Beijing Institute of Biotechnology, Beijing, 100071, China; Pharmaceutical College, Henan University, Kaifeng, 475001, China.
Beijing Institute of Biotechnology, Beijing, 100071, China.
Toxicon. 2020 Nov;187:75-81. doi: 10.1016/j.toxicon.2020.08.001. Epub 2020 Sep 1.
Tetanus is an acute, fatal disease caused by exotoxin produced by Clostridium tetani. The current vaccine against tetanus is based on inactivated tetanus toxin (TeNT). To develop a recombinant TeNT vaccine suitable for replacement of full-length tetanus toxoid (TT) vaccine for use in humans, a recombinant non-tagged isoform of the Hc domain of the tetanus toxin (THc) was expressed in Escherichia coli and purified by sequential chromatography steps. The immunogenicity and protective effect of the THc antigen were explored and compared with those of TT in Balb/c mice. The THc-based subunit vaccine provided complete protection against TeNT challenge following a high dosage as a toxoid vaccine. While the anti-THc and neutralising antibody titres were higher for the THc-based vaccine than the TT vaccine because protective epitopes are located on the THc domain. Frequency- and dose-dependent immunoprotection were also observed in THc-immunised mice. Mice immunised with one injection of 1 μg or 4 μg THc antigen were completely protected against 10 or 10 50% mouse lethal dose (LD) of TeNT, respectively. Furthermore, the THc protein was found to recognise and bind to ganglioside GT1b in a dose-dependent manner, and anti-THc sera antibodies also inhibited binding between THc and GT1b. Antigen on the form of recombinant non-tagged THc domain expressed in E. coli achieved strong immunoprotective potency, suggesting that it could be developed into a candidate subunit vaccine against tetanus as an alternative to the current TT vaccine.
破伤风是由破伤风梭菌产生的外毒素引起的急性、致命性疾病。目前的破伤风疫苗是基于破伤风毒素(TeNT)的灭活形式。为了开发一种适合替代全长度破伤风类毒素(TT)疫苗用于人类的重组 TeNT 疫苗,在大肠杆菌中表达了破伤风毒素 Hc 结构域的重组非标记同工型(THc),并通过连续的色谱步骤进行纯化。在 Balb/c 小鼠中探索了 THc 抗原的免疫原性和保护作用,并将其与 TT 进行了比较。THc 基亚单位疫苗作为类毒素疫苗,高剂量时可提供针对 TeNT 挑战的完全保护。由于保护性表位位于 THc 结构域,因此基于 THc 的疫苗的抗-THc 和中和抗体滴度高于 TT 疫苗。在 THc 免疫的小鼠中还观察到频率和剂量依赖性免疫保护。用 1μg 或 4μg THc 抗原免疫一次的小鼠分别完全抵抗 10 或 1050%的小鼠致死剂量(LD)的 TeNT。此外,THc 蛋白被发现以剂量依赖的方式识别和结合神经节苷脂 GT1b,抗-THc 血清抗体也抑制 THc 和 GT1b 之间的结合。在大肠杆菌中表达的重组非标记 THc 结构域的形式的抗原实现了强大的免疫保护效力,表明它可以作为当前 TT 疫苗的替代品,开发成为一种针对破伤风的候选亚单位疫苗。