Trofimova E S, Zykova M V, Ligacheva A A, Sherstoboev E Yu, Zhdanov V V, Belousov M V, Yusubov M S, Krivoshchekov S V, Danilets M G, Dygai A M
E. D. Goldberg Research Institute of Pharmacology and Regenerative Medicine, Tomsk, Russia.
Siberian State Medical University, Tomsk, Russia.
Bull Exp Biol Med. 2016 Sep;161(5):687-692. doi: 10.1007/s10517-016-3486-z. Epub 2016 Oct 5.
A screening study of biological activity of native humic acids isolated from peat was performed; several physical and chemical parameters of their structures were studied by UV- and infrared spectroscopy. Spectroscopy yielded similar shape of light absorption curves of humic acids of different origin, which can reflect similarity of general structural principles of these substances. Alkaline humic acids have more developed system of polyconjugation, while molecular structures of pyrophosphate humic acids were characterized by higher aromaticity and condensation indexes. Biological activity of the studied humic acids was assessed by NO-stimulating capacity during their culturing with murine peritoneal macrophages in a wide concentration range. It was shown that due to dose-dependent enhancement of NO production humic acids can change the functional state of macrophages towards development of pro-inflammatory properties. These changes were associated with high activity of humic acids isolated by pyrophosphate extraction, which allows considering effects of isolation method on biological activity.
对从泥炭中分离出的天然腐殖酸的生物活性进行了筛选研究;通过紫外光谱和红外光谱研究了其结构的几个物理和化学参数。光谱分析得出不同来源腐殖酸的光吸收曲线形状相似,这可以反映这些物质一般结构原理的相似性。碱性腐殖酸具有更发达的多共轭体系,而焦磷酸腐殖酸的分子结构具有更高的芳香性和缩合指数。在广泛的浓度范围内,通过与小鼠腹腔巨噬细胞培养期间的NO刺激能力评估了所研究腐殖酸的生物活性。结果表明,由于腐殖酸可使NO生成呈剂量依赖性增强,从而可使巨噬细胞的功能状态朝着促炎特性发展。这些变化与通过焦磷酸提取分离出的腐殖酸的高活性有关,这使得可以考虑分离方法对生物活性的影响。