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Induction of Protective Immunity against Eimeria tenella, Eimeria maxima, and Eimeria acervulina Infections Using Dendritic Cell-Derived Exosomes

机译:使用树突状细胞衍生的外来体诱导针对艾美球虫,大艾美球虫和小艾美球虫感染的保护性免疫

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This study describes a novel immunization strategy against avian coccidiosis using exosomes derived from Eimeria parasite antigen (Ag)-loaded dendritic cells (DCs). Chicken intestinal DCs were isolated and pulsed in vitro with a mixture of sporozoite-extracted Ags from Eimeria tenella, E. maxima, and E. acervulina, and the cell-derived exosomes were isolated. Chickens were nonimmunized or immunized intramuscularly with exosomes and subsequently noninfected or coinfected with E. tenella, E. maxima, and E. acervulina oocysts. Immune parameters compared among the nonimmunizedoninfected, nonimmunized/infected, and immunized/infected groups were the numbers of cells secreting Th1 cytokines, Th2 cytokines, interleukin-16 (IL-16), and Ag-reactive antibodies in vitro and in vivo readouts of protective immunity against Eimeria infection. Cecal tonsils, Peyer's patches, and spleens of immunized and infected chickens had increased numbers of cells secreting the IL-16 and the Th1 cytokines IL-2 and gamma interferon, greater Ag-stimulated proliferative responses, and higher numbers of Ag-reactive IgG- and IgA-producing cells following in vitro stimulation with the sporozoite Ags compared with the nonimmunizedoninfected and nonimmunized/infected controls. In contrast, the numbers of cells secreting the Th2 cytokines IL-4 and IL-10 were diminished in immunized and infected chickens compared with the nonimmunizedoninfected and the nonimmunized/infected controls. Chickens immunized with Ag-loaded exosomes and infected in vivo with Eimeria oocysts had increased body weight gains, reduced feed conversion ratios, diminished fecal oocyst shedding, lessened intestinal lesion scores, and reduced mortality compared with the nonimmunized/infected controls. These results suggest that successful field vaccination against avian coccidiosis using exosomes derived from DCs incubated with Ags isolated from Eimeria species may be possible.
机译:这项研究描述了一种新的针对禽球虫病的免疫策略,该策略使用的是来自艾美球虫寄生虫抗原(Ag)负载的树突状细胞(DC)的囊泡。分离鸡的肠道DC,并用艾美球虫,巨大肠球菌和小球藻的子孢子提取的Ags的混合物体外脉冲,并分离出细胞来源的外泌体。将鸡用外泌体进行非免疫或肌内免疫,随后未感染或未感染艾美球虫,最大大肠杆菌和小球藻卵囊。在未免疫/未感染,未免疫/感染和免疫/感染的组中比较的免疫参数是在体内和体内读出分泌Th1细胞因子,Th2细胞因子,白介素16(IL-16)和Ag反应性抗体的细胞数抗艾美球虫感染的保护性免疫。盲肠扁桃体,派伊尔氏淋巴结和已免疫和感染鸡的脾脏中分泌IL-16和Th1细胞因子IL-2和γ干扰素的细胞数量增加,更多的是Ag刺激的增殖反应,以及更多的Ag反应性IgG-与未免疫/未感染和未免疫/感染的对照相比,用子孢子Ags体外刺激后产生IgA和IgA的细胞。相反,与未免疫/未感染和未免疫/感染的对照相比,在免疫和感染的鸡中分泌Th2细胞因子IL-4和IL-10的细胞数量减少。与未免疫/感染的对照相比,用载有银的外泌体免疫并在体内感染艾美球虫卵囊的鸡,体重增加,饲料转化率降低,粪便卵囊脱落减少,肠道病变分数降低,死亡率降低。这些结果表明,可能有可能使用衍生自DC的外来体与从艾美球虫属种分离的Ag一起温育,成功地针对禽球虫病进行疫苗接种。

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