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Engineering a Novel Bivalent Oral Vaccine against Enteric Fever

机译:工程一种针对肠溶热的新二价口腔疫苗

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摘要

Enteric fever is a major global healthcare issue caused largely by Salmonella enterica serovars Typhi and Paratyphi A. The objective of this study was to develop a novel, bivalent oral vaccine capable of protecting against both serovars. Our approach centred on genetically engineering the attenuated S. Typhi ZH9 strain, which has an excellent safety record in clinical trials, to introduce two S. Paratyphi A immunogenic elements: flagellin H:a and lipopolysaccharide (LPS) O:2. We first replaced the native S. Typhi fliC gene encoding flagellin with the highly homologous fliC gene from S. Paratyphi A using Xer-cise technology. Next, we replaced the S. Typhi rfbE gene encoding tyvelose epimerase with a spacer sequence to enable the sustained expression of O:2 LPS and prevent its conversion to O:9 through tyvelose epimerase activity. The resulting new strain, ZH9PA, incorporated these two genetic changes and exhibited comparable growth kinetics to the parental ZH9 strain. A formulation containing both ZH9 and ZH9PA strains together constitutes a new bivalent vaccine candidate that targets both S. Typhi and S. Paratyphi A antigens to address a major global healthcare gap for enteric fever prophylaxis. This vaccine is now being tested in a Phase I clinical trial (NCT04349553).
机译:肠道热是一个主要由Salmonella肠道塞洛维拉斯Typhi和Paratyphi A引起的全球医疗问题。本研究的目的是开发一种能够保护血管的新型二价口腔疫苗。我们的方法以遗传工程为中心,衰减的S. Typhi Zh9菌株,在临床试验中具有出色的安全记录,引入两种副藜甲杀螨物免疫原性元素:鞭毛蛋白H:A和脂多糖(LPS)O:2。我们首先使用XER-CISE技术从S. Paratyphi A的高度同源Flic基因编码鞭毛素编码鞭毛蛋白的天然S. Typhi Flic基因。接下来,我们用间隔序列替代编码Typhi RFBE基因的S.Typhi RFBe基因,以使O:2 LPS的持续表达并防止其转化为O:9至Tyvelose映像酶活性。由此产生的新菌株ZH9Pa掺入这两个遗传变化,并表现出可比较的生长动力学对父母的ZH9菌株。含有ZH9和ZH9PA菌株的制剂一起构成了靶向S. Typhi和S.甲曲线A抗原的新的二价疫苗候选者,以解决肠道热预防的主要全球医疗保健差距。该疫苗现在在I期临床试验中进行测试(NCT04349553)。

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