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用于呼吸道合胞病毒的微粒疫苗的激光辅助皮内递送可诱导强烈的免疫反应。

Laser-assisted intradermal delivery of a microparticle vaccine for respiratory syncytial virus induces a robust immune response.

作者信息

Menon Ipshita, Kang Sang Moo, Braz Gomes Keegan, Uddin Mohammad N, D'Souza Martin

机构信息

Center for Drug Delivery Research, Vaccine Nanotechnology Laboratory, Mercer University, College of Pharmacy, Atlanta, GA 30341, USA.

Center for Inflammation, Immunity & Infection, Institute for Biomedical Sciences, Georgia State University, Atlanta, GA 30303, USA.

出版信息

Vaccine. 2023 Feb 3;41(6):1209-1222. doi: 10.1016/j.vaccine.2023.01.002. Epub 2023 Jan 9.

Abstract

Respiratory syncytial virus (RSV) is an infectious disease that poses a significant public health risk in young children. Vaccine studies conducted in the 1960s using an intramuscular injection of formalin-inactivated respiratory syncytial virus (Fi-RSV) resulted in an enhanced respiratory disease and led to the failure of the vaccine. Thus, the virus-like particles (VLP) of the RSV fusion (F) protein was used as the vaccine antigen in this study. The F-VLP was encapsulated in a microparticle (MP) matrix composed of cross-linked bovine serum albumin (BSA) to enhance the antigen presentation and uptake. Moreover, a painless vaccination method would be desirable for an infectious disease that mainly affects young children. Thus, an ablative laser device, Precise Laser Epidermal System (P.L.E.A.S.E), was utilized to create micropores on the skin for vaccine delivery. We observed enhanced antigen presentation of the vaccine microparticles (F-VLP MP) with and without the adjuvant monophosphoryl lipid A (MPL-A) MP in dendritic cells. Consequently, Swiss Webster mice were immunized with the adjuvanted vaccine microparticles using the P.L.E.A.S.E laser to study the in vivo immunogenicity. The immunized mice had high serum immunoglobulin (IgG, IgG2a) levels, indicating a Th1 response. Subsequent analysis of lung homogenates post- RSV challenge revealed high IgA, indicating generation of a mucosal immune response upon intradermal immunization. Flowcytometry analysis showed high CD8+, and CD4+ expression in the lymph node and spleen of the adjuvanted vaccine microparticle immunized mice. Increased expression of interferon gamma (IFN-γ) in the spleen cells further proved Th1 polarized immune response. Finally, an immune plaque assay indicated significantly low lung viral titer in the mice immunized with intradermal adjuvanted vaccine microparticles. Thus, ablative laser-assisted immunization with the F-VLP based adjuvanted vaccine microparticles could be a promising vaccine candidate for RSV.

摘要

呼吸道合胞病毒(RSV)是一种对幼儿构成重大公共卫生风险的传染病。20世纪60年代进行的使用肌肉注射福尔马林灭活呼吸道合胞病毒(Fi-RSV)的疫苗研究导致呼吸道疾病加重,疫苗研发失败。因此,本研究将呼吸道合胞病毒融合(F)蛋白的病毒样颗粒(VLP)用作疫苗抗原。F-VLP被包裹在由交联牛血清白蛋白(BSA)组成的微粒(MP)基质中,以增强抗原呈递和摄取。此外,对于主要影响幼儿的传染病,无痛接种方法是可取的。因此,利用一种剥脱性激光设备,即精确激光表皮系统(P.L.E.A.S.E),在皮肤上制造微孔用于疫苗递送。我们观察到在有或没有佐剂单磷酰脂质A(MPL-A)MP的情况下,疫苗微粒(F-VLP MP)在树突状细胞中的抗原呈递增强。因此,使用P.L.E.A.S.E激光用佐剂疫苗微粒免疫瑞士韦伯斯特小鼠,以研究其体内免疫原性。免疫小鼠的血清免疫球蛋白(IgG、IgG2a)水平较高,表明产生了Th1反应。随后对RSV攻击后的肺匀浆进行分析,发现IgA水平较高,表明皮内免疫后产生了黏膜免疫反应。流式细胞术分析显示,佐剂疫苗微粒免疫小鼠的淋巴结和脾脏中CD8+和CD4+表达较高。脾细胞中干扰素γ(IFN-γ)表达增加进一步证明了Th1极化免疫反应。最后,免疫斑试验表明皮内注射佐剂疫苗微粒免疫的小鼠肺病毒滴度显著降低。因此,基于F-VLP的佐剂疫苗微粒的剥脱性激光辅助免疫可能是一种有前景的RSV疫苗候选物。

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