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首页> 外文期刊>Acta Biochimica Polonica >Analysis of glycosylated flavonoids extracted from sweet-cherry stems, as antibacterial agents against pathogenic Escherichia coli isolates
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Analysis of glycosylated flavonoids extracted from sweet-cherry stems, as antibacterial agents against pathogenic Escherichia coli isolates

机译:从甜樱桃茎中提取的糖基化黄酮类化合物,作为针对致病性大肠杆菌分离株的抗菌剂

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摘要

The aim of this study was to evaluate the bioactivity of flavonoids extracted from sweet-cherry stems which are often used by a traditional system of medicine to treat gastro-intestinal and urinary tract infections but lacking any consistent scientific evidence; moreover the information about the class of phenolics, their content and the potential bioactivity of such material is very scarce. Thus, in this context, we have set a research study in which we evaluated the profile and content of phenolics extracted from sweet-cherry stems through a conventional (70 degrees C and 20 min) and ultrasound assisted extraction (40 kHz, room temperature and 20 min). The extracts were phytochemically characterized by using an HPLC-DAD-UV/VIS system and assayed by an in vitro minimum inhibitory concentration (MIC) bioassay against Escherichia coli isolates. Simultaneously, the total antioxidant activities were measured using the 2,2'-azinobis-3-ethylbenzothiazoline-6-sulphonate (ABTS(center dot+)) radical cation assay. Our results indicate that sweet-cherry stems have a high content of sakuranetin, ferulic acid, p-coumaric acid, p-coumaroylquinic acid, chlorogenic acid and its isomer neochlorogenic acid. Their average levels were highly affected by the extraction method used (p<0.001). The same trend was observed for total antioxidant activity and MIC values. The extracts produced with ultrasounds presented both, a higher total antioxidant activity and a lower minimum inhibitory concentration. Statistical analyses of our results showed a significant correlation (p<0.01) of total antioxidant activity and minimum inhibitory concentration with phenolics present in the extracts studied. Thus, we can conclude that cherry stems can be further exploited to purify compounds and produce coproducts with enhanced biologically added value for pharmaceutical industry.
机译:本研究的目的是评估从甜樱桃茎中提取的黄酮类化合物的生物活性,这些黄酮茎通常用于治疗胃肠和泌尿道感染但缺乏任何一致的科学证据;此外,关于酚类类别的信息,它们的内容和这种材料的潜在生物活性非常稀缺。因此,在这种情况下,我们已经设定了一种研究研究,其中我们评估了通过常规(70℃和20分钟)和超声辅助提取(40kHz,室温和40kHz,室温和20分钟)。通过使用HPLC-DAD-UV / VIS系统的植物表征萃取物,并通过对大肠杆菌分离株的体外最小抑制浓度(MIC)生物测定法测定。同时,使用2,2'-αzinobis-3-乙基苯并噻唑啉-6-磺酸盐(ABTS(中心点+))自由基阳离子测定来测量总抗氧化活性。我们的研究结果表明,甜樱桃茎具有高含量的樱酰胺蛋白,阿魏酸,P-香豆酸,P-香豆素喹啉酸,绿原酸及其异构体新掺氧酸。它们的平均水平受到使用的提取方法的高度影响(P <0.001)。观察到总抗氧化活性和麦克风值的相同趋势。用超声产生的提取物均呈现,总抗氧化活性较高,最小抑制浓度较低。我们的结果的统计分析显示出显着的相关性(P <0.01)总抗氧化活性和所研究中存在的酚类的最小抑制浓度。因此,我们可以得出结论,樱桃茎可以进一步利用以纯化化合物并产生具有增强的制药工业的生物上附加值的副系。

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