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Toxoplasma gondiiADSL Knockout Provides Excellent Immune Protection against a Variety of Strains

机译:弓形虫ADSL基因敲除可针对多种菌株提供出色的免疫保护

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摘要

is a protozoan parasite, occurring worldwide, endangers human health and causes enormous economic losses to the Ministry of Agriculture. A safe and effective vaccination is needed to handle these problems. In addition, ideal vaccine production is a challenge in the future. In this study, we knocked out the adenylosuccinate lyase ( ) gene and found that the gene reduces the growth rate of tachyzoites in vitro under standard growth conditions by plaque or replication experiments. Furthermore, mice that were immunized with tachyzoites of the ME49Δ strain induced 100% protection efficacy against challenge with the type 1 strain RH, type 2 strain ME49 and type 3 strain VEG. All mice that were immunized with ME49Δ had a survival rate of 100% when they were reinfected with wild-type strains, either 30 days or 70 days after immunization, and immunization was also protective against homologous infection with 50 ME49 tissue cysts. In addition, the level of -specific IgG was significantly elevated at 30 and 70 days after immunization. ME49Δ induced high levels of Th1 cytokines (interferon gamma (IFN-γ), interleukin (IL)-12) at 4 weeks after immunization and spleen cell cultures from mice vaccinated for 150 days were able to produce robust INF-γ and IL-12 levels in the supernatant. The results of the present study showed that Δ vaccination induced a T. -specific cellular immune response against further infections. These results suggest that the ADSL-deficient vaccine can induce anti- humoral and cellular immune responses and has 100% immune protection against post-challenge by the type 1 strain RH, type 2 strain ME49 and type 3 strain VEG. It will be used as an excellent candidate for live vaccines and may contribute in a positive meaning to control human toxoplasmosis.
机译:是全球范围内的原生动物寄生虫,危害人类健康,并给农业部造成巨大的经济损失。需要安全有效的疫苗接种来处理这些问题。另外,理想的疫苗生产是未来的挑战。在这项研究中,我们敲除了腺苷酸琥珀酸裂合酶()基因,并通过噬菌斑或复制实验发现,该基因降低了速殖子在标准生长条件下的体外生长速率。此外,用ME49Δ株的速殖子免疫的小鼠诱导出针对1型RH株,2型ME49株和3型VEG株的攻击的100%保护功效。当用野生型毒株再感染时,所有用ME49Δ免疫的小鼠在免疫后30天或70天时存活率为100%,并且免疫还可以防止50个ME49组织囊肿的同源感染。另外,在免疫后30和70天,特异性IgG的水平显着升高。免疫后4周,ME49Δ诱导了高水平的Th1细胞因子(干扰素γ(IFN-γ),白介素(IL)-12),并且接种了150天的小鼠的脾细胞培养物能够产生强大的INF-γ和IL-12上清液中的水平。本研究的结果表明,Δ疫苗接种诱导了针对进一步感染的T.特异性细胞免疫应答。这些结果表明,ADSL缺陷疫苗可以诱导抗体液和细胞免疫反应,并具有针对1型RH株,2型ME49株和3型VEG株的攻击后免疫的100%免疫保护。它将被用作活疫苗的极佳候选者,并可能在控制人类弓形虫病方面发挥积极作用。

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