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Studies on the Exposure of Gadolinium Containing Nanoparticles with Monochromatic X-rays Drive Advances in Radiation Therapy

机译:含钆纳米粒子与单色X射线驱动促进辐射治疗进展的研究

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摘要

While conventional radiation therapy uses white X-rays that consist of a mixture of X-ray waves with various energy levels, a monochromatic X-ray (monoenergetic X-ray) has a single energy level. Irradiation of high-Z elements such as gold, silver or gadolinium with a synchrotron-generated monochromatic X-rays with the energy at or higher than their K-edge energy causes a photoelectric effect that includes release of the Auger electrons that induce DNA damage—leading to cell killing. Delivery of high-Z elements into cancer cells and tumor mass can be facilitated by the use of nanoparticles. Various types of nanoparticles containing high-Z elements have been developed. A recent addition to this growing list of nanoparticles is mesoporous silica-based nanoparticles (MSNs) containing gadolinium (Gd–MSN). The ability of Gd–MSN to inhibit tumor growth was demonstrated by evaluating effects of irradiating tumor spheroids with a precisely tuned monochromatic X-ray.
机译:虽然常规放射疗法使用由具有各种能级的X射线波的混合物组成的白X射线,但是单色X射线(单元酸X射线)具有单个能级。高Z元素如金,银或钆的高Z元素,其具有与其高于其k边缘能量的能量的同步的单色X射线导致光电效果,包括诱导DNA损伤的螺旋钻电子的释放 - 导致细胞杀戮。通过使用纳米颗粒可以促进将高Z元素递送到癌细胞和肿瘤质量中。已经开发出各种类型的含有高Z元素的纳米颗粒。该纳米颗粒的这种生长列表的最新外是含有钆(GD-MSN)的中孔基石基纳米粒子(MSN)。通过评价用精确调谐的单色X射线进行肿瘤球状体的效果来证明GD-MSN抑制肿瘤生长的能力。

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