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通过生物材料立体化学增强抗体反应的强度。

Enhancing the Magnitude of Antibody Responses through Biomaterial Stereochemistry.

作者信息

Appavu Rajagopal, Chesson Charles B, Koyfman Alexey Y, Snook Joshua D, Kohlhapp Frederick J, Zloza Andrew, Rudra Jai S

机构信息

Departments of Microbiology/Immunology and Internal Medicine, Rush University Medical Center, Chicago, Illinois 60612, United States.

出版信息

ACS Biomater Sci Eng. 2015 Jul 13;1(7):601-609. doi: 10.1021/acsbiomaterials.5b00139. Epub 2015 Jun 12.

Abstract

d-Amino acid analogs of peptides and proteins are attractive for applications in biotechnology and medicine due to their reduced proteolytic sensitivity. Here, we report that self-assembling peptide nanofibers composed of d-amino acids act as immune adjuvants, and investigate their ability to induce antibody responses in comparison to their l-amino acid counterparts. The model antigenic peptide OVA (chicken egg ovalbumin aa 323-339) from chicken egg ovalbumin, known to elicit antibody responses in mice, was linked to an l- or d-amino acid self-assembling peptide domain to generate enantiomeric nanofibers displaying the same epitope. The chiral nature of the fusion peptides was confirmed by circular dichrosim spectroscopy and transmission electron microscopy studies indicated that OVA-bearing enantiomers self-assembled into nanofibers with similar morphologies. In mice, d-amino acid peptide nanofibers displaying OVA elicited stronger antibody responses, equivalent levels of CD4+ T cell responses, and long-term antigen-presentation in vivo compared to l-amino acid nanofibers. Our findings indicate that self-assembling peptides composed of d-amino acids are strong immune adjuvants and that biomaterial stereochemistry can be used as a design tool to program adaptive immune responses for vaccine development.

摘要

由于其降低的蛋白水解敏感性,肽和蛋白质的d -氨基酸类似物在生物技术和医学应用中具有吸引力。在此,我们报道由d -氨基酸组成的自组装肽纳米纤维可作为免疫佐剂,并与它们的l -氨基酸对应物相比,研究其诱导抗体反应的能力。来自鸡卵清蛋白的模型抗原肽OVA(鸡卵清蛋白aa 323 - 339),已知能在小鼠中引发抗体反应,与l -或d -氨基酸自组装肽结构域相连,以产生展示相同表位的对映体纳米纤维。通过圆二色光谱证实了融合肽的手性性质,透射电子显微镜研究表明,携带OVA的对映体自组装成具有相似形态的纳米纤维。在小鼠中,与l -氨基酸纳米纤维相比,展示OVA的d -氨基酸肽纳米纤维引发更强的抗体反应、同等水平的CD4 + T细胞反应以及体内长期的抗原呈递。我们的研究结果表明,由d -氨基酸组成的自组装肽是强大的免疫佐剂,并且生物材料立体化学可作为一种设计工具,用于为疫苗开发编程适应性免疫反应。

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