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Cell-specific transmembrane injection of molecular cargo with gold nanoparticle-generated transient plasmonic nanobubbles

机译:金纳米粒子产生的瞬态等离子体纳米气泡对分子货物的细胞特异性跨膜注射

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摘要

Optimal cell therapies require efficient, selective and rapid delivery of molecular cargo into target cells without compromising their viability. Achieving these goals exᅠvivo in bulk heterogeneous multi-cell systems such as human grafts is impeded by low selectivity and speed of cargo delivery and by significant damage to target and non-target cells. We have developed a cell level approach for selective and guided transmembrane injection of extracellular cargo into specific target cells using transient plasmonic nanobubbles (PNB) as cell-specific nano-injectors. As a technical platform for this method we developed a laser flow cell processing system. The PNB injection method and flow system were tested in heterogeneous cell suspensions of target and non-target cells for delivery of Dextran-FITC dye into squamous cell carcinoma HN31 cells and transfection of human T-cells with a green fluorescent protein-encoding plasmid. In both models the method demonstrated single cell type selectivity, high efficacy of delivery (96% both for HN31 cells T-cells), speed of delivery (nanoseconds) and viability of treated target cells (96% for HN31 cells and 75% for T-cells). The PNB injection method may therefore be beneficial for real time processing of human grafts without removal of physiologically important cells.
机译:最佳的细胞疗法需要在不影响其生存能力的情况下将分子货物有效,选择性和快速地递送到靶细胞中。低选择性和低速度的货物运送以及对靶细胞和非靶细胞的重大损害,阻碍了在诸如人类移植物等大量异质多细胞系统中实现这些目标的努力。我们已经开发出一种细胞水平的方法,用于使用瞬时等离激元纳米气泡(PNB)作为细胞特异性的纳米注射器,选择性地和引导性地将细胞外货物跨膜注射到特定的靶细胞中。作为此方法的技术平台,我们开发了激光流动池处理系统。在靶细胞和非靶细胞的异质细胞悬液中测试了PNB注射方法和流动系统,以将葡聚糖-FITC染料递送至鳞状细胞癌HN31细胞,并用绿色荧光蛋白编码质粒转染人T细胞。在这两种模型中,该方法均表现出单细胞类型选择性,高递送效率(HN31细胞T细胞均为96%),递送速度(纳秒)和已治疗靶细胞的生存力(HN31细胞为96%,T为75% -细胞)。因此,PNB注射方法在不去除生理上重要的细胞的情况下,对于人类移植物的实时处理可能是有益的。

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