Laboratory for Immunopharmacology of Microbial Products, School of Pharmacy, Tokyo University of Pharmacy and Life Sciences, Tokyo, Japan.
Microbiol Immunol. 2011 May;55(5):357-65. doi: 10.1111/j.1348-0421.2011.00326.x.
The biological effects of Candida metapsilosis water-soluble fraction (CMWS), prepared using a completely synthesized medium, were examined to determine whether CMWS induces vasculitis similar to that seen in Kawasaki disease, and anaphylactoid shock, in mice. It was found that intraperitoneal injection of CMWS induces coronary arteritis and i.v. injection induces acute anaphylactoid shock in mice, similar to Candida albicans water-soluble fraction (CAWS)-induced arteritis and anaphylactoid shock. The mannan structure of the polysaccharide fraction was then analyzed by performing antiserum reactivity tests and nuclear magnetic resonance spectroscopy. The mannan structure was investigated because the present authors have recently found that the mannan moiety within the polysaccharide fraction might be responsible for these pathogenic activities. The structural analysis showed that the mannan structure within CMWS expresses α-mannan residues, but not β-mannan. In addition, the mannan structure of CMWS is quite similar to that of CAWS. The present findings indicate that the polysaccharide fraction from C. metapsilosis, which is mainly composed of mannan, contributes to coronary arteritis and acute shock, and that the mannan structure could be responsible for this pathogenicity.
使用完全合成的培养基制备近平滑假丝酵母水溶性部分(CMWS),研究其生物学效应,以确定 CMWS 是否会引起类似于川崎病的血管炎和过敏性休克,在小鼠中。结果发现,CMWS 的腹腔内注射可诱导冠状动脉炎,静脉内注射可诱导小鼠急性过敏性休克,类似于白色念珠菌水溶性部分(CAWS)诱导的动脉炎和过敏性休克。然后通过进行抗血清反应性试验和核磁共振波谱分析来分析多糖部分的甘露聚糖结构。之所以进行甘露聚糖结构的研究,是因为作者最近发现多糖部分中的甘露聚糖部分可能是这些致病活性的原因。结构分析表明,CMWS 中的甘露聚糖结构表达α-甘露聚糖残基,但不表达β-甘露聚糖。此外,CMWS 的甘露聚糖结构与 CAWS 非常相似。这些发现表明,主要由甘露聚糖组成的近平滑假丝酵母多糖部分有助于引起冠状动脉炎和急性休克,并且甘露聚糖结构可能是导致这种致病性的原因。