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Application of atomic absorption spectroscopy method for platinum content determination to study functionalization of bone substitute materials with anticancer drug

机译:原子吸收光谱法在铂含量测定中研究抗癌药物骨替代材料官能化的应用

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Methods of quantitative determination of the platinum content in high-salt solutions have been developed using atomic absorption spectroscopy (AAS). Definitions were carried out for small volume bioassays during the research of functionalization of calcium phosphate substitute materials with anticancer drug, cisplatin. The conditions for the determination of Pt in the flame were optimized. The effects of the cisplatin matrix solutions, salt components and concentrations on the Pt absorption value were found out. The relevance of application of the flame version of the AAS method was shown in order to determine the platinum content in high-salt solutions, over 200 g/l, without matrix separation in a wide range of Pt concentrations from 0.1 to 50 μg/ml. This issue was targeted through the estimation of efficiency of Ptcontaining drug incorporation and its dynamics release as an application method in the development of drug delivery systems for bone tumors treatment.
机译:使用原子吸收光谱(AAS)开发了高盐溶液中铂含量的定量测定方法。 在磷酸钙替代材料与抗癌药物,顺铂研究期间对小体积生物测量进行的定义进行了定义。 优化了火焰中测定Pt的条件。 发现了顺铂基质溶液,盐组分和浓度对Pt吸收值的影响。 显示了AAS方法的施加火焰形式的应用,以确定高盐溶液中的铂含量,超过200g / L,在宽范围的Pt浓度下,基质分离为0.1至50μg/ ml 。 通过估算PTONTINATION药物掺入效率及其动力学释放作为骨肿瘤治疗的药物递送系统的应用方法来实现这个问题。

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