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Penetration of amphiphilic quantum dots through model and cellular plasma membranes

机译:通过模型和细胞质膜渗透两亲量子点

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In this work we demonstrate progress in the colloidal synthesis of amphiphilic CdTe nanocrystals stabilized by thiolated PEG oligomers with the aim of facilitating cellular uptake of the particles. High-boiling, good coordinating solvents such as dimethylacetamide and dimethylformamide accelerate the growth of the nanoparticles yielding stable colloids of which photoluminescence maxima can be tuned to cover the region of 540-640 nm with quantum yields of up to 30%. The CdTe nanocrystals capped by thiolated methoxypolyethylene glycol are shown to penetrate through the lipid bilayer of giant unilamellar vesicles and giant plasma membrane vesicles which constitute basic endocytosis-free model membrane systems. Moreover, the penetration of amphiphilic particles through live cell plasma membranes and their ability to escape the endocytic pathway have been demonstrated.
机译:在这项工作中,我们证明了通过硫醇化PEG低聚物稳定的两亲CdTe纳米晶体的胶体合成进展,旨在促进颗粒的细胞吸收。高沸点,良好配位的溶剂(例如二甲基乙酰胺和二甲基甲酰胺)可加速纳米颗粒的生长,从而产生稳定的胶体,其胶体的最大光致发光波长可调节至540-640 nm,量子产率高达30%。巯基化的甲氧基聚乙二醇封端的CdTe纳米晶体显示穿过巨大的单层囊泡和巨大的质膜囊泡的脂质双层,而脂质双层构成了基本的无内吞作用的模型膜系统。而且,已经证明了两亲颗粒通过活细胞质膜的渗透及其逃逸内吞途径的能力。

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