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Intracellular localization of nanoparticle dimers by chirality reversal

机译:通过手性反转纳米颗粒二聚体的细胞内定位

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摘要

The intra- and extracellular positioning of plasmonic nanoparticles (NPs) can dramatically alter their curative/diagnostic abilities and medical outcomes. However, the inability of common spectroscopic identifiers to register the events?of transmembrane transport denies their intracellular vs. extracellular localization even for cell cultures. Here we show that the chiroptical activity of DNA-bridged NP dimers allows one to follow the process of internalization of the particles by the mammalian cells and to distinguish their extra- vs intra-cellular localizations by real-time spectroscopy in ensemble. Circular dichroism peaks in the visible range change from negative to positive during transmembrane transport. The chirality reversal is associated with a spontaneous twisting motion around the DNA bridge caused by the large change in electrostatic repulsion between NPs when the dimers move from interstitial fluid to cytosol. This finding opens the door for spectroscopic targeting of plasmonic nanodrugs?and quantitative assessment of nanoscale interactions.?The efficacy of dichroic targeting of chiral nanostructures?for biomedical applications is exemplified here as photodynamic therapy?of malignancies. The efficacy of?cervical cancer cell elimination was drastically increased when circular polarization of incident photons matched to the preferential absorption of dimers localized inside the cancer cells, which is associated with the increased generation of reactive oxygen species and their preferential intracellular localization.
机译:等离子体纳米颗粒(NPs)在细胞内和细胞外的定位可以极大地改变其治疗/诊断能力和医疗效果。然而,即使对于细胞培养,通用的光谱识别器也无法记录跨膜转运事件,从而否认了它们在细胞内与细胞外的定位。在这里,我们显示DNA桥接的NP二聚体的整脊活性使人们能够追踪哺乳动物细胞对颗粒的内在化过程,并通过实时光谱学来区分它们在细胞外和细胞内的定位。在跨膜运输过程中,可见光范围内的圆二色性峰从负变为正。当二聚体从间质液移至细胞质时,NP之间的静电排斥力发生较大变化,导致手性逆转与DNA桥周围的自发扭曲运动有关。这一发现为等离激元纳米药物的光谱靶向和纳米级相互作用的定量评估打开了大门。手性纳米结构的二向色性靶向在生物医学上的功效在此被示例为恶性肿瘤的光动力疗法。当入射光子的圆极化与定位在癌细胞内的二聚体的优先吸收相匹配时,宫颈癌细胞消除的功效急剧增加,这与活性氧的产生及其优先的细胞内定位有关。

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