Suppr超能文献

基于新城疫病毒的脊髓灰质炎疫苗。

Newcastle Disease Virus-Based Vectored Vaccine against Poliomyelitis.

机构信息

Department of Veterinary Medicine and Virginia-Maryland College of Veterinary Medicine, University of Maryland, College Park, Maryland, USA.

Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, Maryland, USA.

出版信息

J Virol. 2018 Aug 16;92(17). doi: 10.1128/JVI.00976-18. Print 2018 Sep 1.

Abstract

The poliovirus eradication initiative has spawned global immunization infrastructure and dramatically decreased the prevalence of the disease, yet the original virus eradication goal has not been met. The suboptimal properties of the existing vaccines are among the major reasons why the program has repeatedly missed eradication deadlines. Oral live poliovirus vaccine (OPV), while affordable and effective, occasionally causes the disease in the primary recipients, and the attenuated viruses rapidly regain virulence and can cause poliomyelitis outbreaks. Inactivated poliovirus vaccine (IPV) is safe but expensive and does not induce the mucosal immunity necessary to interrupt virus transmission. While the need for a better vaccine is widely recognized, current efforts are focused largely on improvements to the OPV or IPV, which are still beset by the fundamental drawbacks of the original products. Here we demonstrate a different design of an antipoliovirus vaccine based on production of virus-like particles (VLPs). The poliovirus capsid protein precursor, together with a protease required for its processing, are expressed from a Newcastle disease virus (NDV) vector, a negative-strand RNA virus with mucosal tropism. In this system, poliovirus VLPs are produced in the cells of vaccine recipients and are presented to their immune systems in the context of active replication of NDV, which serves as a natural adjuvant. Intranasal administration of the vectored vaccine to guinea pigs induced strong neutralizing systemic and mucosal antibody responses. Thus, the vectored poliovirus vaccine combines the affordability and efficiency of a live vaccine with absolute safety, since no full-length poliovirus genome is present at any stage of the vaccine life cycle. A new, safe, and effective vaccine against poliovirus is urgently needed not only to complete the eradication of the virus but also to be used in the future to prevent possible virus reemergence in a postpolio world. Currently, new formulations of the oral vaccine, as well as improvements to the inactivated vaccine, are being explored. In this study, we designed a viral vector with mucosal tropism that expresses poliovirus capsid proteins. Thus, poliovirus VLPs are produced , in the cells of a vaccine recipient, and are presented to the immune system in the context of vector virus replication, stimulating the development of systemic and mucosal immune responses. Such an approach allows the development of an affordable and safe vaccine that does not rely on the full-length poliovirus genome at any stage.

摘要

脊灰病毒根除计划催生了全球免疫基础设施,并显著降低了疾病的流行率,但最初的病毒根除目标尚未实现。现有疫苗的不理想特性是该计划多次错过根除最后期限的主要原因之一。口服脊髓灰质炎活疫苗(OPV)虽然价格低廉且有效,但偶尔会导致原发性接受者患病,减毒病毒会迅速恢复毒力并导致脊髓灰质炎爆发。灭活脊髓灰质炎病毒疫苗(IPV)虽然安全但昂贵,并且不能诱导阻断病毒传播所必需的粘膜免疫。虽然广泛认识到需要更好的疫苗,但目前的努力主要集中在改进 OPV 或 IPV 上,而这两种疫苗仍然存在最初产品的根本缺陷。在这里,我们展示了一种基于生产病毒样颗粒(VLPs)的抗脊灰病毒疫苗的不同设计。脊灰病毒衣壳蛋白前体与用于其加工的蛋白酶一起,由新城疫病毒(NDV)载体表达,NDV 是一种具有粘膜趋向性的负链 RNA 病毒。在该系统中,脊灰病毒 VLPs 在疫苗接受者的细胞中产生,并在 NDV 主动复制的情况下呈递给其免疫系统,NDV 作为天然佐剂。鼻内给予载体疫苗可诱导豚鼠产生强烈的中和系统和粘膜抗体应答。因此,该载体脊灰病毒疫苗将活疫苗的经济高效性与绝对安全性相结合,因为在疫苗生命周期的任何阶段都不存在全长脊灰病毒基因组。急需一种新的、安全且有效的脊灰病毒疫苗,不仅完成病毒的根除,而且在未来用于预防后脊髓灰质炎世界中可能出现的病毒再次出现。目前,正在探索新的口服疫苗配方以及对灭活疫苗的改进。在这项研究中,我们设计了一种具有粘膜趋向性的病毒载体,该载体表达脊灰病毒衣壳蛋白。因此,在疫苗接受者的细胞中产生脊灰病毒 VLPs,并在载体病毒复制的情况下呈递给免疫系统,刺激系统和粘膜免疫应答的发展。这种方法允许开发一种经济实惠且安全的疫苗,在任何阶段都不依赖全长脊灰病毒基因组。

相似文献

9
A mucosal adjuvant for the inactivated poliovirus vaccine.用于灭活脊髓灰质炎病毒疫苗的黏膜佐剂。
Vaccine. 2014 Jan 23;32(5):558-63. doi: 10.1016/j.vaccine.2013.11.101. Epub 2013 Dec 13.

引用本文的文献

4
Negative-Strand RNA Virus-Vectored Vaccines.负链RNA病毒载体疫苗
Methods Mol Biol. 2024;2786:51-87. doi: 10.1007/978-1-0716-3770-8_3.
7
Viral Replicon Systems and Their Biosafety Aspects.病毒复制子系统及其生物安全方面。
Appl Biosaf. 2023 Jun 1;28(2):102-122. doi: 10.1089/apb.2022.0037. Epub 2023 Jun 5.
8
The Fight against Poliovirus Is Not Over.对抗脊髓灰质炎病毒的斗争尚未结束。
Microorganisms. 2023 May 17;11(5):1323. doi: 10.3390/microorganisms11051323.

本文引用的文献

3
The Evolutionary Pathway to Virulence of an RNA Virus.一种RNA病毒毒力的进化途径
Cell. 2017 Mar 23;169(1):35-46.e19. doi: 10.1016/j.cell.2017.03.013.
10
Determining the Stage of the Estrous Cycle in Female Mice by Vaginal Smear.通过阴道涂片确定雌性小鼠的发情周期阶段
Cold Spring Harb Protoc. 2016 Aug 1;2016(8):2016/8/pdb.prot094474. doi: 10.1101/pdb.prot094474.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验