School of Biomedicine, Far Eastern Federal University, Vladivostok, Russia.
Laboratory of Cell Biology, Vilnius Institute of Natural Sciences, Vilnius, Lithuania.
J Biomed Mater Res A. 2020 Feb;108(2):254-266. doi: 10.1002/jbm.a.36812. Epub 2019 Oct 23.
Antitumor and immunotropic effects of κ-, λ-carrageenan from red marine algae Chondrus armatus and their low-molecular weight (LMW) degradation products were explored. Effects on human esophageal cancer cell lines KYSE30 and FLO1 viability and ability to induce production of pro- and anti-inflammatory cytokines by human monocytes was assessed. All polysaccharides demonstrated antimetabolic and cytostatic activity towards cancer lines, with high-molecular weight carrageenans possessing higher antimetabolic and lower cytostatic activity than their LMW degradation products. All carrageenans induced monocytes to produce pro-inflammatory cytokines IL1β, IL6, IL18, and TNFα. However, secretion of anti-inflammatory cytokine IL10 was induced only by LMW λ-carrageenan, which exhibited the highest cytokine production inducing efficacy overall. We demonstrate that LMW carrageenan degradation products not only retain biological activity of their precursors, but also increase their efficacy in type-dependent manner, allowing for their future development for pharmacological practice.
研究了来自红色海藻角叉菜(Chondrus armatus)的 κ-、λ-卡拉胶的抗肿瘤和免疫调节作用,及其低分子量(LMW)降解产物。评估了它们对人食管癌细胞系 KYSE30 和 FLO1 活力的影响,以及诱导人单核细胞产生促炎和抗炎细胞因子的能力。所有多糖均对癌细胞系表现出代谢抑制和细胞抑制活性,高分子量卡拉胶比其 LMW 降解产物具有更高的代谢抑制和更低的细胞抑制活性。所有卡拉胶均可诱导单核细胞产生促炎细胞因子 IL1β、IL6、IL18 和 TNFα。然而,只有 LMW λ-卡拉胶诱导抗炎细胞因子 IL10 的分泌,LMW λ-卡拉胶整体表现出最高的细胞因子产生诱导效力。我们证明 LMW 卡拉胶降解产物不仅保留了其前体的生物活性,而且还以依赖于类型的方式增加其效力,这为它们在药理学实践中的未来发展提供了可能。