Experimental Trauma Surgery, University Medical Center Schleswig-Holstein, 24105 Kiel, Germany.
Protein Chemistry and Enzyme Technology Section, DTU Bioengineering, Department of Biotechnology and Biomedicine, Technical University of Denmark, 2800 Kongens Lyngby, Denmark.
Mar Drugs. 2023 May 31;21(6):339. doi: 10.3390/md21060339.
The endothelial cell lining creates an interface between circulating blood and adjoining tissue and forms one of the most critical barriers and targets for therapeutical intervention. Recent studies suggest that fucoidans, sulfated and fucose-rich polysaccharides from brown seaweed, show multiple promising biological effects, including anti-inflammatory properties. However, their biological activity is determined by chemical characteristics such as molecular weight, sulfation degree, and molecular structure, which vary depending on the source, species, and harvesting and isolation method. In this study, we investigated the impact of high molecular weight (HMW) fucoidan extract on endothelial cell activation and interaction with primary monocytes (MNCs) in lipopolysaccharide (LPS)-induced inflammation. Gentle enzyme-assisted extraction combined with fractionation by ion exchange chromatography resulted in well-defined and pure fucoidan fractions. FE_F3, with a molecular weight ranging from 110 to 800 kDa and a sulfate content of 39%, was chosen for further investigation of its anti-inflammatory potential. We observed that along with higher purity of fucoidan fractions, the inflammatory response in endothelial mono- and co-cultures with MNCs was reduced in a dose-dependent manner when testing two different concentrations. This was demonstrated by a decrease in IL-6 and ICAM-1 on gene and protein levels and a reduced gene expression of TLR-4, GSK3β and NF-kB. Expression of selectins and, consequently, the adhesion of monocytes to the endothelial monolayer was reduced after fucoidan treatment. These data indicate that the anti-inflammatory effect of fucoidans increases with their purity and suggest that fucoidans might be useful in limiting the inflammatory response of endothelial cells in cases of LPS-induced bacterial infection.
内皮细胞衬里在循环血液和毗邻组织之间形成界面,并形成最关键的屏障和治疗干预靶点之一。最近的研究表明,褐藻来源的硫酸化和富含岩藻糖的黏多糖——褐藻糖胶,具有多种有前景的生物学效应,包括抗炎特性。然而,它们的生物学活性取决于化学特性,如分子量、硫酸化程度和分子结构,这些特性因来源、种类、收获和分离方法而异。在这项研究中,我们研究了高分子量(HMW)褐藻糖胶提取物对脂多糖(LPS)诱导的炎症中内皮细胞激活和与原代单核细胞(MNC)相互作用的影响。温和的酶辅助提取结合离子交换色谱的分级分离,得到了定义明确且纯净的褐藻糖胶级分。FE_F3 的分子量范围在 110 至 800 kDa 之间,硫酸根含量为 39%,选择其进行进一步研究其抗炎潜力。我们观察到,随着褐藻糖胶级分的纯度提高,当测试两种不同浓度时,内皮单培养和与 MNC 共培养中的炎症反应呈剂量依赖性降低。这表现在 IL-6 和 ICAM-1 的基因和蛋白水平降低,TLR-4、GSK3β 和 NF-kB 的基因表达降低。选择素的表达,以及随后单核细胞与内皮单层的黏附减少,这表明褐藻糖胶处理后,褐藻糖胶的抗炎作用随着其纯度的增加而增强。这些数据表明,褐藻糖胶可能有助于限制 LPS 诱导的细菌感染中内皮细胞的炎症反应。