首页> 美国卫生研究院文献>Infection and Immunity >A Genetically Engineered Live Attenuated Vaccine of Coccidioides posadasii Protects BALB/c Mice against Coccidioidomycosis
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A Genetically Engineered Live Attenuated Vaccine of Coccidioides posadasii Protects BALB/c Mice against Coccidioidomycosis

机译:基因工程的减毒活球虫活疫苗可以保护BALB / c小鼠免受球虫病的侵害。

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摘要

Coccidioidomycosis (also known as San Joaquin Valley fever) is an occupational disease. Workers exposed to outdoor dust which contains spores of the soil-inhabiting fungus have a significantly increased risk of respiratory infection. In addition, people with compromised T-cell immunity, the elderly, and certain racial groups, particularly African-Americans and Filipinos, who live in regions of endemicity in the southwestern United States have an elevated incidence of symptomatic infection caused by inhalation of spores of Coccidioides posadasii or Coccidioides immitis. Recurring epidemics and escalation of medical costs have helped to motivate production of a vaccine against valley fever. The major focus has been the development of a defined, T-cell-reactive, recombinant protein vaccine. However, none of the products described to date have provided full protection to coccidioidal disease-susceptible BALB/c mice. Here we describe the first genetically engineered, live, attenuated vaccine that protects both BALB/c and C57BL/6 mice against coccidioidomycosis. Two chitinase genes (CTS2 and CTS3) were disrupted to yield the attenuated strain, which was unable to endosporulate and was no longer infectious. Vaccinated survivors mounted an immune response characterized by production of both T-helper-1- and T-helper-2-type cytokines. Histology revealed well-formed granulomas and markedly diminished inflammation. Significantly fewer organisms were observed in the lungs of survivors than in those of nonvaccinated mice. Additional investigations are required to further define the nature of the live, attenuated vaccine-induced immunity against Coccidioides infection.
机译:球孢子菌病(也称为圣华金山谷热)是一种职业病。暴露于含有土壤真菌真菌孢子的室外灰尘的工人的呼吸道感染风险显着增加。此外,居住在美国西南部流行地区的T细胞免疫力受损的人,老年人和某些种族群体,特别是非裔美国人和菲律宾人,由于吸入孢子引起的症状感染发生率较高。球孢子虫或球虫性炎。流行病的反复发作和医疗费用的上涨,已经有助于刺激生产针对谷热的疫苗。主要重点是确定的,可与T细胞反应的重组蛋白疫苗的开发。但是,迄今为止,所描述的产品均未对易患球虫病的BALB / c小鼠提供全面保护。在这里,我们描述了第一个基因工程的,活的,减毒的疫苗,可以保护BALB / c和C57BL / 6小鼠免受球孢子菌病的侵害。破坏了两个几丁质酶基因(CTS2和CTS3)以产生减毒菌株,该菌株无法内生孢子并且不再具有传染性。接种疫苗的幸存者表现出一种免疫应答,其特征是同时产生T-helper-1-和T-helper-2-型细胞因子。组织学检查发现形态良好的肉芽肿和炎症明显减轻。与未接种疫苗的小鼠相比,在幸存者的肺部观察到的微生物明显更少。需要进一步研究以进一步确定活的,减毒的疫苗诱导的针对球虫的免疫力的性质。

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