由两亲性β-肽组装的圆柱形胶束作为抗原递送纳米结构的评价。

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Clément Martin, Mélanie Côté-Cyr, Phuong Trang Nguyen, Denis Archambault, Steve Bourgault
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引用次数: 0

摘要

由合成肽组装而成的超分子纳米结构构成了用于疫苗开发的抗原递送的有希望的支架。两亲肽和自组装交叉β肽已被证明可以促进抗原呈递细胞对抗原表位的细胞摄取,刺激先天免疫系统并诱导强大的抗原特异性体液免疫反应。在这项研究中,我们评估了使用由两亲性β-肽C16V3A3K3组装的圆柱形胶束作为疫苗纳米平台,结合了交叉β-片原纤维和胶束的特性。在甲型流感病毒C16V3A3K3的c端,将基质2蛋白(M2e)的外畴与一个四聚甘氨酸连接体结合。嵌合肽组装成具有生物相容性的未分枝细丝,将抗原暴露在表面,这些细丝很容易被树突状细胞内化并激活toll样受体2/6。这些圆柱形胶束在小鼠肌内免疫时诱导了强大的m2e特异性体液免疫反应,而无需与佐剂共同给药。虽然这种强烈的体液反应不能转化为对H1N1流感病毒致命感染的保护,但这些由两亲性β-肽组装的圆柱形胶束扩展了自佐剂纳米结构的库,以增强针对肽表位的抗体产生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of cylindrical micelles assembled from amphiphilic β-peptides as antigen delivery nanostructures.

Supramolecular nanostructures assembled from synthetic peptides constitute promising scaffolds for the delivery of antigens for vaccine development. Amphiphilic peptides and self-assembling cross-β-peptides have been shown to promote cellular uptake of antigenic epitopes by antigen-presenting cells, to stimulate the innate immune system and to induce a robust antigen-specific humoral immune response. In this study, we evaluated the use of cylindrical micelles assembled from the amphiphilic β-peptide C16V3A3K3 as a vaccine nanoplatform, combining the properties of cross-β-sheet fibrils and micelles. The ectodomain of the matrix 2 protein (M2e) of the influenza A virus was conjugated with a tetra-Gly linker at the C-terminus of C16V3A3K3. The chimeric peptide assembled into biocompatible unbranched filaments that exposed the antigen on the surface, and these filaments were readily internalized by dendritic cells and activated the toll-like receptor 2/6. These cylindrical micelles induced a robust M2e-specific humoral immune response upon intramuscular immunization in mice without the need for co-administration with adjuvants. Although this strong humoral response did not translate into protection against a lethal infection with the H1N1 influenza virus, these cylindrical micelles assembled from amphiphilic β-peptides expand the repertoire of self-adjuvanted nanostructures to enhance antibody production against peptide epitopes.

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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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