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首页> 外文期刊>The Veterinary Record >Antioxidant Capacity Analysis of Blackberry Extracts with Different Phytochemical Compositions and Optimization of their Ultrasound Assisted Extraction
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Antioxidant Capacity Analysis of Blackberry Extracts with Different Phytochemical Compositions and Optimization of their Ultrasound Assisted Extraction

机译:不同植物化学组合物的黑莓提取物的抗氧化能力分析及其超声辅助提取优化

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摘要

High antioxidant capacity molecules, such as anthocyanins, occur naturally in blackberry (Rubus fruticosus). In particular, 'Dasha' blackberry cultivar has scarcely been studied and, it is becoming economically more important in Mexico. In this study, several blackberry extraction conditions, conferred different amounts of detectable phytochemical groups that in turn were analysed with a new approach to investigate their influence on antioxidant capacity (AC). Additionally, a central composite design (CCD) was proposed to study effects of temperature and acidification on AC. Finally, an original approach was used to disclose interactions between the phytochemical content and the AC. Changes in size of the particles during extraction were reported for the first time, and the results showed evidence of swelling and dissolving of particles. UAE of fine and thick powders achieved similar efficiencies in contrast with maceration which showed large differences for the extraction of the tested sizes. CCD showed that low levels of acidification and high levels of temperature resulted in higher extraction of phytochemicals and AC. HPLC show that the main anthocyanidin may represent 88% of the total anthocyanins. Due to its relatively high abundance, cyanidyn-3-glucoside showed evidence of being the main cause of the changes in AC in 'Dasha' extracts. The use of mild conditions resulted in no degradation of anthocyanins and, therefore, there are no AC losses. A correlation plane was proposed to study synergisms of the extracts with other anthocyanins or phenolics.
机译:高抗氧化能力分子如花青素,天然存在于黑莓(葡萄牙鱼缸)中。特别是,“丹莎”黑莓品种几乎已经研究过,它在墨西哥变得经济上更为重要。在该研究中,几种黑莓提取条件,赋予不同量的可检测的植物化学基团,其又通过一种新方法来研究其对抗氧化能力(AC)的影响。另外,提出了一种中央复合设计(CCD)以研究温度和酸化对AC的影响。最后,使用原始方法在植物化学含量和AC之间公开相互作用。首次报告萃取过程中颗粒的尺寸变化,结果显示了溶胀和溶解颗粒的证据。与浸渍相比,细小粉末的UAE达到了类似的效率,该浸渍显示了对测试尺寸的提取的巨大差异。 CCD表明,低水平的酸化和高水平的温度导致植物化学和AC的提取更高。 HPLC表明,主要的花青素可以代表总花青素的88%。由于其相对高的丰度,Cyanidyn-3-葡糖苷显示出在“大莎”提取物中AC变化的主要原因。使用温和条件导致花青素的降解,因此没有AC损耗。提出了一种相关平面,以研究提取物与其他花青素或酚醛蛋白酶的协同作用。

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