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首页> 外文期刊>Clinical and vaccine immunology: CVI >Characterization of a mutant Escherichia coli heat-labile toxin, LT(R192G/L211A), as a safe and effective oral adjuvant.
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Characterization of a mutant Escherichia coli heat-labile toxin, LT(R192G/L211A), as a safe and effective oral adjuvant.

机译:特征的变异大肠杆菌heat-labile毒素,LT (R192G / L211A),作为一个安全有效的口服佐剂。

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摘要

Despite the fact that the adjuvant properties of the heat-labile enterotoxins of Escherichia coli (LT) and Vibrio cholerae (CT) have been known for more than 20 years, there are no available oral vaccines containing these molecules as adjuvants, primarily because they are both very potent enterotoxins. A number of attempts with various degrees of success have been made to reduce or eliminate the enterotoxicity of LT and CT so they can safely be used as oral adjuvants or immunogens. In this report we characterize the structural, enzymatic, enterotoxic, and adjuvant properties of a novel mutant of LT, designated LT(R192G/L211A), or dmLT. dmLT was not sensitive to trypsin activation, had reduced enzymatic activity for induction of cyclic AMP in Caco-2 cells, and exhibited no enterotoxicity in the patent mouse assay. Importantly, dmLT retained the ability to function as an oral adjuvant for a coadministered antigen (tetanus toxoid) and to elicit anti-LT antibodies. In vitro and in vivo data suggest that the reduced enterotoxicity of this molecule compared to native LT or the single mutant, LT(R192G), is a consequence of increased sensitivity to proteolysis and rapid intracellular degradation in mammalian cells. In conclusion, dmLT is a safe and powerful detoxified enterotoxin with the potential to function as a mucosal adjuvant for coadministered antigens and to elicit anti-LT antibodies without undesirable side effects.
机译:尽管事实上的辅助属性的heat-labile肠毒素大肠杆菌(LT)和霍乱弧菌(CT)而闻名20多年,没有可用的口腔含有这些分子的疫苗佐剂,主要是因为他们都是非常有效的肠毒素。减少或程度的成功了消除LT和CT的enterotoxicity所以他们可以用作口服佐剂或安全吗免疫原。结构、酶、enterotoxic和辅助小说变异的LT的属性,指定LT (R192G / L211A)或dmLT。胰蛋白酶激活,降低了酶活动归纳Caco-2环腺苷酸的细胞,没有enterotoxicity展出专利老鼠试验。函数作为口腔辅助能力coadministered抗原(破伤风类毒素)和引起anti-LT抗体。数据表明,enterotoxicity降低这个分子相比,本机LT或单身突变,LT (R192G),增加的结果对蛋白水解作用的敏感性和快速在哺乳动物细胞细胞内降解。结论,dmLT是安全的和强大的解毒肠毒素的潜力函数作为coadministered的粘膜佐剂抗原和抗体引起anti-LT没有不受欢迎的副作用。

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