首页> 外文期刊>Peptides: An International Journal >Dendritic cell acquisition of epitope cargo mediated by simple cationic peptide structures.
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Dendritic cell acquisition of epitope cargo mediated by simple cationic peptide structures.

机译:简单阳离子肽结构介导的表位货物的树突状细胞获取。

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In this study we evaluate the uptake by murine dendritic cells (DCs) of different synthetic, branched cationic peptide structures with a view to facilitating peptide epitope delivery. The level of cell uptake by fluorescenated peptides was measured by flow cytometry following quenching of extracellular fluorescence with trypan blue. Branched peptides containing either N-terminal arginine or N-terminal lysine residues were able to mediate cell entry but the peptide containing four arginine residues in a branching configuration (R4) was found to be superior not only to other branched peptides in translocating to the cell interior and also to a peptide containing four arginine residues arranged linearly. Fluorescenated R4 was found to be localized within intracellular vesicle-like compartments as well as being distributed throughout the cell cytoplasm. Uptake of R4 utilized an energy-dependent process that appeared to involve phosphatidylinositol-3-kinase and could induce intermediate levels of DC maturation. R4 when conjugated to a T-helper cell and CTL epitope construct was able to induce antigen-specific CD8+ T-cell mediated immune responses in mice when administered in adjuvant as were DCs that were pulsed with this construct and then matured with LPS. Fluorescenated R4 was also found to translocate into the interior of other cell types indicating that it may be useful for the delivery of peptide cargo into other specialized cells.
机译:在这项研究中,我们评估了鼠类树突状细胞(DC)对不同合成的分支阳离子肽结构的摄取,以促进肽表位的递送。用锥虫蓝淬灭细胞外荧光后,通过流式细胞术测量荧光肽对细胞的摄取水平。含有N端精氨酸或N端赖氨酸残基的分支肽能够介导细胞进入,但发现在分支构型(R4)中包含四个精氨酸残基的肽不仅在转运到细胞中优于其他分支肽内部和还有一个包含四个线性排列的精氨酸残基的肽。发现荧光素化的R4位于细胞内囊样隔室内,并且分布在整个细胞质中。 R4的吸收利用了一种依赖能量的过程,该过程似乎涉及磷脂酰肌醇-3-激酶,并且可以诱导中等水平的DC成熟。当与佐剂一起施用时,R4当与佐剂一起施用给小鼠时,DC可以诱导抗原特异性CD8 + T细胞介导的免疫反应,例如DCs用这种构建物脉冲,然后用LPS成熟。还发现荧光R4易位到其他细胞类型的内部,表明它可能对将肽货物输送到其他特化细胞中有用。

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