Kumar Vaddi P, Venkatesh Yeldur P
Department of Biochemistry and Nutrition, CSIR-Central Food Technological Research Institute, Mysuru, Karnataka, India.
Department of Biochemistry and Nutrition, CSIR-Central Food Technological Research Institute, Mysuru, Karnataka, India.
J Ethnopharmacol. 2016 Jun 20;186:280-288. doi: 10.1016/j.jep.2016.04.006. Epub 2016 Apr 5.
In various traditional medicines, onion has been classified as an immune-boosting food. Recent studies have claimed this property due to the presence of bioactive organosulfur compounds, prebiotic fructo-oligosaccharides and an immunomodulatory protein, lectin (Allium cepa agglutinin; ACA) (Prasanna and Venkatesh, 2015. Characterization of onion lectin (Allium cepa agglutinin) as an immunomodulatory protein inducing Th1-type immune response in vitro. Int. Immunopharmacol. vol. 26, pp. 304-313).
The aim of this study was to evaluate the immunoprotective properties of ACA in normal and cyclophosphamide (CP; 100μg/kg)-induced immunosuppressed Wistar rats.
Wistar rats were administrated different doses of ACA (1, 10, and 100μg) to respective groups in normal as well as immunosuppressed animals. The effect of ACA on the status of immune organs was assessed by examining the splenic and thymic indices, and histopathological changes. The biomarkers for humoral immunity (serum IgG and IgA levels) and serum pro-inflammatory markers (COX-2, TNF-α and IL-10) were measured by ELISA.
ACA showed immunoprotective properties by significantly promoting the restoration of lymphoid cell count by 6 fold vs. model control (immunosuppressed animals) and promotes the immune response significantly (1.5-fold) in CP-induced immunosuppressed animals compared to model control; production of pro-inflammatory molecules (COX-2 and nitric oxide) and expression levels of immune regulatory molecule (TNF-α) were elevated in a dose-dependent manner.
The observed in vivo results suggest that ACA has the potential to be used as a nutritional therapeutic to boost the immune status of immunosuppressed subjects brought about by CP administration.
在各种传统医学中,洋葱被归类为增强免疫力的食物。最近的研究表明,这一特性归因于生物活性有机硫化合物、益生元低聚果糖和一种免疫调节蛋白——凝集素(洋葱凝集素;ACA)的存在(Prasanna和Venkatesh,2015年。洋葱凝集素(Allium cepa agglutinin)作为一种在体外诱导Th1型免疫反应的免疫调节蛋白的特性。《国际免疫药理学》第26卷,第304 - 313页)。
本研究旨在评估ACA对正常和环磷酰胺(CP;100μg/kg)诱导的免疫抑制Wistar大鼠的免疫保护特性。
将不同剂量的ACA(1、10和100μg)分别给予正常及免疫抑制动物的相应组。通过检查脾脏和胸腺指数以及组织病理学变化来评估ACA对免疫器官状态的影响。通过ELISA测量体液免疫的生物标志物(血清IgG和IgA水平)和血清促炎标志物(COX - 2、TNF - α和IL - 10)。
与模型对照组(免疫抑制动物)相比,ACA通过显著促进淋巴细胞计数恢复约6倍,显示出免疫保护特性;与模型对照组相比,在CP诱导的免疫抑制动物中,ACA还显著促进免疫反应(约1.5倍);促炎分子(COX - 2和一氧化氮)的产生以及免疫调节分子(TNF - α)的表达水平呈剂量依赖性升高。
观察到的体内结果表明,ACA有潜力作为一种营养疗法,以提高因给予CP而导致免疫抑制的受试者的免疫状态。