从 Ecklonia cava 中提取的一种富含绿单宁的天然制剂 ventol 的抗氧化和抗炎活性及其对软骨外植体培养中蛋白多糖降解的影响。

Keejung Kang, Hye Jeong Hwang, Dong Ho Hong, Yongju Park, Seong Ho Kim, Bong Ho Lee, Hyeon-Cheol Shin
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引用次数: 0

摘要

骨关节炎被认为是由于软骨组织周围与衰老相关的退化和修复机制失去平衡而诱发的,在这种情况下,活性氧、细胞因子和前列腺素等炎症介质容易在不良的生理条件下过度产生。叶绿单宁是一种独特的多酚类化合物,以二苯并-1,4-二恶英为骨架,陆生植物中没有这种物质,只有在一些褐藻物种(如 Ecklonia 和 Eisenia 科)中才有。Ecklonia cava 的富含叶绿单宁的提取物(包括文托尔)显示出显著的抗氧化活性,如 DPPH 自由基清除、铁离子还原力、过氧化亚硝酸盐清除和低密度脂蛋白氧化抑制,表明它们可能对骨关节炎的发病和下游后果产生抗氧化干扰。文曲醇还能显著降低经 LPS 处理的 RAW 246.7 细胞中 PGE2 的生成,并能显著抑制重组白细胞介素-1α 诱导的蛋白多糖降解,这表明文曲醇能有效参与骨关节炎的病理生理过程,其作用机制有待进一步研究。由于文曲醇在多项体外实验中显示出治疗关节炎的强大潜力,因此我们非常鼓励开展进一步的机理和疗效研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antioxidant and antiinflammatory activities of ventol, a phlorotannin-rich natural agent derived from Ecklonia cava, and its effect on proteoglycan degradation in cartilage explant culture.

Osteoarthritis is thought to be induced by the aging-related loss of homeostatic balance between degeneration and repair mechanism around cartilage tissue in which inflammatory mediators such as reactive oxygen species, cytokines and prostaglandins are prone to overproduction under undesirable physiological conditions. Phlorotannins are unique polyphenolic compounds bearing dibenzo-1,4-dioxin skeleton which are not found in terrestrial plants but found only in some brown algal species such as Ecklonia and Eisenia families. Phlorotannin-rich extracts of Ecklonia cava including ventol showed significant antioxidant activities such as DPPH radical scavenging, ferric ion reducing power, peroxynitrite scavenging and inhibition of LDL oxidation, indicating their possible antioxidative interference both in onset and downstream consequences of osteoarthritis. Ventol also showed significant down regulation of PGE2 generation in LPS-treated RAW 246.7 cells, and significant inhibition of human recombinant interleukin-1alpha-induced proteoglycan degradation, indicating its beneficial involvement in pathophysiological consequences of osteoarthritis, the mechanism of which needs further investigation. Since ventol showed strong therapeutic potentials in arthritic treatment through several in vitro experiments, it is highly encouraged to perform further mechanistic and efficacy studies.

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