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New Nano-Sized Sensing Drug and Its Clinical Application

机译:新型纳米大小传感药及其临床应用

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Nanomedicine is the application of nanotechnology to the diagnosis and treatment of human disease. This discipline has the potential to change medical science dramatically, for example as demonstrated by an innovation in cancer imaging that uses novel diagnostic agents synthesized from nanoparticles. Some research on cluster-based materials for future medical applications is described in this paper. The design of a multifunctional photosensitive particle that is stable and highly efficient will be key to this novel medical application and especially in photodynamic treatment (PDT). Three consecutive processes occur during the PDT treatment: initial consumption of oxygen through the photodynamic process; pathophysiologic alterations in regional blood supply (hypoxia) and total vascular occlusion (ischemia). The effect of a new drug TiO_2/TSPP was studied work. Cancer cells were implanted under the skin of mice to cause tumors. When the size of the tumor grew to about 0.5 cm, it was injected a solution containing fine particles of TiCVTSPP. After 2 or 3 days, the skin was cut to expose the tumor and irradiated. The treatment clearly inhibited the tumor growth. A further marked antineoplastic effect was obtained.
机译:纳米医生是纳米技术在人类疾病诊断和治疗中的应用。这一学科有可能显着改变医学科学,例如通过使用从纳米颗粒合成的新型诊断剂的癌症成像进行了表现。本文描述了对未来医学应用的基于群集材料的一些研究。稳定且高效的多功能光敏粒子的设计将是这种新型医学应用的关键,特别是在光动力学处理(PDT)中。在PDT处理期间发生三个连续过程:通过光动力过程初始消耗氧气;区域血液供应(缺氧)和总血管闭塞(缺血)的病理生理改变。研究了新药物TiO_2 / TSPP的作用。植入小鼠的皮肤下植入癌细胞以引起肿瘤。当肿瘤的尺寸增长至约0.5cm时,将其注射含有TiCVTSPP的细颗粒的溶液。 2或3天后,切割皮肤以暴露肿瘤并辐照。治疗清楚地抑制了肿瘤生长。获得了进一步标记的抗肿瘤效果。

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