首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Effect of the Hydrophilic-Hydrophobic Balance of Antigen-Loaded Peptide Nanofibers on Their Cellular Uptake Cellular Toxicity and Immune Stimulatory Properties
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Effect of the Hydrophilic-Hydrophobic Balance of Antigen-Loaded Peptide Nanofibers on Their Cellular Uptake Cellular Toxicity and Immune Stimulatory Properties

机译:抗原负载肽纳米纤维的亲水-疏水平衡对其细胞摄取细胞毒性和免疫刺激特性的影响

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摘要

Recently, nanofibers (NFs) formed from antigenic peptides conjugated to β-sheet-forming peptides have attracted much attention as a new generation of vaccines. However, studies describing how the hydrophilic-hydrophobic balance of NF components affects cellular interactions of NFs are limited. In this report, three different NFs were prepared by self-assembly of β-sheet-forming peptides conjugated with model antigenic peptides (SIINFEKL) from ovalbumin and hydrophilic oligo-ethylene glycol (EG) of differing chain lengths (6-, 12- and 24-mer) to investigate the effect of EG length of antigen-loaded NFs on their cellular uptake, cytotoxicity, and dendritic cell (DC)-stimulation ability. We used an immortal DC line, termed JAWS II, derived from bone marrow-derived DCs of a C57BL/6 p53-knockout mouse. The uptake of NFs, consisting of the EG 12-mer by DCs, was the most effective and activated DC without exhibiting significant cytotoxicity. Increasing the EG chain length significantly reduced cellular entry and DC activation by NFs. Conversely, shortening the EG chain enhanced DC activation but increased toxicity and impaired water-dispersibility, resulting in low cellular uptake. These results show that the interaction of antigen-loaded NFs with cells can be tuned by the EG length, which provides useful design guidelines for the development of effective NF-based vaccines.
机译:近来,由与β-折叠形成肽缀合的抗原性肽形成的纳米纤维(NF)作为新一代疫苗引起了广泛的关注。但是,描述NF组分的亲水-疏水平衡如何影响NF的细胞相互作用的研究是有限的。在此报告中,通过自组装由卵清蛋白和亲水性低聚乙二醇(EG)组成的不同链长(6-,12-和(24-mer)来研究抗原长度的NF的EG长度对其细胞摄取,细胞毒性和树突状细胞(DC)刺激能力的影响。我们使用了一种永生的DC品系,称为JAWS II,它来自C57BL / 6 p53基因敲除小鼠的骨髓DC。 DC吸收由EG 12-mer组成的NFs是最有效和活化的DC,而没有表现出明显的细胞毒性。 EG链长度的增加显着减少了NFs的细胞进入和DC激活。相反,缩短EG链可增强DC活化作用,但会增加毒性并损害水分散性,从而导致细胞摄取降低。这些结果表明,可通过EG长度调节抗原加载的NF与细胞的相互作用,这为开发基于NF的有效疫苗提供了有用的设计指南。

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