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A live vaccine rapidly protects against cholera in an infant rabbit model

机译:活疫苗可快速预防婴儿兔子模型中的霍乱

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摘要

Outbreaks of cholera, a rapidly fatal diarrheal disease, often spread explosively. The efficacy of reactive vaccination campaigns - deploying Vibrio cholerae vaccines during epidemics - is partially limited by the time required for vaccine recipients to develop adaptive immunity. We created HaitiV, a live attenuated cholera vaccine candidate, by deleting diarrheagenic factors from a recent clinical isolate of V. cholerae and incorporating safeguards against vaccine reversion. We demonstrate that administration of HaitiV 24hrs prior to lethal challenge with wild-type V. cholerae reduced intestinal colonization by the wild-type strain, slowed disease progression, and reduced mortality in an infant rabbit model of cholera. HaitiV-mediated protection required viable vaccine, and rapid protection kinetics are not consistent with development of adaptive immunity. These features suggest that HaitiV mediates probiotic-like protection from cholera, a mechanism that is not known to be elicited by traditional vaccines. Mathematical modeling indicates that an intervention that works at the speed of HaitiV-mediated protection could improve the public health impact of reactive vaccination.
机译:霍乱是一种迅速致命的腹泻病,经常爆发性传播。反应性疫苗接种运动的有效性-在流行期间部署霍乱弧菌疫苗-部分受疫苗接受者发展适应性免疫所需时间的限制。我们通过从最近的霍乱弧菌临床分离株中删除腹泻性因素并纳入针对疫苗返还的保护措施,创建了HaitiV(一种减毒的活霍乱疫苗候选品)。我们证明在与野生型霍乱弧菌致死性攻击前24小时给予HaitiV可以减少野生型菌株在肠道中的定植,减慢疾病的进程,并降低霍乱婴儿兔模型的死亡率。 HaitiV介导的保护需要可行的疫苗,并且快速的保护动力学与适应性免疫的发展不一致。这些特征表明,HaitiV介导了霍乱的益生菌样保护作用,而传统疫苗尚不清楚这种机制。数学模型表明,以HaitiV介导的保护速度行之有效的干预措施可以改善反应性疫苗接种对公共健康的影响。

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