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Photo-catalytic Killing of HeLa Cancer Cells Using Facile Synthesized Pure and Ag Loaded WO 3 Nanoparticles

机译:使用容纳合成纯和Ag的Hela癌细胞的光催化杀死HeLa癌细胞负载的WO 3纳米颗粒

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Chemotherapy, the most commonly used therapeutic method for cancer, has the inherent constraint of low bioavailability. A number of physical cancer therapeutic treatments like radiation, ultrasound, photo-acoustic/photo thermal, microwave therapies are based on locating the afflicted sites with the help of imaging, but the serious drawbacks of these treatment options are that they damage the neighboring normal tissues and/or induce undesired cancer metastasis. In addition, these methods of treatment are very expensive and not in the reach of a common man especially in the developing countries. Therefore, innovative, less invasive and cost effective treatment methods with the help of less toxic drugs have been sought for treating cancer. In this work, photo-catalytic method of killing cancer cells, using the nanostructured silver loaded tungsten oxide (Ag/WO3) as photo-catalysts, in conjunction with broadband UV radiation is presented. Ag/WO3with two different mass ratios of Ag and WO3 (1% Ag/WO3 and 3% Ag/WO3) were synthesized, characterized and these nanostructured materials served as photo-catalysts in the process of killing cancer cells by photo-catalytic method. The advantage of loading Ag in WO3 is quite evident from the observed increase in the photo-catalytic killing of the HeLa cells. This photo-catalytic enhancement was effectively caused by the development of Schottky junction between Ag in WO3, which led to a substantial inhibition of photo-generated charge recombination and also by the stimulation of surface plasmon resonance in silver nanoparticles, which led to the enhanced visible light absorption by the material.
机译:化疗,最常用的癌症治疗方法,具有低生物利用度的固有约束。许多物理癌症治疗治疗方法,如辐射,超声波,光声/光热,微波疗法是基于在成像的帮助下定位受折磨的部位,但这些治疗方案的严重缺点是它们损坏了相邻的正常组织和/或诱导不期望的癌症转移。此外,这些治疗方法非常昂贵,而不是在普通人的范围内,特别是在发展中国家。因此,已经寻求创新,较少的侵入性和具有成本效益的治疗方法,以治疗癌症免受毒药较小的药物。在这项工作中,呈现了使用纳米结构的银,使用纳米结构的银载氧化物(Ag / WO3)作为光催化剂的光催化方法,与宽带紫外线辐射相结合。合成,其特征和这些纳米结构材料在通过光催化方法杀死癌细胞的过程中,合成了两种不同的Ag和WO3(1%Ag / WO3和3%Ag / WO3)。在WO3中加载AG的优点是从观察到的Hela细胞的光催化杀伤增加的增加非常明显。该光催化增强由WO3中Ag之间的肖特基结的发展有效地引起,这导致了对光产生的电荷重组的显着抑制,并且还通过刺激银纳米颗粒中的表面等离子体共振,这导致了增强的可见光材料光吸收。

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