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白色念珠菌衍生的真菌病原体相关分子模式(PAMPs),即CAWS(水溶性甘露糖蛋白-β-葡聚糖复合物),显示出与大肠杆菌O9的细菌内毒素相似的免疫毒理学活性。

Candida albicans derived fungal PAMPS, CAWS, water soluble mannoprotein-beta-glucan complex shows similar immunotoxicological activity with bacterial endotoxin from Escherichia coli O9.

作者信息

Tada Rui, Nagi-Miura Noriko, Adachi Yoshiyuki, Ohno Naohito

机构信息

Laboratory for Immunopharmacology of Microbial Products, School of Pharmacy, Tokyo University of Pharmacy and Life Science, 1432-1 Horonouchi, Hachioji, Tokyo 192-0392, Japan.

出版信息

Biol Pharm Bull. 2006 Feb;29(2):240-6. doi: 10.1248/bpb.29.240.

Abstract

Candida albicans water soluble fraction (CAWS), water soluble fraction of Candida albicans mainly composed of mannoprotein-beta-glucan complex, has various biological effects, such as anaphylactoid shock and coronary arteritis. These toxicological effects fit CAWS as one of PAMPs, pathogen-associated molecular patterns. Acute anaphylactoid reaction is known to be induced by lipopolysaccharide from Escherichia coli O9 (O9 LPS), which possesses the mannose homopolysaccharide as the O-antigen region. In the present study, we compared immunotoxicological and immunochemical similarity between CAWS and O9 LPS. CAWS strongly reacted with Candida serum factors, and the reactivity was found to be partially competed with O9 LPS. CAWS induced lethal toxicity was inhibited by pretreatment of mice with i.v. injection of CAWS. The lethality was found to be inhibited by i.v. injection of O9 LPS. Vice versa, O9 LPS induced acute lethal toxicity was also inhibited by pretreatment of mice with CAWS. These results suggested that CAWS, fungal PAMPs, and O9 LPS from Gram-negative bacteria share, at least in part, immunochemical and immunotoxicological activities.

摘要

白色念珠菌水溶性组分(CAWS),主要由甘露糖蛋白 - β - 葡聚糖复合物组成的白色念珠菌水溶性组分,具有多种生物学效应,如类过敏休克和冠状动脉炎。这些毒理学效应使CAWS符合病原体相关分子模式(PAMPs)之一的特征。已知急性类过敏反应由来自大肠杆菌O9的脂多糖(O9 LPS)诱导,该脂多糖在O抗原区域具有甘露糖同多糖。在本研究中,我们比较了CAWS和O9 LPS之间的免疫毒理学和免疫化学相似性。CAWS与念珠菌血清因子强烈反应,并且发现该反应性可被O9 LPS部分竞争。通过静脉注射CAWS对小鼠进行预处理可抑制CAWS诱导的致死毒性。发现静脉注射O9 LPS可抑制致死率。反之亦然,用CAWS对小鼠进行预处理也可抑制O9 LPS诱导的急性致死毒性。这些结果表明,真菌PAMPs的CAWS和革兰氏阴性菌的O9 LPS至少部分共享免疫化学和免疫毒理学活性。

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