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首页> 外文期刊>BMC Complementary and Alternative Medicine >Comparison of aqueous, polyethylene glycol-aqueous and ethanolic propolis extracts: antioxidant and mitochondria modulating properties
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Comparison of aqueous, polyethylene glycol-aqueous and ethanolic propolis extracts: antioxidant and mitochondria modulating properties

机译:水性,聚乙二醇水和乙醇蜂胶提取物的比较:抗氧化剂和线粒体调节特性

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Propolis is multicomponent substance collected by honeybees from various plants. It is known for numerous biological effects and is commonly used as ethanolic extract because most of active substances of propolis are ethanol-soluble. However, water-based propolis extracts could be applied more safely, as this solvent is more biocompatible. On the other hand, water extracts has significantly smaller range and quantity of active compounds. The extraction power of water could be enhanced by adding co-solvent which increases both solubility and penetration of propolis compounds. However, variation of solvents results in different composition of active substances that might have distinct effects. The majority of biological effects of propolis are attributed to the antioxidant properties of its active compounds. Antioxidant effect might be a result of either direct scavenging of ROS or modulation of ROS producing organelle activity. Therefore, the aim of this study was to investigate and compare chemical composition, antioxidant properties and effects on mitochondrial respiration of aqueous (AqEP), polyethylene glycol-aqueous (Pg-AqEP) and ethanolic (EEP) propolis extracts. Chemical composition of propolis extracts was determined using HPLC and Folin-Ciocalteu method. Ability to neutralize H2O2 and intracellular ROS concentration in C6 glioma cells were determined fluorometrically by using 10-acetyl-3,7-dihydroxyphenoxazine and 2′,7′-dichlorofluorescein diacetate, respectively. Mitochondrial superoxide generation was assessed under fluorescent microscope by using MitoSOX Red. Oxygen uptake rates of mitochondria were recorded by high-resolution respirometer Oxygraph-2?k. Our data revealed that phenolic acids and aldehydes make up 40–42% of all extracted and identified compounds in AqEP and Pg-AqEP and only 16% in EEP. All preparations revealed similar antioxidant activity in cell culture medium but Pg-AqEP and EEP demonstrated better mitochondrial superoxide and total intracellular ROS decreasing properties. At higher concentrations, AqEP and EEP inhibited mitochondrial respiration, but Pg-AqEP had concentration-dependent mitochondria-uncoupling effect. Aqueous and non-aqueous propolis extracts differ by composition, but all of them possess antioxidant properties and neutralize H2O2 in solution at similar efficiency. However, both Pg-AqEP and EEP were more effective in decreasing intracellular and intramitochondrial ROS compared to AqEP. At higher concentrations, these preparations affect mitochondrial functions and change energy production in C6 cells.
机译:蜂胶是蜜蜂从各种植物中收集的多组分物质。由于蜂胶的大多数活性物质都可溶于乙醇,因此它具有多种生物学作用,并且通常用作乙醇提取物。但是,水性蜂胶提取物可以更安全地使用,因为这种溶剂具有更高的生物相容性。另一方面,水提取物具有显着更小的范围和数量的活性化合物。加入助溶剂可提高水的萃取能力,助溶剂可增加蜂胶化合物的溶解度和渗透性。然而,溶剂的变化导致活性物质的不同组成,可能具有不同的作用。蜂胶的大多数生物学作用归因于其活性化合物的抗氧化特性。抗氧化作用可能是直接清除ROS或调节ROS产生细胞器活性的结果。因此,本研究的目的是研究和比较水性(AqEP),聚乙二醇-水性(Pg-AqEP)和乙醇(EEP)蜂胶提取物的化学组成,抗氧化性能以及对线粒体呼吸的影响。使用HPLC和Folin-Ciocalteu方法测定蜂胶提取物的化学组成。通过分别使用10-乙酰基3,7-二羟基苯恶嗪和2',7'-二氯荧光素二乙酸酯进行荧光法测定中和C6胶质瘤细胞中H2O2和细胞内ROS浓度的能力。通过使用MitoSOX Red在荧光显微镜下评估线粒体超氧化物的产生。通过高分辨率呼​​吸仪Oxygraph-2?k记录线粒体的氧气吸收率。我们的数据显示,在AqEP和Pg-AqEP中,所有提取和鉴定的化合物中酚酸和醛占40-42%,而EEP中仅占16%。所有制剂在细胞培养基中均显示出相似的抗氧化活性,但Pg-AqEP和EEP表现出更好的线粒体超氧化物和总细胞内ROS降低特性。在较高的浓度下,AqEP和EEP抑制线粒体呼吸,但Pg-AqEP具有浓度依赖性的线粒体解偶联作用。水性和非水性蜂胶提取物的成分不同,但是它们都具有抗氧化性能,并且以相似的效率中和溶液中的H2O2。但是,与AqEP相比,Pg-AqEP和EEP在降低细胞内和线粒体内ROS方面都更有效。在更高的浓度下,这些制剂会影响线粒体功能并改变C6细胞的能量产生。

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