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首页> 外文期刊>PLoS Pathogens >Getting to Grips with Strangles: An Effective Multi-Component Recombinant Vaccine for the Protection of Horses from Streptococcus equi Infection
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Getting to Grips with Strangles: An Effective Multi-Component Recombinant Vaccine for the Protection of Horses from Streptococcus equi Infection

机译:绞尽脑汁:一种有效的多组分重组疫苗,可保护马匹免受马链球菌感染。

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Streptococcus equi subspecies equi (S. equi) is a clonal, equine host-adapted pathogen of global importance that causes a suppurative lymphodendopathy of the head and neck, more commonly known as Strangles. The disease is highly prevalent, can be severe and is highly contagious. Antibiotic treatment is usually ineffective. Live attenuated vaccine strains of S. equi have shown adverse reactions and they suffer from a short duration of immunity. Thus, a safe and effective vaccine against S. equi is highly desirable. The bacterium shows only limited genetic diversity and an effective vaccine could confer broad protection to horses throughout the world. Welsh mountain ponies (n?=?7) vaccinated with a combination of seven recombinant S. equi proteins were significantly protected from experimental infection by S. equi, resembling the spontaneous disease. Vaccinated horses had significantly reduced incidence of lymph node swelling (p?=?0.0013) lymph node abscessation (p?=?0.00001), fewer days of pyrexia (p?=?0.0001), reduced pathology scoring (p?=?0.005) and lower bacterial recovery from lymph nodes (p?=?0.004) when compared with non-vaccinated horses (n?=?7). Six of 7 vaccinated horses were protected whereas all 7 non-vaccinated became infected. The protective antigens consisted of five surface localized proteins and two IgG endopeptidases. A second vaccination trial (n?=?7+7), in which the IgG endopeptidases were omitted, demonstrated only partial protection against S. equi, highlighting an important role for these vaccine components in establishing a protective immune response. S. equi shares 80% sequence identity with Streptococcus pyogenes. Several of the components utilized here have counterparts in S. pyogenes, suggesting that our findings have broader implications for the prevention of infection with this important human pathogen. This is one of only a few demonstrations of protection from streptococcal infection conferred by a recombinant multi-component subunit vaccine in a natural host.
机译:马链球菌马亚种(S. equi)是一种具有全球重要性的克隆马适应宿主病原体,可引起头颈部化脓性淋巴结病,通常被称为勒死链球菌。该疾病高度流行,可以是严重的并且具有高度传染性。抗生素治疗通常无效。马链球菌减毒活疫苗株已显示出不良反应,并且免疫时间短。因此,非常需要针对马链球菌的安全有效的疫苗。这种细菌仅显示出有限的遗传多样性,有效的疫苗可以为全世界的马提供广泛的保护。接种了七种重组马链球菌蛋白的威尔士山区小马(n?=?7)得到了有效保护,使其免受马链球菌的实验感染,类似于自发性疾病。接种疫苗的马明显减少了淋巴结肿大的发生率(p = 0.0013),发炎的天数(p = 0.0001),病理评分降低(p = 0.005)(p = 0.001),0.001与未接种疫苗的马相比(n = 7),细菌从淋巴结的细菌回收率较低(p = 0.004)。 7匹接种疫苗的马中有6匹受到保护,而7匹未接种疫苗的马全部被感染。保护性抗原由五个表面定位蛋白和两个IgG内肽酶组成。第二项疫苗接种试验(n == 7 + 7)被省略了IgG内肽酶,证明只对马链球菌有部分保护作用,突出了这些疫苗成分在建立保护性免疫应答中的重要作用。马链球菌与化脓链球菌具有> 80%的序列同一性。此处使用的几种成分与化脓性链球菌相对应,这表明我们的发现对于预防这种重要的人类病原体感染具有更广泛的意义。这是在天然宿主中由重组多组分亚单位疫苗赋予的针对链球菌感染的保护作用的仅有的几个证明之一。

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