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Synthesis and photonic property study of ZnO nanowires for a real time Photodynamic Therapy monitoring probe

机译:ZnO纳米线对实时光动力治疗监测探头的合成与光子性质研究

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In this paper, we present how the photonic properties of zinc oxide (ZnO) nanowires can be used to potentially advance the effectiveness of Photodynamic therapy (PDT), one of the most recent and promising approaches among cancer therapies. Presently, PDT employs laser light to activate intravenously or topically administered photosensitizers to give rise to highly reactive singlet oxygen which has a very short lifetime and is capable of biochemical damage to cell membranes of the tumor. A probe that can monitor in real time the penetration depth of the laser in the tumor and also the evolution of the singlet oxygen, which is critical for tumor eradication, is capable of improving the efficacy of PDT quite significantly. Such a probe, by providing real time feedback, can help us determine whether to increase or decrease the light exposure dose and also if further local administration of photosensitizers is required or not. ZnO nanowires are known to be photoconductive and recent research also demonstrated the temperature dependence of the photocurrent in the nanowires. They are also sensitive to blue and other near UV spectra which is same range of activation wavelengths of most photosensitizers, and hence making them a good candidate for a potential PDT monitoring probe. ZnO nanowires were fabricated on silicon substrates by vapor phase deposition using e-beam evaporated gold as a catalyst. Control of the dimensions of the nanowires could be achieved by varying the dimensions of the catalyst by means of e-beam evaporation process. Photoluminescence properties of ZnO nanowires were investigated at UV and near UV wavelengths. Further, ZnO is also known for its antimicrobial properties, thereby ruling out any possibility of bacterial infection because of the implanted probe. This study was done to compliment the existing expertise of our research group in the design and fabrication of several nanowire based probes and microsensors specifically for neuroelectronic and nanomedicine applications.
机译:在本文中,我们介绍了氧化锌(ZnO)纳米线的光子性能如何用于潜在地推进光动力治疗(PDT)的有效性,是癌症治疗中最近和有前途的方法之一。目前,PDT采用激光静脉内或局部施用的光敏剂激活,以产生具有非常短的寿命的高反应性单次氧,并且能够对肿瘤的细胞膜生化损伤。一种探针,可以在实时监测肿瘤中激光的渗透深度以及单向氧的进化,这对于肿瘤根除至关重要,能够显着提高PDT的功效。通过提供实时反馈,可以帮助我们确定是否需要增加或减少光暴露剂量,并且如果需要进一步局部局部局部给药。众所周知,ZnO纳米线是光电导的,最近的研究还证明了光电流在纳米线中的温度依赖性。它们对蓝色和其他接近UV光谱也敏感,这与大多数光敏剂的激活波长相同,因此使其成为潜在的PDT监测探针的良好候选者。通过使用E-束蒸发的金作为催化剂,通过气相沉积在硅基衬里上制造ZnO纳米线。通过通过电子束蒸发过程改变催化剂的尺寸,可以通过催化剂的尺寸来实现纳米线的尺寸。在UV和UV波长附近研究了ZnO纳米线的光致发光性质。此外,ZnO也已知其抗微生物性质,从而由于植入探针判断细菌感染的任何可能性。完成了这项研究,以赞美我们研究小组的现有专业知识在专门针对神经电子和纳米医生应用的基于纳米线的探针和微传感器的设计和制造中的设计和制造。

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