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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Red blood cell membrane-mediated fusion of hydrophobic quantum dots with living cell membranes for cell imaging
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Red blood cell membrane-mediated fusion of hydrophobic quantum dots with living cell membranes for cell imaging

机译:红细胞膜介导的疏水量子点与活细胞膜的融合,用于细胞成像

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摘要

Nanoparticle fusion with cell membranes is an interesting phenomenon that may have crucial implications for their biomedical applications. Here, we proposed a biomimetic and controlled route to fusion of hydrophobic quantum dots (QDs) with the cell membranes of living cells, while preserving their sensing and optical properties and thus their capability of membrane imaging and single-nanoparticle tracking. Red blood cell (RBC) membrane lipids were extracted to phase transfer hydrophobic QDs and the resulting RBC-encapsulated QDs (RBC-QDs) can be well fused within cell membranes as membrane markers. The fusion was validated through single-nanoparticle imaging and different movement behaviours were reliably discriminated. RBC-QDs possessed some novel features, such as controllable selective membrane staining, no invasion, and high photobleaching resistance, which allowed for long-term imaging, and single-nanoparticle tracking. This approach provides a versatile platform for controlled hydrophobic QD-based fluorescence investigation of living cell membranes.
机译:纳米粒子与细胞膜融合是一种有趣的现象,可能对其生物医学应用产生至关重要的影响。在这里,我们提出了一种仿生和受控的方法,以使疏水性量子点(QDs)与活细胞的细胞膜融合,同时保留它们的传感和光学特性,从而保留其膜成像和单纳米颗粒跟踪的能力。提取红细胞(RBC)膜脂质以进行相转移疏水QD,并且所得RBC封装的QD(RBC-QDs)可以很好地融合在细胞膜内作为膜标记。通过单纳米颗粒成像验证了融合,并可靠地区分了不同的运动行为。 RBC-QD具有一些新颖的功能,例如可控的选择性膜染色,无侵袭和高的耐光漂白性,可进行长期成像和单纳米颗粒跟踪。该方法为活细胞膜的基于疏水性QD的荧光研究提供了一个通用平台。

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