Hsu Su-Jung, He Min, Salomé-Abarca Luis Francisco, Choi Young Hae, Wang Mei
Natural Products Laboratory, Institute of Biology, Leiden University, Leiden, Netherlands.
School of Pharmacy, Taipei Medical University, Taipei City, Taiwan.
Planta Med. 2025 Sep;91(10-11):609-620. doi: 10.1055/a-2606-6705. Epub 2025 Jun 16.
There is growing evidence highlighting the pivotal role of cellular metabolic adaptation in governing diverse immune responses, as well as the capacity of immune cells to alter metabolic preferences. In both scenarios, the prospect of leveraging bioactive compounds to induce metabolic reprogramming emerges as a novel adjuvant strategy for clinical immunotherapy. Rg1, a major active ginsenoside found in ginseng roots, has the potential to function as a glucocorticoid receptor agonist. Unraveling the intricate relationship between anti-inflammatory functions and the metabolic effects of ginsenosides and glucocorticoids may contribute to the identification of metabolic biomarkers associated with anti-inflammation. This research aims to determine endogenous metabolic response differences evoked by Rg1 and glucocorticoids underlying anti-inflammatory responses. The metabolic impact, particularly on primary metabolites, was assessed in zebrafish embryos using gas chromatography-mass spectrometry (GC-MS) in conjunction with metabolic pathways analysis via the KEGG pathway database. Our results indicated that Rg1 possesses a similar effect in alleviating inflammation in treating injured zebrafish as beclomethasone. The anti-inflammatory effects of Rg1 are achieved by inhibiting the neutrophils and macrophages toward the amputated edges and upregulating gene expression associated with pro-inflammatory cytokines. The anti-inflammatory effects of Rg1 also include changes in fatty-acid metabolism and downstream aromatic amino acids in the TCA cycle. Therefore, Rg1 may be a promising drug candidate for treating inflammatory responses and a valuable supplement for enhancing immune regulation.
越来越多的证据表明,细胞代谢适应在调控多种免疫反应中起关键作用,以及免疫细胞改变代谢偏好的能力。在这两种情况下,利用生物活性化合物诱导代谢重编程的前景成为临床免疫治疗的一种新型辅助策略。人参根中发现的主要活性人参皂苷Rg1有潜力作为糖皮质激素受体激动剂发挥作用。阐明人参皂苷和糖皮质激素的抗炎功能与代谢效应之间的复杂关系,可能有助于识别与抗炎相关的代谢生物标志物。本研究旨在确定Rg1和糖皮质激素在抗炎反应中引发的内源性代谢反应差异。使用气相色谱 - 质谱联用(GC-MS)结合KEGG通路数据库的代谢通路分析,在斑马鱼胚胎中评估了代谢影响,特别是对初级代谢产物的影响。我们的结果表明,Rg1在治疗受伤斑马鱼时减轻炎症方面具有与倍氯米松相似的效果。Rg1的抗炎作用是通过抑制中性粒细胞和巨噬细胞向截肢边缘移动,并上调与促炎细胞因子相关的基因表达来实现的。Rg1的抗炎作用还包括脂肪酸代谢和三羧酸循环中下游芳香族氨基酸的变化。因此,Rg1可能是治疗炎症反应的有前途的候选药物,也是增强免疫调节的有价值的补充剂。