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Development methods labeled technetium-99m magnetically nanocolloids for medical diagnosis

机译:标记为tech 99m磁性纳米胶体的医学诊断开发方法

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摘要

The opportunity of drawing of a radioactive label 99mTc on a surface nanoparticles of iron Fe2C, covered by a carbon environment, and also particles Fe2C (IDA), modified udarenediazoniumtosylates is investigated. It is shown, that on not modified particles about 11,2 % 99mɌɫ from its entered quantity are adsorbed. Thus the size of atomic adsorption uddoes not exceed 0,736·10-9 g-ɚt/g 99mɌɫ on 1 g Fe2C. On the modified particles Fe@C (IDA) physical adsorption is not observed. At their chemical interaction with 99mTc at udpresence of reducing agent of tin (II) output labeled a product increases more than in 1,5 times and makes 21,3 % from the general entered activity radionuclide. For achievement udof higher output carrying out of the researches connected with selection of optimum concentration and conditions of preparation of a reducer or selection of other more effective reducer is necessary.When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/20657
机译:研究了在碳环境覆盖的铁Fe2C的表面纳米颗粒上以及在改性的碳酸钠铀钛酸盐颗粒Fe2C(IDA)上绘制放射性标记99mTc的机会。结果表明,在未改性的颗粒上,吸附了其输入量的约11.2%的99m 3。因此,在1 g Fe2C上,原子吸附的大小不超过0,736·10-9g-ɚt/ g99mɌɫ。在改性的颗粒上,Fe @ C(IDA)没有观察到物理吸附。在不存在锡(II)还原剂的情况下,它们与99mTc发生化学相互作用时,所标记的产物增加了1.5倍以上,并且比一般输入的放射性核素高出21.3%。为了获得更高的输出效果,需要进行与选择最佳浓度和制备还原剂的条件或选择其他更有效的还原剂有关的研究,以提高产量。当引用本文时,请使用以下链接http:// essuir .sumdu.edu.ua / handle / 123456789/20657

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