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铊与六氰合铁酸铁(普鲁士蓝)结合的定量测定

Quantitative determination of thallium binding to ferric hexacyanoferrate: Prussian blue.

作者信息

Yang Yongsheng, Faustino Patrick J, Progar Joseph J, Brownell Charles R, Sadrieh Nakissa, May Joan C, Leutzinger Eldon, Place David A, Duffy Eric P, Yu Lawrence X, Khan Mansoor A, Lyon Robbe C

机构信息

Food and Drug Administration, Center for Drug Evaluation and Research, Office of Testing and Research, Division of Product Quality Research, Silver Spring, MD 20993, USA.

出版信息

Int J Pharm. 2008 Apr 2;353(1-2):187-94. doi: 10.1016/j.ijpharm.2007.11.031. Epub 2007 Nov 23.

Abstract

Ferric hexacyanoferrate, (Fe(4)(III)Fe(II)(CN)(6)), also known as insoluble Prussian blue (PB), is the active pharmaceutical ingredient (API) of Radiogardase which is the first approved drug product (DP) for treatment of thallium and radiocesium poisoning. The aim of this study is (1) to determine the in vitro thallium binding capacity and binding rates of insoluble PB; and (2) to evaluate the effect of physiological pH conditions, PB particle size and storage conditions on the binding to PB. Experimental pH levels from 1.0 to 7.5 were used to cover the range of pH levels that PB may encounter when traveling through the gastrointestinal (GI) tract in humans. Measurements of thallium binding were made between 1 and 24h, to cover gastric and intestinal tract residence time. PB was found to have a binding capacity of approximately 1400 mg/g at pH 7.5. When the pH decreased, the binding decreased as well. The results indicated that the hydration state of PB influences the thallium binding process. It was also found that there exits a direct correlation between the moisture loss in PB and the thallium binding rate constant. The PB with 17 mol of water had a binding rate constant of 0.52, which was reduced to 0.32 when PB was dehydrated to 2.5 mol of water. Significant differences were observed in both binding capacity and binding rate constant among PB fractions with different particle size ranges. PB fraction with particle size of 220-1000 microm had a binding rate constant of 0.43, which increased to 0.64 when the particle size was reduced to 32-90 microm. Batch-to-batch variation in thallium binding was also observed among the APIs and the DPs and this was related to particle size and hydration state. These findings can be utilized to evaluate and predict drug product quality under certain manufacturing and dry storage conditions.

摘要

铁氰化铁(Fe(4)(III)Fe(II)(CN)(6)),也称为不溶性普鲁士蓝(PB),是Radiogardase的活性药物成分(API),Radiogardase是首个获批用于治疗铊和放射性铯中毒的药品(DP)。本研究的目的是:(1)测定不溶性PB的体外铊结合能力和结合率;(2)评估生理pH条件、PB粒径和储存条件对与PB结合的影响。使用1.0至7.5的实验pH水平来涵盖PB在人体胃肠道中移动时可能遇到的pH范围。在1至24小时之间进行铊结合测量,以涵盖胃和肠道的停留时间。发现PB在pH 7.5时的结合能力约为1400 mg/g。当pH降低时,结合也减少。结果表明,PB的水合状态影响铊的结合过程。还发现PB中的水分损失与铊结合速率常数之间存在直接相关性。含有17摩尔水的PB的结合速率常数为0.52,当PB脱水至2.5摩尔水时,该常数降至0.32。在不同粒径范围的PB级分之间,结合能力和结合速率常数均观察到显著差异。粒径为220 - 1000微米的PB级分的结合速率常数为0.43,当粒径减小至32 - 90微米时,该常数增加至0.64。在API和DP之间还观察到铊结合的批次间差异,这与粒径和水合状态有关。这些发现可用于评估和预测在特定制造和干燥储存条件下的药品质量。

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