Martorelli Luisina, Garbaccio Sergio, Vilte Daniel A, Albanese Adriana A, Mejías María P, Palermo Marina S, Mercado Elsa C, Ibarra Cristina E, Cataldi Angel A
Instituto de Patobiología, Centro de Investigación en Ciencias Veterinarias y Agronómicas, Instituto Nacional de Tecnología Agropecuaria, Hurlingham, Argentina.
Laboratorio de Fisiopatogenia, Departamento de Fisiología, Facultad de Medicina, Universidad de Buenos Aires, Buenos Aires, Argentina.
PLoS One. 2017 Jan 3;12(1):e0169422. doi: 10.1371/journal.pone.0169422. eCollection 2017.
Ruminants are the primary reservoir of Shiga-toxin producing Escherichia coli (STEC) O157:H7 and the main source of infection for humans. The aim of this study was to assess the immunogenic properties of a candidate vaccine consisting on the recombinant proteins of E. coli O157:H7 IntiminC280, the carboxy-terminal fraction of Intimin γ, EspB and the fusion protein between the B subunit of Stx2 and Brucella Lumazine Synthase (BLS)(BLS-Stx2B), in Holstein Fresian calves.To accomplish this goal we vaccinated calves with two doses of different vaccine formulations: 2 antigens (IntiminC280, EspB), 3 antigens (IntiminC280, EspB, BLS-Stx2B), BLS-Stx2B alone and a control non-vaccinated group. All antigens were expressed as recombinant proteins in E. coli. Specific IgG titres increased in vaccinated calves and the inclusion of BLS-Stx2B in the formulation seems to have a stimulatory effect on the humoral response to IntiminC280 and EspB after the booster. The neutralizing activity of antibodies against these two antigens was assessed in Red Blood Cell lysis assays and adherence to Hep-2 cells as a correlate of T3SS activity. Both sera from animals vaccinated with 2 or 3 antigens inhibited both virulence properties. Serological response to Stx2 was observed in animals vaccinated only with BLS-Stx2B and with 3 antigens and neutralization of Stx2 cytotoxicity was also observed in both groups. In conclusion, immunization of calves with BLS-Stx2B, IntiminC280 and EspB elicited a potent humoral response able to neutralize Shiga toxin 2 cytotoxity and the T3SS virulence properties in vitro. These results suggest that this formulation is a good candidate vaccine to reduce STEC shedding in cattle and needs to be further assessed in vivo.
反刍动物是产志贺毒素大肠杆菌(STEC)O157:H7的主要宿主,也是人类感染的主要来源。本研究的目的是评估一种候选疫苗的免疫原性,该疫苗由大肠杆菌O157:H7紧密素C280、紧密素γ的羧基末端片段、EspB以及志贺毒素2 B亚基与布鲁氏菌核黄素合酶(BLS)的融合蛋白(BLS-Stx2B)组成,用于荷斯坦弗里生犊牛。为实现这一目标,我们用两种不同的疫苗制剂对犊牛进行了两次接种:2种抗原(紧密素C280、EspB)、3种抗原(紧密素C280、EspB、BLS-Stx2B)、单独的BLS-Stx2B以及一个未接种疫苗的对照组。所有抗原均在大肠杆菌中表达为重组蛋白。接种疫苗的犊牛体内特异性IgG滴度升高,并且在制剂中加入BLS-Stx2B似乎对加强免疫后针对紧密素C280和EspB的体液反应有刺激作用。在红细胞裂解试验和对Hep-2细胞的黏附中评估了针对这两种抗原的抗体中和活性,作为Ⅲ型分泌系统(T3SS)活性的一个指标。接种2种或3种抗原的动物血清均能抑制这两种毒力特性。仅接种BLS-Stx2B和接种3种抗原的动物均观察到对志贺毒素2的血清学反应,并且两组均观察到志贺毒素2细胞毒性的中和作用。总之,用BLS-Stx2B、紧密素C280和EspB对犊牛进行免疫接种可引发有效的体液反应,能够在体外中和志贺毒素2的细胞毒性和T3SS毒力特性。这些结果表明,该制剂是一种减少牛体内STEC排泄的良好候选疫苗,需要在体内进一步评估。