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Biosynthesis of Srco3 nanostructures with honey as a green capping agent and reductant: photodynamic therapy

机译:蜂蜜作为绿色盖帽剂和还原剂生物合成Srco3纳米结构:光动力疗法

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Objective (s): SrCO3 nanoparticles could be used as new biomedical sources in magnetic resonance imaging as a promising noninvasive imaging modality for the preoperative staging of breast cancer and monitoring of tumor response to therapy. The present study aimed to synthesize SrCOsub3/sub nanostructures using microwave irradiation in the presence of honey as a green capping agent and reductant. Materials and Methods: The optical properties of SrCO3 nanostructures were investigated using ultraviolet-visible (UV-Vis) spectroscopy. Sr(NO3)2.6H2O and NaOH were applied as the starting reagents. Fructose (32.56-38.2%) and glucose (28.54-31.3%), which were the main carbohydrates found in honey, were not only involved in stabilization, but they also acted as the reducing agents in the production of SrCO3 nanostructures. The produced nanostructures were characterized using X-ray diffraction analysis, Fourier transform infrared spectroscopy, scanning electron microscopy, and transmission electron microscopy.Results: Method of synthesis and chemical reagents were observed to affect the structural parameters, crystallite size, product size, morphology, and antioxidant activity. Conclusion: According to the results, honey could be used as a green capping agent and reductant for the synthesis of SrCO3 nanostructures as a novel structure to co-deliver therapeutic agents using photo-thermal agents. Moreover, honey has significant potential for diagnostic and therapeutic purposes in the future.
机译:目标:SrCO3纳米颗粒可作为磁共振成像的一种新的生物医学来源,作为一种有前途的无创成像手段,可用于乳腺癌的术前分期和监测肿瘤对治疗的反应。本研究旨在在存在蜂蜜作为绿色封端剂和还原剂的情况下,利用微波辐射合成SrCO 3 纳米结构。材料和方法:使用紫外可见光谱仪研究了SrCO3纳米结构的光学性质。 Sr(NO3)2.6H2O和NaOH被用作起始试剂。蜂蜜中发现的主要碳水化合物果糖(32.56-38.2%)和葡萄糖(28.54-31.3%)不仅与稳定有关,而且在SrCO3纳米结构的生产中也起还原剂的作用。通过X射线衍射分析,傅立叶变换红外光谱,扫描电子显微镜和透射电子显微镜对所产生的纳米结构进行表征。结果:观察到合成方法和化学试剂会影响结构参数,微晶尺寸,产物尺寸,形态,和抗氧化活性。结论:根据结果,蜂蜜可以用作绿色封端剂和还原剂,用于合成SrCO3纳米结构,这是一种新型结构,可以使用光热剂共同递送治疗剂。而且,蜂蜜在未来具有诊断和治疗目的的巨大潜力。

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