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流感包膜基质蛋白 2 病毒样颗粒(M2e VLP)负载 PLGA 纳米颗粒经微针递呈诱导的疫苗免疫原性。

Vaccine-Induced Immunity Elicited by Microneedle Delivery of Influenza Ectodomain Matrix Protein 2 Virus-like Particle (M2e VLP)-Loaded PLGA Nanoparticles.

机构信息

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

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

出版信息

Int J Mol Sci. 2023 Jun 25;24(13):10612. doi: 10.3390/ijms241310612.

Abstract

This study focused on developing an influenza vaccine delivered in polymeric nanoparticles (NPs) using dissolving microneedles. We first formulated an influenza extracellular matrix protein 2 virus-like particle (M2e VLP)-loaded with poly(lactic-co-glycolic) acid (PLGA) nanoparticles, yielding M2e5x VLP PLGA NPs. The vaccine particles were characterized for their physical properties and in vitro immunogenicity. Next, the M2e5x VLP PLGA NPs, along with the adjuvant Alhydrogel and monophosphoryl lipid A (MPL-A) PLGA NPs, were loaded into fast-dissolving microneedles. The vaccine microneedle patches were then evaluated in vivo in a murine model. The results from this study demonstrated that the vaccine nanoparticles effectively stimulated antigen-presenting cells in vitro resulting in enhanced autophagy, nitric oxide, and antigen presentation. In mice, the vaccine elicited M2e-specific antibodies in both serum and lung supernatants (post-challenge) and induced significant expression of CD4 and CD8 populations in the lymph nodes and spleens of immunized mice. Hence, this study demonstrated that polymeric particulates for antigen and adjuvant encapsulation, delivered using fast-dissolving microneedles, significantly enhanced the immunogenicity of a conserved influenza antigen.

摘要

本研究专注于使用溶解微针开发一种以聚合物纳米颗粒(NPs)递送的流感疫苗。我们首先用聚(乳酸-共-乙醇酸)(PLGA)纳米粒包载流感细胞外基质蛋白 2 病毒样颗粒(M2e VLP),制成 M2e5x VLP PLGA NPs。我们对疫苗颗粒的物理性质和体外免疫原性进行了表征。接着,将 M2e5x VLP PLGA NPs 与佐剂 Alhydrogel 和单磷酰脂质 A(MPL-A)PLGA NPs 载入快速溶解微针中。然后,在小鼠模型中对疫苗微针贴片进行了体内评估。研究结果表明,疫苗纳米颗粒在体外可有效刺激抗原呈递细胞,从而增强自噬、一氧化氮和抗原呈递。在小鼠中,疫苗在血清和肺部上清液(攻毒后)中诱导出 M2e 特异性抗体,并在免疫小鼠的淋巴结和脾脏中诱导出显著的 CD4 和 CD8 群体表达。因此,本研究表明,使用快速溶解微针递送用于包封抗原和佐剂的聚合物颗粒,可显著增强保守流感抗原的免疫原性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82c2/10341628/b174180c1cf5/ijms-24-10612-g001.jpg

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