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聚电解质纳米胶囊与模型细胞的体外相互作用。

In vitro interaction of polyelectrolyte nanocapsules with model cells.

作者信息

Łukasiewicz Sylwia, Szczepanowicz Krzysztof

机构信息

Department of Physical Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University , 30-348 Krakow, Poland.

出版信息

Langmuir. 2014 Feb 4;30(4):1100-7. doi: 10.1021/la403610y. Epub 2014 Jan 17.

Abstract

The nanocapsules based on a liquid core with polyelectrolyte shells prepared by the technique of sequential adsorption of polyelectrolytes (LbL) were investigated to verify capsules bioacceptance. Using AOT (docusate sodium salt) as emulsifier, we obtained liquid cores, stabilized by the interfacial complex AOT/PLL (poly-l-lysine hydrobromide). These liquid cores were encapsulated by sequential adsorption of polyelectrolytes using biocompatible polyanion PGA (poly-l-glutamic acid sodium salt) and biocompatible polycation PLL. The average size of the formed capsules was 60-80 nm. The influence of a number of polyelectrolytes layer in the shell (thickness of polyelectrolytes shell), surface charge, and capsule doses on cell viability was studied in a cellular coculture assay. In order to improve nanocapsules biocompatibility, the PEG-ylated external layers were prepared using PGA-g-PEG (PGA grafted by PEG poly(ethylene glycol)). For the most toxic nanocapsules (with only one polycation layer) about 90% of cells could survive when the concentration of nanocapsules was below 0.2 × 10(6) per one cell. That suggests that they use as a delivery vehicles is quite safe for living cells. Analysis of internalization of AOT(PLL/PGA)4-g-PEG in HEK 293 cells indicates that tested nanocapsules can easily penetrate cells membrane.

摘要

研究了通过聚电解质层层吸附技术(LbL)制备的基于液芯和聚电解质壳的纳米胶囊,以验证其生物可接受性。使用AOT(多库酯钠盐)作为乳化剂,我们获得了由界面复合物AOT/PLL(聚-L-赖氨酸氢溴酸盐)稳定的液芯。这些液芯通过使用生物相容性聚阴离子PGA(聚-L-谷氨酸钠盐)和生物相容性聚阳离子PLL的聚电解质层层吸附进行封装。形成的胶囊平均尺寸为60-80纳米。在细胞共培养试验中研究了壳中聚电解质层数(聚电解质壳厚度)、表面电荷和胶囊剂量对细胞活力的影响。为了提高纳米胶囊的生物相容性,使用PGA-g-PEG(由PEG聚乙二醇接枝的PGA)制备了聚乙二醇化外层。对于毒性最大的纳米胶囊(只有一层聚阳离子层),当纳米胶囊浓度低于每细胞0.2×10(6)时,约90%的细胞能够存活。这表明它们作为递送载体对活细胞相当安全。对AOT(PLL/PGA)4-g-PEG在HEK 293细胞中的内化分析表明,测试的纳米胶囊能够轻松穿透细胞膜。

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