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首页> 外文期刊>Vaccine >Orally delivered foot-and-mouth disease virus capsid protomer vaccine displayed on T4 bacteriophage surface: 100% protection from potency challenge in mice.
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Orally delivered foot-and-mouth disease virus capsid protomer vaccine displayed on T4 bacteriophage surface: 100% protection from potency challenge in mice.

机译:在T4噬菌体表面展示的口服口蹄疫病毒衣壳原代疫苗:100%保护小鼠免受能力攻击。

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摘要

An orally delivered foot-and-mouth disease (FMD) vaccine has not previously been reported. By using a T4 bacteriophage nanoparticle surface gene-protein display system (T4-S-GPDS), we created a foot-and-mouth disease virus (FMDV) entire capsid protein vaccine candidate. On the T4 phage surface SOC site, a full length FMDV capsid precursor polyprotein (P1, 755 aa) and proteinase 3C (213 aa) derived from an infected pig of serotype O strain GD-10 (1999), were separately displayed on different T4 phage particle surfaces through inserting their coding region DNAs into the T4 phage genome, yielding phage strains T4-P1 and T4-3C. We also constructed a series of FMDV sub-full length capsid structural protein (subunit) containing T4 phage recombinant vaccines. Both sucking and young BALB/c mice were used as two kinds of FMDV vaccine potency evaluation models. Many groups of both model mice were vaccinated orally or by subcutaneous injection with varying FMDV-T4 phage recombinant vaccines, with and without addition of adjuvant, then challenged with a lethal dose of cattle source virulent FMDV. In the case of immunization with a mixture of phage T4-P1 and phage T4-3C particles without any adjuvant added, all mice were 100% protected following either oral or injection immunization, whereas 100% of the control, non-immunized mice and mice immunized with only T4 phage vector Z1/Zh(-) or wild-type T4(+)D phage died; in contrast, with FMDV subunit vaccine, less than 75% protection followed the same potency challenge in both mice model groups. In addition, two pigs immunized with a phage T4-P1 and phage T4-3C mix were protected upon housing together with infected pigs. This study represents a clear example of how FMD and other pathogenic disease vaccines can be prepared by a simple and efficient bacteriophage route.
机译:以前没有口服口蹄疫疫苗的报道。通过使用T4噬菌体纳米表面表面蛋白-蛋白质展示系统(T4-S-GPDS),我们创建了口蹄疫病毒(FMDV)整个衣壳蛋白疫苗候选对象。在T4噬菌体表面SOC部位,分别在不同的T4上展示了全长FMDV衣壳前体多蛋白(P1,755 aa)和来源于O型血清型GD-10(1999)感染猪的蛋白酶3C(213 aa)。噬菌体颗粒表面通过将它们的编码区DNA插入T4噬菌体基因组中,产生噬菌体菌株T4-P1和T4-3C。我们还构建了一系列含有T4噬菌体重组疫苗的FMDV亚全长衣壳结构蛋白(亚基)。吮吸和幼小BALB / c小鼠均用作两种FMDV疫苗效力评估模型。两组模型小鼠中的许多组都口服或通过皮下注射不同的FMDV-T4噬菌体重组疫苗,添加和不添加佐剂,然后用致死剂量的牛源强毒FMDV攻击。在使用不添加任何佐剂的噬菌体T4-P1和噬菌体T4-3C颗粒的混合物进行免疫的情况下,口服或注射免疫后所有小鼠均受到100%保护,而对照,未免疫小鼠和小鼠则为100%仅用T4噬菌体载体Z1 / Zh(-)或野生型T4(+)D噬菌体免疫后死亡;相比之下,对于FMDV亚单位疫苗,在两个小鼠模型组中,少于75%的保护受到了相同的功效挑战。另外,用噬菌体T4-P1和噬菌体T4-3C混合物免疫的两只猪与被感染的猪一起饲养时受到保护。这项研究代表了一个清晰的例子,说明如何通过简单有效的噬菌体途径制备口蹄疫和其他病原性疾病疫苗。

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