首页> 外文期刊>MBio >Multicomponent Gold-Linked Glycoconjugate Vaccine Elicits Antigen-Specific Humoral and Mixed T H1-T H17 Immunity, Correlated with Increased Protection against Burkholderia pseudomallei
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Multicomponent Gold-Linked Glycoconjugate Vaccine Elicits Antigen-Specific Humoral and Mixed T H1-T H17 Immunity, Correlated with Increased Protection against Burkholderia pseudomallei

机译:多组分金与甘油凝血疫苗疫苗引发抗原特异性体液和混合T <亚> H 1-T h 17免疫力,与对<命名内容内容型=“的增加相关联。 Genus-lemies“> Burkholderia pseudomallei

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ABSTRACT Burkholderia pseudomallei is the causative agent of melioidosis, a fatal disease with a high mortality rate. The intrinsic resistance to commonly used antibiotics combined with the complex bacterial life cycle has hampered the development of preventive and therapeutic interventions and vaccines. Furthermore, the need of humoral and cell-mediated immunity in protection against B. pseudomallei has complicated the development of effective vaccines. Antigen delivery vaccine platforms that promote humoral and cellular responses while maintaining a safe profile are a roadblock to developing subunit vaccines against intracellular pathogens. Gold nanoparticles (AuNPs) were used for the delivery of multicomponent antigens with the goal of inducing vaccine-mediated immunity, promoting protection against melioidosis disease. Different nanoglycoconjugates using predicted immunogenic protein candidates, Hcp1, FlgL, OpcP, OpcP1, OmpW, and hemagglutinin, were covalently coupled to AuNPs, together with the lipopolysaccharide (LPS) from Burkholderia thailandensis , which acted as an additional antigen. Animals immunized with individually coupled (AuNP-protein-LPS) formulations containing OpcP or OpcP1, together with CpG as an adjuvant, showed a significant increase in protection, whereas a nanovaccine combination (AuNP-Combo2-LPS) showed significant and complete protection against a lethal intranasal B. pseudomallei challenge. Animals immunized with AuNP-Combo2-LPS showed robust humoral antigen-specific (IgG and IgA) responses with higher IgG2c titer, indicating a T _(H)1-skewed response and promotion of macrophage uptake. In addition, immunization with the nanovaccine combination resulted in a mixed antigen-specific T _(H)1-T _(H)17 cytokine profile after immunization. This study provides the basis for an elegant and refined multicomponent glycoconjugate vaccine formulation capable of eliciting both humoral and cell-mediated responses against lethal B. pseudomallei challenge.
机译:摘要Burkholderia pseudomallei是孕杂种的致病因子,死亡率高的致命疾病。常用抗生素的固有抗性与复杂的细菌生命周期相结合,阻碍了预防性和治疗干预和疫苗的发展。此外,对抗B.Pseudomallei保护的体液和细胞介导的免疫的需要使有效疫苗的发育复杂化。抗原递送疫苗平台,促进体液和细胞响应的同时保持安全型材是一种障碍对细胞内病原体的亚基疫苗的障碍。金纳米颗粒(AUNP)用于递送多组分抗原,其目的是诱导疫苗介导的免疫力,促进融合疾病的保护。使用预测的免疫原性蛋白候选物,HCP1,FLGL,OPCP,OPCP1,OMPW和血凝素的不同纳米糖缀合物与褐色多糖(LPS)共价偶联,与伯克德列卡氏菌(LPS)与伯克德列尔氏菌(LPS)一起作用作为额外的抗原。用单独的偶联(AUNP-蛋白-1PS)含有OPCP或OPCP1的动物免疫的动物与CPG作为佐剂,保护保护显着增加,而纳米宫组合(AUNP-COMBO2-LPS)表现出显着且完全保护致死的鼻内B.假单胞菌挑战。用AUNP-COMBO2-LPS免疫的动物显示出具有更高IgG2C滴度的鲁棒体液抗原特异性(IgG和IgA)反应,表明T _(H)1-偏斜的响应和巨噬细胞摄取的促进。此外,在免疫后,用纳米宫组合的免疫引起混合抗原特异性T _(H)1-T _(H)17细胞因子谱。本研究为优雅和精致的多组分糖缀合物疫苗配方提供了能够引发对致死B.假致症的致言挑战的体液和细胞介导的反应的基础。

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