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树突状细胞对长蛋白-聚电解质纳米管的摄取。

Uptake of Long Protein-Polyelectrolyte Nanotubes by Dendritic Cells.

机构信息

Institute of Condensed Matter and Nanosciences, Université catholique de Louvain , Croix du Sud 1 L7.04.02, B1348. Louvain-la-Neuve, Belgium.

Department of Pharmaceutics, Ghent University , Ottergemsesteenweg 460, B9000 Ghent, Belgium.

出版信息

Biomacromolecules. 2017 Dec 11;18(12):4299-4306. doi: 10.1021/acs.biomac.7b01353. Epub 2017 Nov 13.

Abstract

Anisotropic nanostructures, such as nanotubes, incorporating bioactive molecules present interesting features for application as drug delivery carriers. Here, we present the synthesis of layer-by-layer (LbL) nanotubes including protein (ovalbumin) layers and go from simple to more complex synergetic combinations of synthetic and natural polyelectrolytes, leading to structures with tunable properties. The rigidity in organic and aqueous media, the stability in buffer solution and the uptake of different LbL tubes by dendritic cells (DCs) are analyzed to contrast size and chemistry. The most rigid studied systems appear as the best candidates to be internalized by cells, regardless of the chemistry of their outermost layers. The successful transport of long protein-loaded robust rigid nanotubes to the cytoplasm of DCs paves the way for their use as new cargo for the delivery of large amounts of antigen to such cells.

摘要

各向异性纳米结构,如纳米管,将生物活性分子结合在一起,具有作为药物输送载体的应用的有趣特性。在这里,我们提出了包括蛋白质(卵清蛋白)层在内的层层(LbL)纳米管的合成,并从简单到更复杂的合成和天然聚电解质的协同组合开始,从而产生具有可调节性质的结构。分析了在有机和水介质中的刚性、在缓冲溶液中的稳定性以及树突状细胞(DC)对不同 LbL 管的摄取,以对比大小和化学性质。研究中最刚性的系统似乎是最适合被细胞内化的候选物,而与其最外层的化学性质无关。将负载有长蛋白质的坚固刚性纳米管成功输送到 DC 的细胞质中,为将大量抗原递送到此类细胞的新型有效负载开辟了道路。

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