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Extraction Optimization of Polyphenols from Waste Kiwi Fruit Seeds (Actinidia chinensis Planch.) and Evaluation of Its Antioxidant and Anti-Inflammatory Properties

机译:废弃猕猴桃种子中多酚的提取工艺优化及其抗氧化抗炎性能评价

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摘要

Kiwi fruit (Actinidia chinensis Planch.) seeds, present as a by-product in the food and pharmaceutical industries, remain underutilized. In this study the extraction conditions for the maximum recovery of total phenolic content (TPC) with high DPPH scavenging capacities (DPPHsc) were analyzed for kiwi fruit seed polyphenols (KSP) by response surface methodology. The optimal conditions for the highest yield of TPC (53.73 mg GAE/g DW) with 63.25% DPPHsc was found by using an extraction time of 79.65 min with an eluent containing 59.45% acetone at 38.35 °C and a 1:11.52 (w/v) solid/liquid ratio. Compared with butyl hydroxy toluene (BHT), a synthetic antioxidant, the extracted KSP showed higher DPPHsc and ferric reducing antioxidant power, but was less efficient than grape seed polyphenols extracted under the same optimum conditions. We also showed that the extracted KSP exhibited strong anti-inflammatory activities by suppressing the secretion of pro-inflammatory cytokines like interleukin-1β (IL-1β) and tumor necrosis factor-alpha (TNF-α) in lipopolysaccharides (LPS)-induced RAW 264.7 cells. High performance liquid chromatography-electrochemical detector (HPLC-ECD) analysis of the extracted KSP under optimized conditions revealed that the extract was mainly composed of five polyphenolic compounds. Our work showed the development of an optimal extraction process of the KSP, which presented excellent antioxidant and anti-inflammatory activities, indicating that kiwi fruit seeds may further be utilized as a potential source of natural biological active compounds.
机译:在食品和制药工业中作为副产品存在的奇异果(猕猴桃)种子仍未得到充分利用。在这项研究中,采用响应面分析法分析了具有高DPPH清除能力(DPPHsc)的最大回收总酚含量(TPPH)的提取条件,用于猕猴桃种子多酚(KSP)。通过使用79.65分钟的萃取时间以及在38.35°C和1:11.52(w / w)的含59.45%丙酮的洗脱液,可以找到具有63.25%DPPHsc的TPC最高收率(53.73 mg GAE / g DW)的最佳条件。 v)固/液比。与合成抗氧化剂丁基羟基甲苯(BHT)相比,萃取的KSP表现出更高的DPPHsc和三价铁还原抗氧化能力,但效率不如在相同最佳条件下萃取的葡萄籽多酚。我们还显示,提取的KSP通过抑制脂多糖(LPS)诱导的RAW中促炎细胞因子如白介素1β(IL-1β)和肿瘤坏死因子α(TNF-α)的分泌而表现出强大的抗炎活性。 264.7细胞。高效液相色谱-电化学检测器(HPLC-ECD)在最佳条件下对提取的KSP进行分析,结果表明提取物主要由五种多酚化合物组成。我们的工作表明了KSP最佳提取工艺的发展,该工艺具有出色的抗氧化和抗炎活性,表明猕猴桃种子可进一步用作天然生物活性化合物的潜在来源。

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