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将聚精氨酸滴定到纳米纤维中可增强环状二核苷酸的佐剂活性,并在舌下免疫后增强其效果。

Titrating Polyarginine into Nanofibers Enhances Cyclic-Dinucleotide Adjuvanticity and after Sublingual Immunization.

机构信息

Biomedical Engineering Department, Duke University, Durham, North Carolina 27708, United States.

出版信息

ACS Biomater Sci Eng. 2021 May 10;7(5):1876-1888. doi: 10.1021/acsbiomaterials.0c01429. Epub 2021 Mar 27.

Abstract

Effective sublingual peptide immunization requires overcoming challenges of both delivery and immunogenicity. Mucosal adjuvants, such as cyclic-dinucleotides (CDN), can promote sublingual immune responses but must be codelivered with the antigen to the epithelium for maximum effect. We designed peptide-polymer nanofibers (PEG-Q11) displaying nona-arginine (R9) at a high density to promote complexation with CDNs bidentate hydrogen-bonding with arginine side chains. We coassembled PEG-Q11 and PEG-Q11R9 peptides to titrate the concentration of R9 within nanofibers. , PEG-Q11R9 fibers and cyclic-di-GMP or cyclic-di-AMP adjuvants had a synergistic effect on enhancing dendritic cell activation that was STING-dependent and increased monotonically with increasing R9 concentration. The polyvalent display of R9 on assembled nanofibers was significantly more effective at promoting CDN-mediated DC activation than mixing nanofibers with an equimolar concentration of unassembled R9 peptide. The sublingual administration of nanofibers revealed a bell-shaped trend between increasing R9 concentration and enhancements to antigen trafficking and the activation of DCs in the draining lymph nodes. Intermediate levels of R9 within sublingually administered PEG-Q11 fibers were optimal for immunization, suggesting a balance between polyarginine's ability to sequester CDNs along the nanofiber and its potentially detrimental mucoadhesive interactions. These findings present a potentially generalizable biomaterial strategy for enhancing the potency of CDN adjuvants and reveal important design considerations for the nascent field of sublingual biomaterial immunization.

摘要

有效的舌下肽免疫接种需要克服传递和免疫原性两方面的挑战。黏膜佐剂,如环二核苷酸(CDN),可以促进舌下免疫反应,但必须与抗原共同递送至上皮细胞才能发挥最大效果。我们设计了肽-聚合物纳米纤维(PEG-Q11),在高密度下显示九聚精氨酸(R9),以促进与 CDN 的复合物形成,与精氨酸侧链双齿氢键结合。我们共同组装 PEG-Q11 和 PEG-Q11R9 肽,以滴定纳米纤维内 R9 的浓度。PEG-Q11R9 纤维和环状二-GMP 或环状二-AMP 佐剂对增强树突状细胞激活具有协同作用,这种激活依赖于 STING 并随着 R9 浓度的增加而单调增加。组装纳米纤维上多价 R9 的展示在促进 CDN 介导的 DC 激活方面明显优于将纳米纤维与等摩尔浓度的未组装 R9 肽混合。纳米纤维的舌下给药揭示了 R9 浓度与抗原转运和引流淋巴结中 DC 激活之间的钟形趋势。舌下给予的 PEG-Q11 纤维中 R9 的中间浓度最有利于免疫接种,表明多精氨酸将 CDN 沿纳米纤维隔离的能力与其潜在的有害粘膜黏附相互作用之间存在平衡。这些发现为增强 CDN 佐剂的效力提供了一种潜在的可推广的生物材料策略,并揭示了舌下生物材料免疫接种这一新兴领域的重要设计考虑因素。

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