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Tumor detection strategy using ZnO light-emitting nanoprobes

机译:ZnO发光纳米探针的肿瘤检测策略

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摘要

Traditional methods of detecting cancer cells, such as fluorescence, have their limits and can hardly be used for identification during tumor resection. Here we report an alternative tumor detection technology using ZnO nanorods bonded to antibodies as cancer cell probes. Our experiment shows that antibodies toward epidermal growth factor receptor (EGFR) can be connected to ZnO nanorods and to EGFR receptors of SCC (squamous cell carcinoma). The cancer cell can be recognized by the naked eye or an optical microscope with the help of purple light emission from ZnO/EGFR antibody probes. On the other hand, for cells with less EGFR expression, in our case Hs68, no purple light was observed as the probes were washed off. From the photoluminescent spectra, the peak intensity ratio between the purple light (from ZnO at the wavelength 377nm) and the green band (from the autofluorescence of cells) is much higher with the presence in SCC, as compared with Hs68. The ZnO/EGFR antibody probes have the potential to be applied to surgery for real-time tumor cell identification. The cancer cells will be excised with the help of purple light emission.
机译:检测癌细胞的传统方法(例如荧光)具有局限性,几乎不能用于肿瘤切除过程中的鉴定。在这里,我们报告了使用与抗体结合的ZnO纳米棒作为癌细胞探针的另一种肿瘤检测技术。我们的实验表明,针对表皮生长因子受体(EGFR)的抗体可以连接至ZnO纳米棒和SCC(鳞状细胞癌)的EGFR受体。借助ZnO / EGFR抗体探针发出的紫色光,可以通过肉眼或光学显微镜识别癌细胞。另一方面,对于EGFR表达较少的细胞,在我们的情况下为Hs68,清洗探针后未观察到紫光。根据光致发光光谱,与Hs68相比,在SCC中存在时,紫色光(来自377nm波长的ZnO)和绿色带(来自细胞的自发荧光)之间的峰值强度比要高得多。 ZnO / EGFR抗体探针有潜力应用于实时肿瘤细胞鉴定的手术中。癌细胞将在紫色光的帮助下被切除。

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