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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Monitoring the death of single BaF3 cells under plasmonic photothermal heating induced by ultrasmall gold nanorods
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Monitoring the death of single BaF3 cells under plasmonic photothermal heating induced by ultrasmall gold nanorods

机译:通过超大金纳米棒诱导的等离子体光热加热下单一BAF3细胞的死亡

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Gold nanorods are very suitable as energy converters for plasmonic photothermal therapy (PPTT) applications. These particles can be accumulated on cells by targeted or non-targeted delivery and subsequently internalized by the cells. Upon photoexcitation, the plasmonic particles create heat that can trigger cell-death mechanisms that are still not fully understood. Here, we used ultrasmall plasmonic gold nanorods, either non-targeted or targeted by functionalization with the aptamer AIR-3A. This aptamer specifically binds to the Interleukin-6 receptor expressed on the investigated BaF3 cell line. After photoexcitation of only individual cells, we monitored and investigated the evolution of cell death in real time on the single-cell level by tracking the temporal development of both the morphology and the absorbance of the cell, which changed due to the uptake of the dye trypan blue. We observed a swelling of the cell during the first few minutes, followed by a subsequent staining due to loss of membrane integrity, before cellular lysis took place. As the most notable difference between the use of targeted and non-targeted gold nanorods, the trypan blue staining period was considerably shorter when the targeted gold nanorods were used. Morphological changes of the cell after irradiation strongly suggest that necrosis is induced. The temporal delay between the start of the necrotic process and the beginning of cell staining indicates that the cell damage initially occurs in the inner cell compartments before the cell membrane is affected.
机译:金纳米棒非常适合作为等离子体光热疗法(PPTT)应用的能量转换器。这些颗粒可以通过靶向或非靶向递送在细胞上积聚并随后被细胞内化。在光呼吸后,等离子体粒子会产生热量,可以触发尚未完全理解的细胞死亡机制。在这里,我们使用超靶向或通过用Aptamer Air-3a官能化的非靶向或靶向的超焦质等离子体金纳米棒。该适体特异性结合在研究的BAF3细胞系上表达的白细胞介素-6受体。在只有单个细胞的运动后,通过跟踪细胞的形态和吸光度的时间发育,在单细胞水平上实时监测并研究了细胞死亡的演变,这是由于染料的摄取而改变台盼蓝。在前几分钟内观察到细胞的肿胀,然后由于膜完整性损失,在细胞裂解之前,随后染色。作为使用目标和非靶向金纳米棒的使用之间最值得注意的差异,当使用靶标金纳米棒时,台盼蓝染色周期显着较短。辐照后细胞的形态变化强烈表明诱导坏死。坏死过程的开始与细胞染色开始之间的时间延迟表明在细胞膜受到影响之前最初发生的细胞损伤。

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