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Neuroprotective Effect of Terpenoids Recovered from Olive Oil By-Products

机译:萜类化合物从橄榄油副产物中回收的神经保护作用

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摘要

The neuroprotective potential of 32 natural extracts obtained from olive oil by-products was investigated. The online coupling of supercritical fluid extraction (SFE) and dynamic adsorption/desorption allowed the selective enrichment of olive leaves extracts in different terpenoids’ families. Seven commercial adsorbents based on silica gel, zeolite, aluminum oxide, and sea sand were used with SFE at three different extraction times to evaluate their selectivity towards different terpene families. Collected fractions were analyzed by gas chromatography coupled to quadrupole-time-of-flight mass spectrometry (GC-QTOF-MS) to quantify the recoveries of monoterpenes (C10), sesquiterpenes (C15), diterpenes (C20), and triterpenes (C30). A systematic analysis of the neuroprotective activity of the natural extracts was then carried out. Thus, a set of in vitro bioactivity assays including enzymatic (acetylcholinesterase (AChE), butyrylcholinesterase (BChE)), and anti-inflammatory (lipoxidase (LOX)), as well as antioxidant (ABTS), and reactive oxygen and nitrogen species (ROS and RNS, respectively) activity tests were applied to screen for the neuroprotective potential of these extracts. Statistical analysis showed that olive leaves adsorbates from SS exhibited the highest biological activity potential in terms of neuroprotective effect. Blood–brain barrier permeation and cytotoxicity in HK-2 cells and human THP-1 monocytes were studied for the selected olive leaves fraction corroborating its potential.
机译:研究了从橄榄油副产物获得的32种自然提取物的神经保护潜力。超临界流体萃取(SFE)和动态吸附/解吸的在线耦合允许在不同萜类家族中的橄榄叶提取物的选择性富集。基于硅胶,沸石,氧化铝和海砂的七种商业吸附剂在三次不同的提取时间使用SFE,以评估它们对不同萜类家族的选择性。通过气相色谱法分析收集的级分,偶联到四极 - 飞行时间质谱(GC-QTOF-MS),以定量单波通(C10),倍二萜(C15),二萜(C20)和Triterpenes(C30)的回收率。然后进行对天然萃取物的神经保护活性的系统分析。因此,一组体外生物活性测定,包括酶促(乙酰胆碱酯酶(AcaN),丁酰基胆碱酯酶(BCHE)和抗炎(脂氧化酶(LOX))以及抗氧化剂(ABTS)和反应性氧气和氮物质(ROS和RNS分别)活性试验施加对这些提取物的神经保护潜力的筛选。统计学分析表明,橄榄叶从SS吸附到神经保护作用方面具有最高的生物活性潜力。研究了HK-2细胞和人THP-1单核细胞中的血脑屏障渗透和细胞毒性,用于选定的橄榄叶部分证实其潜力。

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