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在腺病毒 3 型六邻体中纳入中和表位以预防肠道病毒 71 型。

Protection against enterovirus 71 with neutralizing epitope incorporation within adenovirus type 3 hexon.

机构信息

State Key Laboratory of Respiratory Diseases, The First Affiliated Hospital of Guangzhou Medical College, Guangzhou Medical College, Guangzhou, Guangdong, China.

出版信息

PLoS One. 2012;7(7):e41381. doi: 10.1371/journal.pone.0041381. Epub 2012 Jul 27.

Abstract

Enterovirus 71 (EV71) is responsible for hand, foot and mouth disease with high mortality among children. Various neutralizing B cell epitopes of EV71 have been identified as potential vaccine candidates. Capsid-incorporation of antigens into adenovirus (Ad) has been developed for a novel vaccine approach. We constructed Ad3-based EV71 vaccine vectors by incorporating a neutralizing epitope SP70 containing 15 amino acids derived from capsid protein VP1 of EV71 within the different surface-exposed domains of the capsid protein hexon of Ad3EGFP, a recombinant adenovirus type 3 (Ad3) expressing enhanced green fluorescence protein. Thermostability and growth kinetic assays suggested that the SP70 epitope incorporation into hypervariable region (HVR1, HVR2, or HVR7) of the hexon did not affect Ad fitness. The SP70 epitopes were thought to be exposed on all hexon-modified intact virion surfaces. Repeated administration of BALB/c mice with the modified Ads resulted in boosting of the anti-SP70 humoral immune response. Importantly, the modified Ads immunization of mother mice conferred protection in vivo to neonatal mice against the lethal EV71 challenge, and the modified Ads-immunized mice serum also conferred passive protection against the lethal challenge in newborn mice. Compared with the recombinant GST-fused SP70 protein immunization, immunization with the Ads containing SP70 in HVR1 or HVR2 elicited higher SP70-specific IgG titers, higher neutralization titers, and conferred more effective protection to neonatal mice. Thus, this study provides valuable information for hexon-modified Ad3 vector development as a promising EV71 vaccine candidate and as an epitope-delivering vehicle for other pathogens.

摘要

肠道病毒 71 型(EV71)可引起手足口病,导致儿童死亡率较高。EV71 的各种中和 B 细胞表位已被鉴定为潜在的疫苗候选物。将抗原包入腺病毒(Ad)中已被开发用于新型疫苗方法。我们通过将包含来自 EV71 衣壳蛋白 VP1 的 15 个氨基酸的中和表位 SP70 掺入到 Ad3EGFP(表达增强型绿色荧光蛋白的重组腺病毒 3 型(Ad3))的衣壳蛋白六邻体的不同表面暴露结构域中,构建了基于 Ad3 的 EV71 疫苗载体。六邻体的高变区(HVR1、HVR2 或 HVR7)。热稳定性和生长动力学测定表明,SP70 表位掺入六邻体的高变区不会影响 Ad 的适应性。认为 SP70 表位暴露在所有六邻体修饰的完整病毒粒子表面上。用修饰的 Ads 重复给药 BALB/c 小鼠会增强针对 SP70 的体液免疫反应。重要的是,修饰的 Ads 免疫可在体内赋予母鼠针对致命 EV71 攻击的保护作用,并且修饰的 Ads 免疫小鼠的血清还可赋予新生小鼠针对致命挑战的被动保护作用。与重组 GST 融合的 SP70 蛋白免疫接种相比,用包含 HVR1 或 HVR2 中的 SP70 的 Ads 免疫接种可引起更高的 SP70 特异性 IgG 滴度,更高的中和滴度,并赋予新生小鼠更有效的保护作用。因此,这项研究为六邻体修饰的 Ad3 载体作为有前途的 EV71 疫苗候选物以及作为其他病原体的表位传递载体的开发提供了有价值的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e84d/3407240/ccfce51433c2/pone.0041381.g001.jpg

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