Genoprotective Activity of Aronia melanocarpa Anthocyanin-Containing Complex

O. Rybalkina, O. V. Neupokoeva, O. Voronova, T. Razina, G. I. Kalinkina, V. Y. Andreeva, E. A. Kiseleva, A. A. Churin, E. Zueva, V. V. Zhdanov
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Abstract

Anthocyanins are flavonoid compounds belonging to the group of polyphenols. A. melanocarpa (Michx.) Elliott chokeberry is known to be rich in these bioactive substances. The previously conducted chemical analysis showed that an anthocyanin-containing complex obtained from A. melanocarpa fruits comprise anthocyanins, flavonoids, phenolic acids, and catechins, with anthocyanins being the dominant components. A large amount of data indicates that Aronia fruits exhibit a wide spectrum of pharmacological activity. In this work, we assess the safety of an anthocyanin-containing complex obtained from A. melanocarpa fruits by its genotoxic study followed by an analysis of its effect on mutagenesis. To this end, a model of doxorubicin-induced genotoxicity in bone marrow cells of C57Bl/6 mice was used. The plant complex under study at a dose of 225 mg/kg had no effect the cytogenetic parameters of animal bone marrow cells after a single or double administration. The use of the anthocyanin-containing complex led to a decrease in DNA damage caused by the administration of doxorubicin, 24 and 48 hours after the introduction of a cytostatic agent. Hence, the data obtained can serve as the basis for the creation of a drug corrector for cycplasms.
Aronia melanocarpa 含花青素复合物的基因保护活性
花青素是类黄酮化合物,属于多酚类。黑桫椤(micx .)众所周知,艾略特樱桃富含这些生物活性物质。先前进行的化学分析表明,从黑桃果中获得的含花青素复合物包括花青素、类黄酮、酚酸和儿茶素,其中花青素是主要成分。大量的数据表明,野樱草果实具有广泛的药理活性。在这项工作中,我们通过遗传毒性研究和诱变效应分析来评估从黑桃果实中获得的含花青素复合物的安全性。为此,我们建立了阿霉素诱导的C57Bl/6小鼠骨髓细胞遗传毒性模型。所研究的植物复合物在单次或双次给药剂量为225 mg/kg时对动物骨髓细胞的细胞遗传学参数没有影响。使用含花青素复合物导致在引入细胞抑制剂24和48小时后,阿霉素引起的DNA损伤减少。因此,所获得的数据可以作为创建周期质药物校正器的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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