Yu Jin-A, Lee Jung-Yun, Kim Tae Yang, Kang Hanna, Lee Su-Young, Mitiku Haimanot, Park Joonheum, Lee Young Hwan, Chang Hung-Bae, Lee Byung Ha, Lee Kichoon, Apostolidis Emmanouil, Kwon Young-In
Department of Food and Nutrition, Hannam University, Daejeon 34054, Korea.
Institute of Functional Foods, EVERIT Co. Ltd., Daejeon 63010, Korea.
Molecules. 2021 Apr 13;26(8):2251. doi: 10.3390/molecules26082251.
The immune system plays an important role in maintaining body homeostasis. Recent studies on the immune-enhancing effects of ginseng saponins have revealed more diverse mechanisms of action. Maillard reaction that occurs during the manufacturing processes of red ginseng produces a large amount of Amadori rearrangement compounds (ARCs), such as arginyl-fructose (AF). The antioxidant and anti-hyperglycemic effects of AF have been reported. However, the possible immune enhancing effects of non-saponin ginseng compounds, such as AF, have not been investigated. In this study the effects of AF and AF-enriched natural product (Ginofos, GF) on proliferation of normal mouse splenocytes were evaluated in vitro and male BALB/c mice models. The proliferation of splenocytes treated with mitogens (concanavalin A, lipopolysaccharide) were further increased by addition of AF ( < 0.01) or GF ( < 0.01), in a dose dependent manner. After the 10 days of oral administration of compounds, changes in weights of spleen and thymus, serum immunoglobulin, and expression of cytokines were measured as biomarkers of immune-enhancing potential in male BALB/c mice model. The AF or GF treated groups had higher weights of the thymus (0.94 ± 0.25 and 0.86 ± 0.18, < 0.05, respectively) than that of cyclophosphamide treated group (0.59 ± 0.18). This result indicates that AF or AF-enriched extract (GF) increased humoral immunity against CY-induced immunosuppression. In addition, immunoglobulin contents and expression of cytokines including IgM ( < 0.01), IgG ( < 0.05), IL-2 ( < 0.01), IL-4 ( < 0.01), IL-6 ( < 0.01), and IFN-γ ( < 0.05) were also significantly increased by supplementation of AF or GF. These results indicate that AF has immune enhancing effects by activation of adaptive immunity via increase of expression of immunoglobulins and cytokines such as IgM, IgG, IL-2, IL-4, IL-6 and thereby proliferating the weight of thymus. Our findings provide a pharmacological rationale for AF-enriched natural products such as ginseng and red ginseng that can possibly have immune-enhancement potential and should be further evaluated.
免疫系统在维持机体稳态中发挥着重要作用。近期关于人参皂苷免疫增强作用的研究揭示了更多样化的作用机制。红参制造过程中发生的美拉德反应会产生大量的阿马多里重排化合物(ARC),如精氨酰 - 果糖(AF)。AF的抗氧化和抗高血糖作用已有报道。然而,像AF这样的非皂苷人参化合物可能的免疫增强作用尚未得到研究。在本研究中,在体外和雄性BALB/c小鼠模型中评估了AF和富含AF的天然产物(Ginofos,GF)对正常小鼠脾细胞增殖的影响。用丝裂原(伴刀豆球蛋白A、脂多糖)处理的脾细胞增殖,通过添加AF(<0.01)或GF(<0.01)以剂量依赖的方式进一步增加。在对化合物进行10天口服给药后,测量脾脏和胸腺重量变化、血清免疫球蛋白以及细胞因子表达,作为雄性BALB/c小鼠模型中免疫增强潜力的生物标志物。AF或GF处理组的胸腺重量(分别为0.94±0.25和0.86±0.18,<0.05)高于环磷酰胺处理组(0.59±0.18)。这一结果表明,AF或富含AF的提取物(GF)增强了针对CY诱导的免疫抑制的体液免疫。此外,补充AF或GF后,免疫球蛋白含量以及包括IgM(<0.01)、IgG(<0.05)、IL - 2(<0.01)、IL - 4(<0.错放了一个句号,以下是纠正后的译文:
免疫系统在维持机体稳态中发挥着重要作用。近期关于人参皂苷免疫增强作用的研究揭示了更多样化的作用机制。红参制造过程中发生的美拉德反应会产生大量的阿马多里重排化合物(ARC),如精氨酰 - 果糖(AF)。AF的抗氧化和抗高血糖作用已有报道。然而,像AF这样的非皂苷人参化合物可能的免疫增强作用尚未得到研究。在本研究中,在体外和雄性BALB/c小鼠模型中评估了AF和富含AF的天然产物(Ginofos,GF)对正常小鼠脾细胞增殖的影响。用丝裂原(伴刀豆球蛋白A、脂多糖)处理的脾细胞增殖,通过添加AF(<0.01)或GF(<0.01)以剂量依赖的方式进一步增加。在对化合物进行10天口服给药后,测量脾脏和胸腺重量变化、血清免疫球蛋白以及细胞因子表达,作为雄性BALB/c小鼠模型中免疫增强潜力的生物标志物。AF或GF处理组的胸腺重量(分别为0.94±0.25和0.86±0.18,<0.05)高于环磷酰胺处理组(0.59±0.18)。这一结果表明,AF或富含AF的提取物(GF)增强了针对CY诱导的免疫抑制的体液免疫。此外,补充AF或GF后,免疫球蛋白含量以及包括IgM(<0.01)、IgG(<0.05)、IL - 2(<0.01)、IL - 4(<0.01)、IL - 6(<0.01)和IFN - γ(<0.05)的细胞因子表达也显著增加。这些结果表明,AF通过增加免疫球蛋白和细胞因子如IgM、IgG、IL - 2、IL - 4、IL - 6的表达来激活适应性免疫,从而增加胸腺重量,具有免疫增强作用。我们的研究结果为富含AF的天然产物如人参和红参提供了药理学依据,它们可能具有免疫增强潜力,应进一步评估。 01)、IL - 6(<0.01)和IFN - γ(<0.05)的细胞因子表达也显著增加。这些结果表明,AF通过增加免疫球蛋白和细胞因子如IgM、IgG、IL - 2、IL - 4、IL - 6的表达来激活适应性免疫,从而增加胸腺重量,具有免疫增强作用。我们的研究结果为富含AF的天然产物如人参和红参提供了药理学依据,它们可能具有免疫增强潜力,应进一步评估。