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使用微针将包裹有人乳头瘤病毒假病毒的质粒靶向接种到皮肤。

Vaccination with human papillomavirus pseudovirus-encapsidated plasmids targeted to skin using microneedles.

作者信息

Kines Rhonda C, Zarnitsyn Vladimir, Johnson Teresa R, Pang Yuk-Ying S, Corbett Kizzmekia S, Nicewonger John D, Gangopadhyay Anu, Chen Man, Liu Jie, Prausnitz Mark R, Schiller John T, Graham Barney S

机构信息

Laboratory of Cellular Oncology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, United States of America.

School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia, United States of America.

出版信息

PLoS One. 2015 Mar 18;10(3):e0120797. doi: 10.1371/journal.pone.0120797. eCollection 2015.

Abstract

Human papilloma virus-like particles (HPV VLP) serve as the basis of the current licensed vaccines for HPV. We have previously shown that encapsidation of DNA expressing the model antigen M/M2 from respiratory syncytial virus (RSV) in HPV pseudovirions (PsV) is immunogenic when delivered intravaginally. Because the HPV capsids confer tropism for basal epithelium, they represent attractive carriers for vaccination targeted to the skin using microneedles. In this study we asked: 1) whether HPV16 VLP administered by microneedles could induce protective immune responses to HPV16 and 2) whether HPV16 PsV-encapsidated plasmids delivered by microneedles could elicit immune responses to both HPV and the antigen delivered by the transgene. Mice immunized with HPV16 VLP coated microneedles generated robust neutralizing antibody responses and were protected from HPV16 challenge. Microneedle arrays coated with HPV16-M/M2 or HPV16-F protein (genes of RSV) were then tested and dose-dependent HPV and F-specific antibody responses were detected post-immunization, and M/M2-specific T-cell responses were detected post RSV challenge, respectively. HPV16 PsV-F immunized mice were fully protected from challenge with HPV16 PsV and had reduced RSV viral load in lung and nose upon intranasal RSV challenge. In summary, HPV16 PsV-encapsidated DNA delivered by microneedles induced neutralizing antibody responses against HPV and primed for antibody and T-cell responses to RSV antigens encoded by the encapsidated plasmids. Although the immunogenicity of the DNA component was just above the dose response threshold, the HPV-specific immunity was robust. Taken together, these data suggest microneedle delivery of lyophilized HPV PsV could provide a practical, thermostable combined vaccine approach that could be developed for clinical evaluation.

摘要

人乳头瘤病毒样颗粒(HPV VLP)是目前已获许可的HPV疫苗的基础。我们之前已经表明,将表达呼吸道合胞病毒(RSV)模型抗原M/M2的DNA包裹在HPV假病毒颗粒(PsV)中,经阴道给药时具有免疫原性。由于HPV衣壳赋予了对基底上皮的嗜性,它们是使用微针进行皮肤靶向疫苗接种的有吸引力的载体。在本研究中,我们提出以下问题:1)通过微针给药的HPV16 VLP是否能诱导对HPV16的保护性免疫反应,以及2)通过微针递送的HPV16 PsV包裹的质粒是否能引发对HPV和转基因递送的抗原的免疫反应。用HPV16 VLP包被的微针免疫的小鼠产生了强烈的中和抗体反应,并受到保护免受HPV16攻击。然后测试了包被有HPV16-M/M2或HPV16-F蛋白(RSV基因)的微针阵列,免疫后分别检测到剂量依赖性的HPV和F特异性抗体反应,以及RSV攻击后检测到M/M2特异性T细胞反应。用HPV16 PsV-F免疫的小鼠完全受到保护免受HPV16 PsV攻击,并且在鼻内RSV攻击后肺和鼻中RSV病毒载量降低。总之,通过微针递送的HPV16 PsV包裹的DNA诱导了针对HPV的中和抗体反应,并引发了对包裹质粒编码的RSV抗原的抗体和T细胞反应。尽管DNA成分的免疫原性略高于剂量反应阈值,但HPV特异性免疫反应很强。综上所述,这些数据表明冻干的HPV PsV的微针递送可以提供一种实用的、热稳定的联合疫苗方法,可用于临床评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92aa/4364728/575902776bbd/pone.0120797.g001.jpg

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