C. Ramachandran, K. Quirin, E. Escalon, S. Melnick
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引用次数: 0
摘要
Tinospora cordifolia是一种重要的印度草药,以其免疫刺激作用而闻名。在这项研究中,我们描述了一种新型水溶性营养保健品的半乳糖凝集素-3抑制和免疫刺激特性。该专利提取物(T2CA)总收率为6%,碳水化合物含量为86.9%,其中专利(1,4)-α- d -葡聚糖含量较高。T2CA对t细胞毒性细胞和NK细胞的激活作用显著促进了其免疫刺激作用。此外,T2CA诱导人类淋巴细胞培养中功能性NK细胞的活化,进而在共培养实验中以剂量依赖的方式导致K562白血病细胞死亡。T2CA抑制人胶质母细胞瘤细胞系中磷酸化半乳糖凝集素-3的表达,从而在酶谱研究中抑制MMP2和MMP9蛋白的活性,并在体外刮痕实验中抑制癌细胞的迁移。Western blot杂交研究发现,T2CA下调了总gal 3蛋白的表达,延长了埃利希腹水肿瘤细胞注射后AKR/J小鼠的存活时间。T2CA对pho-galectin-3表达的抑制作用以及对t细胞毒性和NK细胞活化的抑制作用提示其通过免疫刺激机制对致病性感染和人类恶性肿瘤具有保护作用。
Immune stimulating and galectin-3 inhibitory effects of a hydrophilic polysaccharide nutraceutical from Tinospora cordifolia
Tinospora cordifolia is an important ayurvedic herb known for its immune stimulating effect. In this investigation, we describe the galectin-3 inhibitory and immune stimulating properties of a novel water-soluble nutraceutical made from Tinospora cordifolia stem. This proprietary extract (T2CA) had a total yield of 6% and contained 86.9% carbohydrates with a high proportion of patented (1,4)-α-D-glucan in it. The T2CA activated T-cytotoxic and NK cells significantly contributing to its immune stimulating effect. Moreover, T2CA induced the activation of functional NK cells in human lymphocyte cultures that in turn contributed to the death of K562 leukemic cells in a dose-dependent manner in co-culture experiments. T2CA inhibited the expression of phosphorylated galectin-3 expression in human glioblastoma cell line which in turn inhibits the activity of MMP2 and MMP9 proteins in zymography investigations and inhibits migration of cancer cells in in vitro scratch assay. Western blot hybridization studies showed that T2CA downregulates the expression of total gal 3 proteins and extended the survival of AKR/J mice injected with Ehrlich ascites tumor cells in the Kepler-Meier survival curve analysis. The inhibitory effect of T2CA on phopho-galectin-3 expression and the activation of T-cytotoxic and NK cells suggested its protective effects against pathogenic infections and human malignancies via its immune stimulating mechanisms.