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Cancer cell uptake behavior of Au nanoring and its localized surface plasmon resonance induced cell inactivation

机译:金纳米环的癌细胞摄取行为及其局部表面等离振子共振诱导的细胞失活

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Au nanorings (NRIs), which have the localized surface plasmon resonance (LSPR) wavelength around 1058 nm, either with or without linked antibodies, are applied to SAS oral cancer cells for cell inactivation through the LSPR-induced photothermal effect when they are illuminated by a laser of 1065 nm in wavelength. Different incubation times of cells with Au NRIs are considered for observing the variations of cell uptake efficiency of Au NRI and the threshold laser intensity for cell inactivation. In each case of incubation time, the cell sample is washed for evaluating the total Au NRI number per cell adsorbed and internalized by the cells based on inductively coupled plasma mass spectrometry measurement. Also, the Au NRIs remaining on cell membrane are etched with KI/I-2 solution to evaluate the internalized Au NRI number per cell. The threshold laser intensities for cell inactivation before washout, after washout, and after KI/I-2 etching are calibrated from the circular area sizes of inactivated cells around the illuminated laser spot center with various laser power levels. By using Au NRIs with antibodies, the internalized Au NRI number per cell increases monotonically with incubation time up to 24 h. However, the number of Au NRI remaining on cell membrane reaches a maximum at 12 h in incubation time. The cell uptake behavior of an Au NRI without antibodies is similar to that with antibodies except that the uptake NRI number is significantly smaller and the incubation time for the maximum NRI number remaining on cell membrane is delayed to 20 h. By comparing the threshold laser intensities before and after KI/I-2 etching, it is found that the Au NRIs remaining on cell membrane cause more effective cancer cell inactivation, when compared with the internalized Au NRIs.
机译:具有或不具有连接抗体的具有约1058 nm的局部表面等离振子共振(LSPR)波长的金纳米环(NRI)应用于SAS口腔癌细胞以通过LSPR诱导的光热效应使细胞灭活,当它们被照射时波长为1065 nm的激光。为了观察Au NRI的细胞摄取效率和细胞失活的阈值激光强度的变化,考虑了具有Au NRI的细胞不同的孵育时间。在每种孵育时间中,洗涤细胞样品以基于感应耦合等离子体质谱法测量来评估每个被细胞吸收和内化的细胞的总Au NRI数。同样,用KI / I-2溶液蚀刻残留在细胞膜上的Au NRI,以评估每个细胞的内在化Au NRI数。根据在不同激光功率水平下,被照亮的激光光斑中心周围的灭活细胞的圆形面积大小,可以校准洗出之前,洗出之后和KI / I-2蚀刻后细胞失活的阈值激光强度。通过将Au NRI与抗体一起使用,随着长达24小时的孵育时间,每个细胞的内在化Au NRI数量会单调增加。然而,在孵育时间的12小时内,残留在细胞膜上的Au NRI数量达到最大值。不具有抗体的Au NRI的细胞摄取行为与具有抗体的相似,不同之处在于摄取的NRI数目要小得多,并且最大NRI数目保留在细胞膜上的孵育时间会延迟到20小时。通过比较KI / I-2蚀刻前后的阈值激光强度,发现与内在化的Au NRI相比,残留在细胞膜上的Au NRI引起更有效的癌细胞失活。

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