首页> 美国卫生研究院文献>Vaccines >Protective Passive Immunity in Escherichia coli ETEC-Challenged Neonatal Mice Conferred by Orally Immunized Dams with Nanoparticles Containing Homologous Outer Membrane Vesicles
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Protective Passive Immunity in Escherichia coli ETEC-Challenged Neonatal Mice Conferred by Orally Immunized Dams with Nanoparticles Containing Homologous Outer Membrane Vesicles

机译:口服含天然外膜囊泡纳米颗粒的水坝对大肠杆菌ETEC挑战的新生小鼠的保护性被动免疫

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摘要

Enterotoxigenic (ETEC) strains are a major cause of illness and death in mammals, including neonatal, recently weaned pigs and infant human beings. We have previously shown that outer membrane vesicles (OMV) obtained from ETEC serotypes encapsulated into zein nanoparticles, coated with a Gantrez-mannosamine polymer conjugate (OMV-NP), were immunogenic in mice and sows. In the present study, we show that pups from vaccinated mice were protected against ETEC F4 serotype challenge through maternal passive immunization. OMV from F4 cultures were collected and characterized. Two-week-pregnant BALB/c mice were orally immunized with a single dose of vesicles (0.2 mg) either free (OMV) or encapsulated into nanoparticles (OMV-NP). Evaluation of the antibodies in serum (IgG1, Ig2a or IgA) and feces (IgA) of dams immunized with OMV-NP revealed an enhancement of specific immunogenicity. The antibody response conferred by the nanoparticle adjuvant was also correlated with IL-6 and IL-10 splenic levels. Each mother was allowed to feed her progeny for one week. Suckling pups presented specific IgA in feces demonstrating their passive immunization through colostrum intake. Two weeks after the pups were born, they were infected orally with a single dose of F4 (1.2 × 10 CFU/pup). Results showed that 70% of the pups from dams immunized with OMV-NP were protected. In contrast, 80% of the pups from dams immunized with free OMV died as a result of the experimental challenge. These findings support the use of zein nanoparticles coated with a Gantrez-mannosamine shield as adjuvant delivery system for the oral immunization during pregnancy to confer immunity to the offspring through maternal immunization
机译:产肠毒素(ETEC)菌株是哺乳动物的疾病和死亡的主要原因,包括新生儿,最近断奶的猪和婴儿。先前我们已经表明,从封装在玉米醇溶蛋白纳米颗粒中的ETEC血清型获得的外膜囊泡(OMV)在小鼠和母猪中具有免疫原性,该膜包被有Gantrez-甘露糖胺聚合物共轭物(OMV-NP)。在本研究中,我们显示了来自疫苗接种小鼠的幼崽通过母体被动免疫受到了针对ETEC F4血清型攻击的保护。收集并鉴定来自F4培养物的OMV。怀孕两周的BALB / c小鼠用单剂量的游离(OMV)或封装在纳米颗粒(OMV-NP)中的囊泡(0.2 mg)口服免疫。对用OMV-NP免疫的大坝的血清(IgG1,Ig2a或IgA)和粪便(IgA)中的抗体进行评估,发现特异性免疫原性增强。纳米颗粒佐剂赋予的抗体应答也与IL-6和IL-10脾水平相关。每个母亲被允许喂养她的后代一个星期。哺乳期的幼崽在粪便中表现出特定的IgA,表明它们通过初乳摄入而被动免疫。幼崽出生两周后,口服单剂量F4(1.2×10 CFU /幼崽)感染它们。结果显示,用OMV-NP免疫的大坝幼仔中有70%受保护。相比之下,使用自由OMV免疫的大坝幼崽中有80%因实验挑战而死亡。这些发现支持使用包被有Gantrez-甘露糖胺盾的玉米醇溶蛋白纳米颗粒作为佐剂递送系统,用于孕妇在怀孕期间的口服免疫,以通过母体免疫赋予后代以免疫力。

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