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首页> 外文期刊>Veterinary Microbiology >Encapsulation of antigenic extracts of Salmonella enterica serovar Abortusovis into polymeric systems and efficacy as vaccines in mice
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Encapsulation of antigenic extracts of Salmonella enterica serovar Abortusovis into polymeric systems and efficacy as vaccines in mice

机译:肠炎沙门氏菌沙门氏菌抗原提取物的包封入聚合物系统中,并作为小鼠疫苗起作用

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摘要

The properties of drug-vaccine delivery systems based on the use of biodegradable polymers, and its application in the control of experimental infection by Salmonella enterica serovar. Abortusovis (SAO), are described in this manuscript. Micelles of major membrane antigens from SAO (HSao extract) can be encapsulated in microparticles of poly(varepsilon-caprolactone) or in nanoparticles of Gantrez((R)) polymer. The encapsulation process was optimized by the combined use of cyclodextrins. The resulting particles contained unaltered significant amounts of the antigenic complex. To establish the protective value of these subunit vaccines, particles were injected in one single dose (20mug of HSao) subcutaneously in BALB/c mice in order to observe the protection conferred against experimental infection with the virulent strains S. Abortusovis 15/5. Control non-immunized animals resulted infected, as well as the group that received unloaded or HSao loaded into microparticles. In contrast, nanoparticles conferred a significant protection when compared to unvaccinated controls, similar to that induced by the attenuated commercial vaccine Rv6. In conclusion, protection against experimental infection in mice after one single shoot, and its potential for mucosal vaccination suggest that HSao-nanoparticles may represent a serious alternative to the conventional attenuated vaccines against S. Abortusovis.
机译:基于可生物降解聚合物的药物-疫苗递送系统的特性,及其在控制肠炎沙门氏菌血清感染的实验中的应用。在这份手稿中介绍了胎盘蛇(SAO)。 SAO(HSao提取物)的主要膜抗原的胶束可以封装在聚(varepsilon-己内酯)的微粒中或Gantrez(R)聚合物的纳米颗粒中。通过联合使用环糊精优化了包封工艺。所得颗粒包含未改变的大量抗原复合物。为了确定这些亚单位疫苗的保护价值,将颗粒以单剂量(20杯HSao)皮下注射到BALB / c小鼠中,以观察到针对强毒菌株S. Abortusovis 15/5的实验性感染的保护作用。对照未免疫的动物导致感染,以及未加载或HSao加载到微粒中的组。相反,与未接种疫苗的对照相比,纳米颗粒具有显着的保护作用,与减毒商业疫苗Rv6诱导的相似。总之,对小鼠进行单发射击后对其进行实验性感染的保护作用及其潜在的粘膜疫苗接种表明,HSao纳米颗粒可能代表了传统的减毒抗弓形虫疫苗的严重替代品。

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