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Modular Design Features of a Peptide Amphiphile Micelle Vaccine Platform and Their Impact on an Immune Response

机译:肽两亲胶束疫苗平台的模块化设计特征及其对免疫反应的影响

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摘要

Inducing a strong and specific immune response is the hallmark of a successful vaccine. Nanoparticles have emerged as promising vaccine delivery devices to discover and elicit immune responses. Modular platforms are attractive for their engineerability and broad potential applications. Fine-tuning a nanoparticle vaccine to create an immune response with specific antibody and other cellular responses is influenced by many factors such as shape, size and composition. Peptide amphiphile micelles are a unique biomaterials platform that can function as a modular vaccine delivery system, enabling control over many of these important factors. Peptide amphiphiles (PAs) consist of a hydrophilic peptide antigen conjugated to a hydrophobic lipid tail. The PAs then self-assemble into micelles, with the micelle characteristics determined by the chemical composition of the PA and micelle preparation methods. PA micelles contain a large design space, so it is important to have a basic understanding of how each design feature can affect the platform's interaction with the immune system.;In this dissertation, the structure, composition, and biodistribution properties of PA micelles are evaluated for their ability to impact an immune response against a Group A Streptococcus B cell antigen (J8). Through structural design and physical characterization, micelles are shown to self-assemble into either short rod-like or long cylindrical shapes. Analyzing these shape effects on the immune response showed that cylindrical micelles induced higher antibody titers than rod-like micelles, providing evidence that the cylindrical micelle shape is important to induce immune responses and a possible mechanism of action. Shape was also seen to impact the activation profile of dendritic cells, B cells and T cells. Assembly into cylindrical micelles also stabilizes the secondary structure of peptide antigens, which may impact the immune response raised. In composition, the hydrophobic/hydrophilic interface of PA micelles enabled the precise entrapment of amphiphilic adjuvants which were found to not alter micelle formation or shape. These heterogeneous micelles significantly enhanced murine antibody responses when compared to animals vaccinated with non-adjuvanted micelles or soluble J8 peptide supplemented with a classical adjuvant. PAs were also shown to traffic more efficiently to the lymph node than free peptide. Characterization of these design features and their impact on an immune response provides a valuable foundation of knowledge to apply when expanding the peptide amphiphile micelle platform to other vaccine applications.
机译:诱导强烈而特异性的免疫反应是成功疫苗的标志。纳米颗粒已经成为有前途的疫苗输送设备,可以发现并引发免疫反应。模块化平台因其可工程性和广泛的潜在应用而吸引人。对纳米粒子疫苗进行微调以产生具有特定抗体的免疫应答和其他细胞应答,受到许多因素的影响,例如形状,大小和组成。肽两亲胶束是一个独特的生物材料平台,可以充当模块化疫苗输送系统,从而能够控制许多重要因素。肽两亲物(PAs)由与疏水脂质尾巴缀合的亲水肽抗原组成。然后,PAs自组装成胶束,其胶束特性由PA的化学组成和胶束制备方法决定。 PA胶束包含较大的设计空间,因此,对每个设计特征如何影响平台与免疫系统的相互作用具有基本的了解是很重要的;在本文中,对PA胶束的结构,组成和生物分布特性进行了评估具有影响A组链球菌B细胞抗原(J8)免疫反应的能力。通过结构设计和物理表征,胶束显示为自组装成短杆状或长圆柱状。分析这些形状对免疫应答的影响,表明圆柱状胶束比棒状胶束诱导更高的抗体效价,提供了证据表明圆柱状胶束形状对诱导免疫反应和可能的作用机制很重要。还观察到形状影响树突状细胞,B细胞和T细胞的活化特性。组装成圆柱状胶束还可以稳定肽抗原的二级结构,这可能会影响所产生的免疫反应。在组成上,PA胶束的疏水/亲水界面使两亲性助剂精确地包封,发现它们不会改变胶束的形成或形状。与用非佐剂胶束或补充有经典佐剂的可溶性J8肽疫苗接种的动物相比,这些异质胶束显着增强了鼠抗体反应。与游离肽相比,PA还显示出更有效地向淋巴结运输。这些设计特征的表征及其对免疫反应的影响为将肽两亲胶束平台扩展到其他疫苗应用提供了宝贵的知识基础。

著录项

  • 作者

    Barrett, John Christopher.;

  • 作者单位

    The University of Chicago.;

  • 授予单位 The University of Chicago.;
  • 学科 Biomedical engineering.;Nanotechnology.;Immunology.
  • 学位 Ph.D.
  • 年度 2018
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 宗教;
  • 关键词

  • 入库时间 2022-08-17 11:41:17

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