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In situ real-time investigation of cancer cell photothermolysis mediated by excited gold nanorod surface plasmons.

机译:激发金纳米棒表面等离子体激元介导的癌细胞光热解的原位实时研究。

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The photothermolysis of living EMT-6 breast tumor cells triggered by gold nanorods (AuNRs) with two-photon irradiation was conducted in situ and under real-time observation. The morphology and plasma membrane permeability of the cells were key indicators to the phenomena. AuNRs with an aspect ratio of 3.92, and a longitudinal absorption peak at 800 nm were synthesized with a seed-mediated method. The nanorods surfaces were further modified with polystyrenesulfonate (PSS) for biocompatibility. The prepared nanorods displayed excellent two-photon photoluminescence imaging. In situ real-time results revealed cavities internal to the cells were created from thermal explosions triggered by AuNRs localized photothermal effect. The cavitation dynamic is energy dependent and responsible for the perforation or sudden rupture of the plasma membrane. The energy threshold for cell therapy depended significantly on the number of nanorods taken up per cell. For an ingested AuNR cluster quantity N approximately 10-30 per cell, it is found that energy fluences E larger-than 93 mJ/cm(2) led to effective cell destruction in the crumbled form within a very short period. As for a lower energy level E = 18 mJ/cm(2) with N approximately 60-100, a non-instant, but progressive cell deterioration, is observed.
机译:金纳米棒(AuNRs)触发的双光子照射对活的EMT-6乳腺肿瘤细胞进行了光热解并进行了双光子辐照。细胞的形态和质膜通透性是该现象的关键指标。用种子介导的方法合成了长径比为3.92且在800 nm处有一个纵向吸收峰的AuNRs。纳米棒表面进一步用聚苯乙烯磺酸盐(PSS)改性,以实现生物相容性。制备的纳米棒显示出优异的两光子光致发光成像。原位实时结果显示,细胞内部的腔是由AuNRs局部光热效应触发的热爆炸产生的。空化动力学取决于能量,并导致质膜的穿孔或突然破裂。细胞疗法的能量阈值很大程度上取决于每个细胞吸收的纳米棒的数量。对于摄入的每个单元大约10-30的AuNR簇数量N,发现能量通量E大于93 mJ / cm(2)会在很短的时间内以破碎的形式有效破坏细胞。至于较低的能级E = 18 mJ / cm(2),N大约为60-100,则观察到了非瞬时但逐渐进行的电池劣化。

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