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Efficient Intracellular Delivery of Molecules with High Cell Viability Using Nanosecond-Pulsed Laser-Activated Carbon Nanoparticles

机译:使用纳秒脉冲激光激活的碳纳米颗粒具有高细胞活力的分子的高效细胞内递送

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摘要

Conventional physical and chemical methods that efficiently deliver molecules into cells are often associated with low cell viability. In this study, we evaluated the cellular effects of carbon nanoparticles believed to emit photoacoustic waves due to nanosecond-pulse laser activation to test the hypothesis that this method could achieve efficient intracellular delivery while maintaining high cell viability. Suspensions of DU145 human prostate carcinoma cells, carbon black (CB) nanoparticles, and calcein were exposed to 5–9 ns long laser pulses of near-infrared (1064 nm wavelength) light and then analyzed by flow cytometry for intracellular uptake of calcein and cell viability by propidium iodide staining. We found that intracellular uptake increased and in some cases saturated at high levels with only small losses in cell viability as a result of increasing laser fluence, laser exposure time, and as a unifying parameter, the total laser energy. Changing interpulse spacing between 0.1 and 10 s intervals showed no significant change in bioeffects, suggesting that the effects of each pulse were independent when spaced by at least 0.1 s intervals. Pretreatment of CB nanoparticles to intense laser exposure followed by mixing with cells also had no significant effect on uptake or viability. Similar uptake and viability were seen when CB nanoparticles were substituted with India ink, when DU145 cells were substituted with H9c2 rat cardiomyoblast cells, and when calcein was substituted with FITC-dextran. The best laser exposure conditions tested led to 88% of cells with intracellular uptake and close to 100% viability, indicating that nanosecond-pulse laser-activated carbon nanoparticles can achieve efficient intracellular delivery while maintaining high cell viability.
机译:有效地将分子递送到细胞中的常规物理和化学方法通常与细胞活力低有关。在这项研究中,我们评估了由于纳秒脉冲激光激活而发出光声波的碳纳米颗粒的细胞效应,以检验这种方法可以在保持高细胞活力的同时实现有效的细胞内递送的假设。将DU145人前列腺癌细胞,炭黑(CB)纳米颗粒和钙黄绿素的悬浮液暴露于5-9 ns长的近红外(1064 nm波长)光激光脉冲中,然后通过流式细胞术分析钙黄绿素和细胞的细胞内摄取碘化丙锭染色显示生存力。我们发现,由于激光通量,激光暴露时间的增加以及作为总参数的总激光能量,细胞内摄取增加并且在某些情况下在高水平下饱和,而细胞活力仅有很小的损失。在0.1到10 s的间隔内改变脉冲间隔不会显示出生物效应的显着变化,这表明当间隔至少0.1 s时,每个脉冲的效果是独立的。将CB纳米颗粒预处理为强激光照射,然后与细胞混合,对摄取或生存能力也没有显着影响。当用印度墨水代替CB纳米颗粒,当用H9c2大鼠心肌成纤维细胞替代DU145细胞,以及用FITC-葡聚糖替代钙黄绿素时,观察到相似的摄取和活力。测试的最佳激光暴露条件导致88%的细胞具有细胞内摄取并接近100%的活力,这表明纳秒脉冲激光激活的碳纳米颗粒可以在保持高细胞活力的同时实现有效的细胞内递送。

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