Nano-adjuvant based on lipo-imiquimod self-assembly for enhanced foot-and-mouth disease virus vaccine immune responses via intradermal immunization

IF 10.2 1区 医学 Q1 ENGINEERING, BIOMEDICAL Materials Today Bio Pub Date : 2025-04-01 Epub Date: 2025-02-12 DOI:10.1016/j.mtbio.2025.101567
Wenzhu Yin , Zeyu Xu , Fang Ma , Bihua Deng , Yanhong Zhao , Xiaoxin Zuo , Haiyan Wang , Yu Lu
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Abstract

Excellent adjuvants and proper immunization routes play pivotal roles in activating a robust immune response. Nano-adjuvants have the advantages of enhancing immunogenicity, targeting delivery, and improving stability to provide a new solution for vaccine delivery. In this work, we designed and synthesized a pro-immunostimulant of liposolubility imiquimod derivative IMQP, which was synthesized by reaction of palmitoyl chloride with parent imiquimod (IMQ). Using an inactivated foot-and-mouth disease virus (FMDV) as antigen, and the as-synthesized IMQP containing long carbon chain as nano-adjuvant, we formulated a self-assembled foot-and-mouth disease nano-vaccine (IMQP@FMDV) by re-precipitation method for intradermal (I.D.) immunity vaccination. Because of its small size (∼131.75 ± 41.70 nm) and fat-soluble, the as-fabricated lipid nanoparticles (LNPs) showed promising potential for efficient delivery of antigens to immune cells. Also, lysosomal escape was confirmed by co-localization dendritic cells (DCs). Our findings demonstrated that IMQP nano-adjuvant greatly promoted the expression and secretion of cytokines and chemokines with a balance Th1/Th2 immune response via the I.D. administration. Meanwhile, due to the slowly releasing of IMQ by the hydrolysis of IMQP, IMQP persistently stimulated antigen-presenting cells (APCs) maturation and promoted antigen presentation, and subsequently induced the activation of the related downstream NF-кB and MAPK pathways of the TLR7 signaling pathway, thereby stimulated a robust both humoral and cellular immune response.

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基于脂酰咪喹莫特自组装的纳米佐剂通过皮内免疫增强口蹄疫病毒疫苗免疫应答
优良的佐剂和适当的免疫途径在激活强大的免疫应答中起着关键作用。纳米佐剂具有增强免疫原性、靶向递送、提高稳定性等优点,为疫苗递送提供了新的解决方案。本研究设计并合成了一种脂溶性咪喹莫特衍生物IMQP,该衍生物由棕榈酰氯与母体咪喹莫特(IMQ)反应合成。以灭活的口蹄疫病毒(FMDV)为抗原,合成的含长碳链IMQP为纳米佐剂,采用重沉淀法制备自组装口蹄疫纳米疫苗(IMQP@FMDV),用于皮内免疫接种。由于其小尺寸(~ 131.75±41.70 nm)和脂溶性,制备的脂质纳米颗粒(LNPs)显示出有效递送抗原到免疫细胞的潜力。此外,共定位树突状细胞(dc)证实了溶酶体逃逸。我们的研究结果表明,IMQP纳米佐剂通过给药极大地促进了细胞因子和趋化因子的表达和分泌,并平衡了Th1/Th2免疫反应。同时,由于IMQP通过水解缓慢释放IMQ, IMQP持续刺激抗原呈递细胞(antigen-presenting cells, APCs)成熟,促进抗原呈递,进而诱导TLR7信号通路相关下游NF-кB和MAPK通路的激活,从而刺激了强大的体液和细胞免疫应答。
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来源期刊
CiteScore
8.30
自引率
4.90%
发文量
303
审稿时长
30 days
期刊介绍: Materials Today Bio is a multidisciplinary journal that specializes in the intersection between biology and materials science, chemistry, physics, engineering, and medicine. It covers various aspects such as the design and assembly of new structures, their interaction with biological systems, functionalization, bioimaging, therapies, and diagnostics in healthcare. The journal aims to showcase the most significant advancements and discoveries in this field. As part of the Materials Today family, Materials Today Bio provides rigorous peer review, quick decision-making, and high visibility for authors. It is indexed in Scopus, PubMed Central, Emerging Sources, Citation Index (ESCI), and Directory of Open Access Journals (DOAJ).
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