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用重组二价嵌合体r-Cpae免疫可在小鼠模型中提供针对A型产气荚膜梭菌α毒素和肠毒素的保护作用。

Immunization with recombinant bivalent chimera r-Cpae confers protection against alpha toxin and enterotoxin of Clostridium perfringens type A in murine model.

作者信息

Shreya Das, Uppalapati Siva R, Kingston Joseph J, Sripathy Murali H, Batra Harsh V

机构信息

Division of Microbiology, Defence Food Research Laboratory, Siddartha Nagar, Mysore 570011, Karnataka, India.

Division of Microbiology, Defence Food Research Laboratory, Siddartha Nagar, Mysore 570011, Karnataka, India.

出版信息

Mol Immunol. 2015 May;65(1):51-7. doi: 10.1016/j.molimm.2015.01.005. Epub 2015 Jan 30.

Abstract

Clostridium perfringens type A, an anaerobic pathogen is the most potent cause of soft tissue infections like gas gangrene and enteric diseases like food poisoning and enteritis. The disease manifestations are mediated via two important exotoxins, viz. myonecrotic alpha toxin (αC) and enterotoxin (CPE). In the present study, we synthesized a bivalent chimeric protein r-Cpae comprising C-terminal binding regions of αC and CPE using structural vaccinology rationale and assessed its protective efficacy against both alpha toxin (αC) and enterotoxin (CPE) respectively, in murine model. Active immunization of mice with r-Cpae generated high circulating serum IgG (systemic), significantly increased intestinal mucosal s-IgA antibody titres and resulted in substantial protection to the immunized animals (100% and 75% survival) with reduced tissue morbidity when administered with 5×LD(100) doses of αC (intramuscular) and CPE (intra-gastric gavage) respectively. Mouse RBCs and Caco-2 cells incubated with a mixture of anti-r-Cpae antibodies and αC and CPE respectively, illustrated significantly higher protection against the respective toxins. Passive immunization of mice with a similar mixture resulted in 91-100% survival at the end of the 15 days observation period while mice immunized with a concoction of sham sera and respective toxins died within 2-3 days. This work demonstrates the efficacy of the rationally designed r-Cpae chimeric protein as a potential sub unit vaccine candidate against αC and CPE of C. perfringens type A toxemia.

摘要

A型产气荚膜梭菌是一种厌氧病原体,是气性坏疽等软组织感染以及食物中毒和肠炎等肠道疾病的最主要病因。疾病表现是由两种重要的外毒素介导的,即肌坏死性α毒素(αC)和肠毒素(CPE)。在本研究中,我们利用结构疫苗学原理合成了一种包含αC和CPE C端结合区域的二价嵌合蛋白r-Cpae,并在小鼠模型中分别评估了其对α毒素(αC)和肠毒素(CPE)的保护效果。用r-Cpae对小鼠进行主动免疫可产生高循环血清IgG(全身性),显著提高肠道黏膜s-IgA抗体滴度,并在分别给予5×LD(100)剂量的αC(肌肉注射)和CPE(胃内灌胃)时,为免疫动物提供实质性保护(100%和75%存活),同时降低组织发病率。分别用抗r-Cpae抗体与αC和CPE的混合物孵育小鼠红细胞和Caco-ll细胞,显示出对相应毒素的显著更高保护作用。用类似混合物对小鼠进行被动免疫,在15天观察期结束时存活率为91%-100%,而用假血清和相应毒素混合物免疫的小鼠在2-3天内死亡。这项工作证明了合理设计的r-Cpae嵌合蛋白作为抗A型产气荚膜梭菌毒血症αC和CPE的潜在亚单位疫苗候选物的有效性。

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