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PRRSV 的 GP5 抗原靶向递送至 M 细胞增强了抗原特异性的系统和黏膜免疫应答。

Targeted Delivery of GP5 Antigen of PRRSV to M Cells Enhances the Antigen-Specific Systemic and Mucosal Immune Responses.

机构信息

Key Laboratory of Veterinary Biological Engineering and Technology Ministry of Agriculture, Institute of Veterinary Medicine, Jiangsu Academy of Agricultural Sciences, Nanjing, China.

Jiangsu Co-infection Center for Prevention and Control of Important Animal Infectious Disease and Zoonoses, Yangzhou, China.

出版信息

Front Cell Infect Microbiol. 2018 Jan 25;8:7. doi: 10.3389/fcimb.2018.00007. eCollection 2018.

Abstract

Efficient delivery of antigens through oral immunization is a first and critical step for successful induction of mucosal immunity, which can provide protection against pathogens invading the mucosa. Membranous/microfold cells (M cells) within the mucosa can transcytose internalized antigen without degradation and thus play an important role in initiating antigen-specific mucosal immune responses through inducing secretory IgA production. In this research, we modified poly (D, L-lactide-co-glycolide) (PLGA) nanoparticles (NPs) with agglutinin 1 (UEA-1) and successfully prepared an oral vaccine delivery system, UEA-1/PLGA NPs. PLGA NPs were prepared using a standard double emulsion solvent evaporation technique, which can protect the entrapped PRRSV DNA vaccine [pcDNA3.1-SynORF5 (synthetic ORF5)] or subunit vaccine ORF5-encoded glycoprotein (GP5) from exposure to the gastrointestinal (GI) tract and release the plasmids in a controlled manner. With UEA-1 modification, the UEA-1/PLGA NPs can be effectively transported by M-cells. We investigated immune response induced by UEA-1/PLGA-SynORF5 or UEA-1/PLGA-GP5 following inoculation in mice and piglets. Compared with PLGA-SynORF5 or PLGA-GP5 NPs, UEA-1/PLGA-SynORF5, or UEA-1/PLGA-GP5 NPs stimulated significantly increased serum IgG levels and augmented intestinal IgA levels in mice and piglets ( < 0.05). Our findings indicate UEA-1/PLGA NPs can be applied as a promising and universally robust oral vaccine delivery system.

摘要

通过口服免疫有效地递呈抗原是成功诱导黏膜免疫的第一步和关键步骤,黏膜免疫可以为防止病原体入侵黏膜提供保护。黏膜内的膜状/微皱褶细胞(M 细胞)可以将内化的抗原转胞吞而不被降解,从而通过诱导分泌型 IgA 的产生在引发抗原特异性黏膜免疫应答方面发挥重要作用。在这项研究中,我们用凝集素 1(UEA-1)修饰了聚(D,L-丙交酯-共-乙交酯)(PLGA)纳米颗粒(NPs),并成功制备了一种口服疫苗递送系统,即 UEA-1/PLGA NPs。PLGA NPs 是使用标准的双乳液溶剂蒸发技术制备的,该技术可以保护包封的 PRRSV DNA 疫苗[pcDNA3.1-SynORF5(合成 ORF5)]或亚单位疫苗 ORF5 编码的糖蛋白(GP5)免受胃肠道(GI)暴露,并以受控方式释放质粒。通过 UEA-1 修饰,UEA-1/PLGA NPs 可以被 M 细胞有效转运。我们研究了在小鼠和仔猪中接种 UEA-1/PLGA-SynORF5 或 UEA-1/PLGA-GP5 后诱导的免疫应答。与 PLGA-SynORF5 或 PLGA-GP5 NPs 相比,UEA-1/PLGA-SynORF5 或 UEA-1/PLGA-GP5 NPs 刺激小鼠和仔猪的血清 IgG 水平显著升高,并增强了肠道 IgA 水平(<0.05)。我们的研究结果表明,UEA-1/PLGA NPs 可用作一种有前途且普遍强大的口服疫苗递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9213/5788884/1d750dcf369a/fcimb-08-00007-g0001.jpg

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