Hou Yiling, Ding Xiang, Hou Wanru, Zhong Jie, Zhu Hongqing, Ma Binxiang, Xu Ting, Li Junhua
Key Laboratory of Southwest China Wildlife Resources Conservation (Ministry of Education), College of Life Sciences, China West Normal University, 1# Shida Road, Nanchong, Sichuan Province, China.
Pharmacogn Mag. 2013 Jul;9(35):244-9. doi: 10.4103/0973-1296.113278.
Many more fungal polysaccharides have been reported to exhibit a variety of biological activities, including anti-tumor, immunostimulation, anti-oxidation, and so on. The non-starch polysaccharides have emerged as an important class of bioactive natural products.
To investigate the anti-microorganism, anti-tumor, and immune activities of a novel polysaccharide (TMP-A) isolated from Tricholoma matsutake.
The anti-microorganism activity of purified polysaccharides (TMP-A) was evaluated by the inhibition zone diameter, the anti-tumor activity was evaluated by the S180 tumor cells that were implanted subcutaneously into the Kunming strain male mice in vivo, and the immune activity was evaluated by lymphocyte proliferation and macrophage stimulation, respectively.
In this study, the most susceptible bacteria of TMP-A at a concentration of 20 mg/ml was Micrococcus lysodeikticus (inhibition zone diameter 24.38 ± 1.19 mm) and the TMP-A did not show any antifungal activity for the tested stains of the fungi. In addition, the inhibitory rate in mice treated with 80 mg/kg TMP-A could reach 68.422%, being the highest in the three doses, which might be comparable to mannatide. The anti-tumor activity of the TMP-A was usually believed to be a consequence of the stimulation of the cell-mediated immune response, because it could significantly promote the lymphocyte and macrophage cells in the dose range of 50-200 μg/mL and in the dose range of 100 - 400 μg/mL in vitro, respectively.
The results obtained in the present study indicate that the purification polysaccharide of Tricholoma matsutake is a potential source of natural broad-spectrum, anti-microorganism, anti-tumor, and immunomodulation.
据报道,越来越多的真菌多糖具有多种生物活性,包括抗肿瘤、免疫刺激、抗氧化等。非淀粉多糖已成为一类重要的生物活性天然产物。
研究从松茸中分离得到的一种新型多糖(TMP-A)的抗微生物、抗肿瘤和免疫活性。
通过抑菌圈直径评估纯化多糖(TMP-A)的抗微生物活性,通过将S180肿瘤细胞皮下接种到昆明种雄性小鼠体内评估其抗肿瘤活性,分别通过淋巴细胞增殖和巨噬细胞刺激评估其免疫活性。
在本研究中,浓度为20mg/ml时,TMP-A对最敏感的细菌是溶壁微球菌(抑菌圈直径24.38±1.19mm),且TMP-A对所测试的真菌菌株未显示任何抗真菌活性。此外,80mg/kg TMP-A处理的小鼠的抑制率可达68.422%,是三个剂量中最高的,这可能与甘露聚糖相当。TMP-A的抗肿瘤活性通常被认为是细胞介导的免疫反应受到刺激的结果,因为它在体外分别在50-200μg/mL剂量范围内和100-400μg/mL剂量范围内可显著促进淋巴细胞和巨噬细胞。
本研究获得的结果表明,松茸纯化多糖是一种潜在的天然广谱抗微生物、抗肿瘤和免疫调节来源。