Bushmeleva Kseniya, Vyshtakalyuk Alexandra, Terenzhev Dmitriy, Belov Timur, Parfenov Andrey, Sharonova Natalia, Nikitin Evgeniy, Zobov Vladimir
Laboratory for Plant Raw Material Conversion for Organic Farming, Federal State Budgetary Institution of Science Federal Research Center, Kazan Scientific Center of Russian Academy of Sciences, 2/31 Lobachevskogo Str., 420111 Tatarstan, Russia.
A.E. Arbuzov Institute of Organic and Physical Chemistry, Kazan Scientific Center, Russian Academy of Sciences, Arbuzov Str. 8, 420088 Kazan, Russia.
Plants (Basel). 2021 Nov 15;10(11):2458. doi: 10.3390/plants10112458.
Researchers are attracted to the wide-ranging, useful components in berries. They are searching for the most effective ways to extract the active substances that can enhance the body's protective properties. The current study presents detailed information about the extracts from fruits frozen and dried under mild conditions and their chemical composition. In Wistar rats with induced immunosuppression, the effect of chokeberry fruit extracts on the leukocyte formula, phagocytic activity, and cytokine system was studied. It was shown that the frozen fruit extract contains more anthocyanins, sugars, and ascorbic acid, and has a more pronounced antioxidant activity determined by the ability to bind APPH-radicals. Moreover, the extract showed membrane-protective and cytoprotective properties against RPMI-1788 cell line. The extract from dried raw material shows a higher antioxidant activity due to the ability to bind DPPH-radicals. It was revealed that extracts from fruits promote rapid immune system recovery in rats, normalize the leukocyte count, and improve monocyte and neutrophil phagocytic indicators. Research on the cytokine profile revealed that the anti-inflammatory properties in extracts were more pronounced in dried extracts. For several cytokines, a normalization of quantity was noted.
研究人员被浆果中种类繁多且有用的成分所吸引。他们正在寻找提取能增强人体保护特性的活性物质的最有效方法。当前的研究提供了关于在温和条件下冷冻和干燥的水果提取物及其化学成分的详细信息。在诱导免疫抑制的Wistar大鼠中,研究了黑果腺肋花楸果实提取物对白细胞计数、吞噬活性和细胞因子系统的影响。结果表明,冷冻果实提取物含有更多的花青素、糖类和抗坏血酸,并且通过结合APPH自由基的能力测定具有更显著的抗氧化活性。此外,该提取物对RPMI - 1788细胞系具有膜保护和细胞保护特性。干燥原料的提取物由于能够结合DPPH自由基而表现出更高的抗氧化活性。结果显示,水果提取物能促进大鼠免疫系统的快速恢复,使白细胞计数正常化,并改善单核细胞和中性粒细胞的吞噬指标。对细胞因子谱的研究表明,干燥提取物中提取物的抗炎特性更为明显。对于几种细胞因子,其数量实现了正常化。