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首页> 外文期刊>Scientific reports. >Immunization with recombinant enolase of Sporothrix spp. (rSsEno) confers effective protection against sporotrichosis in mice
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Immunization with recombinant enolase of Sporothrix spp. (rSsEno) confers effective protection against sporotrichosis in mice

机译:用孢子螺纹SPP重组烯醇化酶免疫。 (rsseno)赋予对小鼠的孢子素病的有效保护

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摘要

In recent years, research has focused on the immunoreactive components of the Sporothrix schenckii cell wall that can be relevant targets for preventive and therapeutic vaccines against sporotrichosis, an emergent worldwide mycosis. In a previous study, we identified a 47-kDa enolase as an immunodominant antigen in mice vaccinated with an adjuvanted mixture of S. schenckii cell wall proteins. Here, we sought to assess the protective potential of a Sporothrix spp. recombinant enolase (rSsEno) formulated with or without the adjuvant Montanide Pet-GelA (PGA) against the S. brasiliensis infection in mice. Mice that were immunized with rSsEno plus PGA showed increased antibody titters against rSsEno and increased median survival time when challenged with S. brasiliensis as compared with mice that had not been immunized or that were immunized with rSsEno alone. Immunization with rSsEno plus PGA induced a predominantly T-helper 1 cytokine pattern after in vitro stimulation of splenic cells with rSsEno: elevated levels of IFN-γ and IL-2, as well as of other cytokines involved in host defense against sporotrichosis, such as TNF-alpha, IL-6, and IL-4. Furthermore, we show for the first time the presence of enolase in the cell wall of both S. schenckii and S. brasiliensis. As a whole, our results suggest that enolase could be used as a potential antigenic target for vaccinal purposes against sporotrichosis.
机译:近年来,研究专注于Sporothrix Schenckii细胞壁的免疫反应性组分,这对于针对孢子素病毒的预防性和治疗疫苗具有相关靶标,这是全球肌瘤的紧急症状。在先前的研究中,我们将47-KDA烯醇化酶鉴定为用Zhencki细胞壁蛋白的佐剂混合物疫苗的小鼠中的免疫模数抗原。在这里,我们试图评估Sporothrix SPP的保护潜力。在小鼠中,用佐剂蒙土(PGA)配制或没有佐剂蒙土化物(PGA)配制的重组烯醇酶(RSSENO)。用rsseno加pga免疫的小鼠显示出抗体的抗体,与rsseno的抗体奶油增加,并且与尚未免疫的小鼠相比,攻击患者的攻击时间增加了中位数存活时间。用rsseno加上PGA免疫诱导在用rsseno的脾细胞体外刺激后诱导T-helper1细胞因子图案:IFN-γ和IL-2的升高,以及参与孢子般的宿主防御的其他细胞因子,如TNF-alpha,IL-6和IL-4。此外,我们首次展示了S.Schenckii和S.Brasiliensis的细胞壁中烯醇酶的存在。总的来说,我们的结果表明Enolase可以用作患有针对孢子素病的疫苗目的的潜在抗原靶标。

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