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聚合物类病原体样颗粒协同递呈双重和三重 TLR 激动剂可显著增强固有和适应性免疫应答。

Combinatorial Delivery of Dual and Triple TLR Agonists via Polymeric Pathogen-like Particles Synergistically Enhances Innate and Adaptive Immune Responses.

机构信息

The Wallace H. Coulter Department of Biomedical Engineering Georgia Institute of Technology and Emory University, Atlanta, GA, 30332, USA.

出版信息

Sci Rep. 2017 May 31;7(1):2530. doi: 10.1038/s41598-017-02804-y.

Abstract

Despite decades of research very few vaccine-adjuvants have received FDA approval. Two fundamental challenges plague clinical translation of vaccine-adjuvants: reducing acute toxicities that result from systemic diffusion of many soluble adjuvants, and delivering multiple adjuvants at the same time to mimic the synergistic immune-stimulation of pathogens, while being safe. In order to address these barriers, we evaluated combinations of four clinically relevant immune-agonists, specifically Toll-like receptor (TLR) ligands, using biodegradable, polymer microparticles. We tested them alone and in combinations of 2 or 3, for a total of 10 unique conditions. We evaluated primary bone-marrow-derived Dendritic Cell phenotypes and functionality, and identified several synergistic combinations. We picked a dual and a triple adjuvant combination, TLR4/TLR9 and TLR4/TLR7/TLR9, for further evaluation and found that both combinations promoted antigen cross-presentation in vitro. Studies in mice using the model antigen Ovalbumin, showed that both combinations enhanced lymph node germinal center and T follicular helper cell responses. The triple adjuvant combination showed increased antigen-specific antibody titer with an overall balanced Th1/Th2 response, while the dual combination promoted Th1-polarized IgG responses. Our results show how polymeric particulate-carriers can be adopted to safely deliver combinatorial adjuvants and selectively synergize specific types of immune responses for vaccine applications.

摘要

尽管经过了几十年的研究,但只有少数疫苗佐剂获得了 FDA 的批准。疫苗佐剂在临床转化中面临两个基本挑战:减少许多可溶性佐剂在全身扩散所导致的急性毒性,以及同时传递多种佐剂以模拟病原体的协同免疫刺激,同时保持安全性。为了解决这些障碍,我们使用可生物降解的聚合物微球评估了四种临床相关免疫激动剂(即 Toll 样受体(TLR)配体)的组合。我们单独测试了它们,以及 2 种或 3 种组合,总共测试了 10 种独特的条件。我们评估了主要来源于骨髓的树突状细胞表型和功能,并确定了几种协同组合。我们选择了双佐剂和三佐剂组合,TLR4/TLR9 和 TLR4/TLR7/TLR9,进行进一步评估,发现这两种组合都能促进体外抗原交叉呈递。使用模型抗原卵清蛋白在小鼠中的研究表明,这两种组合都增强了淋巴结生发中心和 T 滤泡辅助细胞反应。三佐剂组合显示出增加的抗原特异性抗体滴度和整体平衡的 Th1/Th2 反应,而双佐剂组合则促进了 Th1 极化的 IgG 反应。我们的研究结果表明,聚合物颗粒载体可用于安全地传递组合佐剂,并选择性地协同增强疫苗应用中特定类型的免疫反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f35d/5451393/48821c8e2bf2/41598_2017_2804_Fig1_HTML.jpg

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