Cui Jian, Goh Kelvin Kim Tha, Archer Richard, Singh Harjinder
Riddet Centre, Massey University, Private Bag 11 222, Palmerston North, New Zealand.
J Ind Microbiol Biotechnol. 2007 May;34(5):393-402. doi: 10.1007/s10295-007-0209-5. Epub 2007 Feb 22.
The protein-bound polysaccharides of Coriolus versicolor (CPS) have been reported to stimulate overall immune functions against cancers and various infectious diseases by activating specific cell functions. A New Zealand isolate (Wr-74) and a patented strain (ATCC-20545) of C. versicolor were compared in this study. The fruit bodies of both strains were grown for visual verification. Both strains were grown in submerged-culture using an airlift fermentor with milk permeate as the base medium supplemented with glucose, yeast extract and salt. Metabolic profiles of both strains obtained over 7-day fermentation showed very similar trends in terms of biomass production (8.9-10.6 mg/ml), amounts of extracellular polysaccharide (EPS) from the culture medium (1150-1132 microg/ml), and intracellular polysaccharide (IPS) from the mycelium (80-100 microg/ml). Glucose was the dominant sugar in both EPS and IPS, and the polymers each consisted of three molecular weight fractions ranging from 2 x 10(6) to 3 x 10(3 )Da. Both the EPS and IPS were able to significantly induce cytokine production (interleukin 12 and gamma interferon) in murine splenocytes in vitro. Highest levels of interleukin 12 (291 pg/ml) and gamma interferon (6,159 pg/ml) were obtained from samples containing Wr-74 IPS (0.06 microg/ml) and ATCC 20545 IPS (0.1 microg/ml), respectively. The results indicated that lower levels of EPS and IPS generally resulted in higher immune responses than did higher polymer concentrations.
云芝的蛋白结合多糖(CPS)已被报道可通过激活特定细胞功能来刺激针对癌症和各种传染病的整体免疫功能。在本研究中,对云芝的一种新西兰分离株(Wr-74)和一种专利菌株(ATCC-20545)进行了比较。对两种菌株的子实体进行培养以进行视觉验证。两种菌株均使用气升式发酵罐在深层培养中生长,以乳清渗透液为基础培养基,并添加葡萄糖、酵母提取物和盐。在7天发酵过程中获得的两种菌株的代谢谱在生物量产量(8.9 - 10.6 mg/ml)、培养基中胞外多糖(EPS)的量(1150 - 1132 μg/ml)和菌丝体中胞内多糖(IPS)的量(80 - 100 μg/ml)方面显示出非常相似的趋势。葡萄糖是EPS和IPS中的主要糖类,并且每种聚合物均由三个分子量级分组成,范围从2×10⁶到3×10³ Da。EPS和IPS在体外均能够显著诱导小鼠脾细胞产生细胞因子(白细胞介素12和γ干扰素)。白细胞介素12(291 pg/ml)和γ干扰素(6159 pg/ml)的最高水平分别从含有Wr-74 IPS(0.06 μg/ml)和ATCC 20545 IPS(0.1 μg/ml)的样品中获得。结果表明,与较高的聚合物浓度相比,较低水平的EPS和IPS通常会导致更高的免疫反应。