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Enterobactin-Specific Antibodies Induced by a Novel Enterobactin Conjugate Vaccine

机译:新型肠杆菌素结合疫苗诱导的肠杆菌素特异性抗体

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Enterobactin (Ent)-mediated high-affinity iron acquisition is critical for Gram-negative bacteria to survive in the host. Given the bacteriostatic effect of lipocalin resulting from its potent Ent-binding ability, immune intervention directly targeting Ent is promising for iron-dependent pathogen control. Recently, an Ent conjugate vaccine was reported, but it still has several significant weaknesses. In this study, we sought to develop an innovative Ent conjugate vaccine that can induce a high level of antibodies directed against Ent and to provide solid evidence demonstrating siderophore-binding capacity of Ent-specific antibodies. Using a simple method, we successfully conjugated purified Ent to different carriers, including keyhole limpet hemocyanin (KLH), bovine serum albumin, and CmeC, a vaccine candidate for Campylobacter control. Subcutaneous immunization of rabbits with the KLH-Ent conjugate triggered a strong systemic IgG immune response with an up to 16,384-fold increase in IgG titer directed against whole conjugate and an up to 4,096-fold increase in the level of specific anti-Ent IgG. To evaluate the ability of Ent-specific IgG to bind to the Ent derivatives present in vivo, various Ent derivatives were chemically synthesized and a unique enzyme-linked immunosorbent assay method was developed. The Ent-specific IgG also displayed exceptional reactivity to ferric Ent, a linear trimer of Ent, and different salmochelins. Growth assays further demonstrated that the Ent-specific antibodies significantly inhibited Ent-dependent growth of Campylobacter spp. and Escherichia coli. Collectively, this study reports an efficient method to prepare a new type of Ent conjugate vaccines for inducing a high level of Ent-specific antibodies, which can bind to various Ent derivatives and display lipocalin-like bacteriostatic features.IMPORTANCE Ent-mediated high-affinity iron acquisition is a universal and critical contributor for Gram-negative pathogens to survive and infect hosts. Published information has supported an innovative immune intervention strategy that directly targets Ent to starve pathogens by limiting the availability of iron to be utilized. Compared to a recently published Ent conjugate, there are three advantages of the vaccine described in this study: ease of preparation, induction of high titer of anti-Ent IgG, and the ability of Ent-specific antibodies to bind various Ent derivatives, including the salmochelins that help enteric pathogens evade sequestration of siderophores by host lipocalins. In addition, the Ent-specific antibodies were demonstrated to function similarly to lipocalin to interfere with the Ent-dependent growth of Campylobacter and E. coli under iron-restricted conditions. This study has significant potential for broader applications to prevent and control various Gram-negative infections in humans and animals.
机译:肠杆菌素(Ent)介导的高亲和力铁的获取对于革兰氏阴性细菌在宿主中生存至关重要。鉴于脂钙蛋白因其强大的Ent结合能力而具有抑菌作用,因此直接靶向Ent的免疫干预有望用于铁依赖性病原体的控制。最近,报道了一种Ent缀合物疫苗,但是它仍然存在一些明显的弱点。在这项研究中,我们寻求开发一种创新的Ent缀合物疫苗,该疫苗可诱导高水平的针对Ent的抗体,并提供有力的证据证明Ent特异性抗体的铁载体结合能力。使用一种简单的方法,我们成功地将纯化的Ent与不同的载体偶联,包括匙孔血蓝蛋白(KLH),牛血清白蛋白和弯曲杆菌控制疫苗CmeC。用KLH-Ent缀合物对兔进行皮下免疫会触发强烈的全身性IgG免疫反应,针对整个缀合物的IgG滴度最多可增加16,384倍,而特异性抗Ent IgG的水平最多可增加4,096倍。为了评估Ent特异性IgG与体内存在的Ent衍生物结合的能力,化学合成了各种Ent衍生物,并开发了一种独特的酶联免疫吸附测定方法。 Ent特异性IgG对Ent铁的Ent,Ent的线性三聚体和不同的salmochelins也具有优异的反应性。生长试验进一步证明,Ent特异性抗体显着抑制弯曲杆菌属Ent依赖性生长。和大肠杆菌。总体而言,这项研究报告了一种制备新型Ent缀合物疫苗的有效方法,该疫苗可诱导高水平的Ent特异性抗体,该抗体可以与各种Ent衍生物结合并表现出类似脂钙素的抑菌特性。铁的摄取是革兰氏阴性病原体生存和感染宿主的普遍和关键因素。已发布的信息支持了一种创新的免疫干预策略,该策略通过限制要利用的铁的可用性直接针对Ent饿死病原体。与最近发表的Ent缀合物相比,本研究中描述的疫苗具有三个优点:易于制备,高滴度的抗Ent IgG的诱导以及Ent特异性抗体结合各种Ent衍生物的能力,包括salmochelins帮助肠道病原体躲避宿主脂蛋白的铁载体螯合。此外,已证明在铁限制条件下,Ent特异性抗体的功能与脂环素相似,可干扰弯曲杆菌和大肠杆菌的Ent依赖性生长。这项研究对于预防和控制人类和动物的各种革兰氏阴性感染具有广阔的应用前景。

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