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Biorefining of Bergenia crassifolia L. roots and leaves by high pressure extraction methods and evaluation of antioxidant properties and main phytochemicals in extracts and plant material

机译:高压提取法对香叶菜根和叶的生物精制及提取物和植物材料中抗氧化性能和主要植物化学成分的评价

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Various extraction schemes, methods and solvents, including supercritical fluid extraction with carbon dioxide (SFE-CO2) and pressurised liquid extraction (PLE) were studied for valorising Bergenia crassifolia roots and leaves as a source of natural antioxidants. It was shown that application of SFE-CO2 and PLE schemes with different solvents and process parameters may provide several fractions, in total constituting >66% of soluble substances from the roots and >48 from the leaves. Total phenolic content (TPC), trolox equivalent antioxidant capacity (TEAC) in scavenging ABTS(center dot+) and oxygen radical absorbance capacity (ORAC) activities of extracts and solid plant materials were determined. Consecutive extractions with increasing polarity solvents enabled to isolate different amounts of antioxidants. Generally, in case of roots higher antioxidant capacity values were obtained with acetone, while in case of leaves hydroethanolic solvent gave higher values. Considering that protic solvents were applied for re-extracting the residues they were proved as effective solvents for exhaustive processing of plant material. The extracts inhibited oxidation of rape seed oil and its emulsion at 120 degrees C as measured by the Oxipres and Rancimat methods. The major phytochemicals, namely bergenin, catechin gallate, ellagic acid and quercetin 3-beta-D glucoside were quantified in B. crassifolia leaf and root extracts by UPLC/ESI-QTOF-MS; the roots contained several times higher concentrations of these compounds than the leaves, except for ellagic acid, which was not detected in the roots. The results obtained are expected in assisting to increase the prospects of expanding the cultivation of B. crassifolia as a promising industrial crop for developing various specialty natural products. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究了各种萃取方案,方法和溶剂,包括用二氧化碳超临界流体萃取(SFE-CO2)和加压液体萃取(PLE)来作为天然抗氧化剂来源的香叶菜根和叶子的增值。结果表明,将SFE-CO2和PLE方案与不同的溶剂和工艺参数一起使用可能会提供几个部分,这些部分总共构成了根部> 66%的可溶性物质和> 48%的叶子。测定了提取物和固体植物材料的总酚含量(TPC),trolox当量抗氧化能力(TEAC)清除ABTS(中心点+)和氧自由基吸收能力(ORAC)活性。通过增加极性溶剂的连续萃取,可以分离出不同量的抗氧化剂。通常,在根部情况下,使用丙酮可获得更高的抗氧化能力值,而在叶片情况下,使用氢乙醇溶剂可获得更高的值。考虑到将质子溶剂用于残留物的再萃取,它们被证明是有效处理植物材料的有效溶剂。通过Oxipres和Rancimat方法测量,提取物在120摄氏度下抑制了菜籽油及其乳剂的氧化。通过UPLC / ESI-QTOF-MS定量测定了桔梗叶片和根部提取物中的主要植物化学成分,即白菜素,儿茶素没食子酸酯,鞣花酸和槲皮素3-β-D糖苷。除鞣花酸外,根中所含的这些化合物的浓度是叶中的几倍。预期获得的结果将有助于增加扩大B. crassifolia种植的前景,作为发展各种特殊天然产物的有前途的工业作物。 (C)2016 Elsevier B.V.保留所有权利。

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