Department of Agricultural Science, Faculty of Agriculture Natural Resources and Environment, Naresuan University, Phitsanulok, Thailand.
Center of Excellence in Research for Agricultural Biotechnology, Faculty of Agriculture, Natural Resources and Environment, Naresuan University, Phitsanulok, Thailand.
PLoS One. 2023 Nov 28;18(11):e0294675. doi: 10.1371/journal.pone.0294675. eCollection 2023.
Polysaccharides isolated from Korean ginseng berries (GBPs) have shown beneficial effects such as immunomodulatory, anti-inflammatory, anti-cancer, and anti-diabetic properties. However, little is known about anti-inflammatory effects of GBPs. Thus, the purpose of this study was to investigate anti-inflammatory properties of four fractions of GBPs, namely GBP-C, GBP-F1, GBP-F2, and GBP-F3, in macrophages. Their toxicities and effects on NO production in RAW264.7 cells were assessed by culturing cells with various concentrations of GBPs and stimulating cells with LPS. Furthermore, expression levels of inflammatory mediators, cytokines, cell surface molecules, and immune signaling pathways were evaluated in LPS-stimulated macrophages using different fractions of GBPs at 450 μg/mL. These GBPs activated LPS-stimulated RAW264.7 cells to significantly reduce NO production. They suppressed the expression of mRNA and cell surface molecules via MAPK and NF-κB pathways. Collectively, results revealed that all four GBP fractions showed anti-inflammatory effects, with GBP-F1 having a more efficient anti-inflammatory effect than GBP-C, GBP-F2, and GBP-F3. The structure of GBP-F1 mainly consists of 1 → 3)- Araf, 1 → 4)- Glcp, and 1 → 6)-Galp glycosidic linkages. These results demonstrate that GBPs can be employed as alternative natural sources of anti-inflammatory agents.
高丽参浆果中分离得到的多糖(GBPs)具有免疫调节、抗炎、抗癌和抗糖尿病等有益作用。然而,关于 GBPs 的抗炎作用知之甚少。因此,本研究旨在探讨 GBPs 的四个馏分,即 GBP-C、GBP-F1、GBP-F2 和 GBP-F3,在巨噬细胞中的抗炎特性。通过在不同浓度的 GBPs 中培养细胞并用 LPS 刺激细胞来评估它们的毒性和对 RAW264.7 细胞中 NO 产生的影响。此外,使用不同浓度的 GBPs 评估了 LPS 刺激的巨噬细胞中炎症介质、细胞因子、细胞表面分子和免疫信号通路的表达水平。这些 GBPs 激活 LPS 刺激的 RAW264.7 细胞,显著降低 NO 产生。它们通过 MAPK 和 NF-κB 途径抑制 mRNA 和细胞表面分子的表达。总之,结果表明所有四种 GBPs 馏分均表现出抗炎作用,其中 GBP-F1 的抗炎效果优于 GBP-C、GBP-F2 和 GBP-F3。GBP-F1 的结构主要由 1→3)-Araf、1→4)-Glcp 和 1→6)-Galp 糖苷键组成。这些结果表明,GBPs 可以作为抗炎药物的替代天然来源。