp, seeds, and leaves of six new biotypes of Elaeagnus multiflora Thunb., as well as their in vitro biological potency. The polyphenols and isoprenoids were determined with UPLC-PDA-MS/MS (ultra-performance liquid chromatography coupled to photodiode array detection and electrospray ionization tandem mass spectrometry) and RRLC-MS/MS (rapid resolution liquid chromatography/tandem mass spectrometry) methods, the organic acid with HPLC-RID (high-performance liquid chromatography coupled to a Refractive Index Detector), and the antioxidant capacity using ABTS and FRAP assays. Enzymatic activity was established as the ability to inhibit α-amylase, α-glucosidase, and pancreatic lipase. Owing to such an effective technique, 88 compounds were recorded, with 17 polyphenolic compounds and 3 isoprenoids identified for the first time in the seeds and leaves of cherry silverberry. In total, 55 compounds were identified in the leaves, 36 in the seeds, and 31 in the fruit skin + pulp. The predominant polyphenol was polymeric procyanidin (66–95% of total polyphenolics), whereas the predominant isoprenoids were chlorophyll b and (all-E)-lycopene. The results of our work noted that there are significant differences in the profiles of several secondary metabolites between the analyzed parts of the plant, and depending on the need, the compounds can be used to develop different innovative food or cosmetic products.
机译:该研究的目的是确定果皮+纸浆,种子和六种新生物型的果皮+纸浆,种子和叶片中的多酚和异丙酚化合物和有机酸的分布。以及它们的体外生物效力。用UPLC-PDA-MS / MS(偶联至光电二极管阵列检测和电喷雾电离串联质谱法)和RRLC-MS / MS(快速分辨率液相色谱/串联质谱)方法测定多酚和异戊二烯。方法,用HPLC除去的有机酸(偶联到折射率检测器的高效液相色谱),以及使用ABT和FRAP测定的抗氧化能力。建立酶活性作为抑制α-淀粉酶,α-葡糖苷酶和胰脂肪酶的能力。由于这种有效的技术,记录了88种化合物,其中17种多酚化合物和3个异戊二烯,在樱桃丝莓的种子和叶中首次鉴定出来。总共,在树叶中鉴定了55种化合物,种子36,果皮+纸浆31中。主要的多酚是聚合物原花青素(总量的66-95%),而主要的异戊二烯是叶绿素B和(All-E) - 丙烯烯。我们的工作结果指出,植物分析部分之间的几种次级代谢产物的谱存在显着差异,并且根据需要,该化合物可用于开发不同的创新食品或化妆品。

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