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荧光素标记的左聚糖作为肾小球滤过率的标志物。

Fluorescein-labeled sinistrin as marker of glomerular filtration rate.

作者信息

Pill Johannes, Kraenzlin Bettina, Jander Julia, Sattelkau Tim, Sadick Maliha, Kloetzer Hans-Martin, Deus Carsten, Kraemer Uwe, Gretz Norbert

机构信息

Roche Diagnostics GmbH, Sandhofer Str. 116, D-68305 Mannheim, Germany.

出版信息

Eur J Med Chem. 2005 Oct;40(10):1056-61. doi: 10.1016/j.ejmech.2005.03.020.

Abstract

There is an obvious and growing medical need for an accurate and easy to handle determination of glomerular filtration rate (GFR) for a broad spectrum of indications. Newly synthesized fluorescein-isothiocyanate (FITC)-sinistrin (FS) with various degrees of labeling was selected by its physicochemical properties and good tolerability out of a number of dye-labeled compounds intended for use as GFR markers for characterization of its pharmacological profile. With respect to solubility FS is more convenient in handling compared to FITC-inulin (FI). Up to 100 mg ml(-1) of FS can be dissolved in aqueous solvents at room temperature, whereas FI can only be solubilized after warming up to 55 degrees C. This reveals a considerable advantage of FS over FI in preparation of galenical formulations for intended i.v. application. A fluorometric method was established to determine FS concentration in blood serum with a comparable accuracy to the established enzymatic method for polyfructosanes. Similar concentration time curves in blood serum of FS measured fluorometrically and enzymatically suggest no relevant change of pharmacokinetic behavior by dye labeling. This notion is supported by the rapid renal and missing of biliary excretion. On the basis of these results, FS is superior in handling to the available GFR markers and makes it highly interesting as a novel diagnostic drug.

摘要

对于广泛的适应症而言,准确且易于操作地测定肾小球滤过率(GFR)存在明显且不断增长的医学需求。从多种用作GFR标志物以表征其药理学特征的染料标记化合物中,根据其物理化学性质和良好的耐受性,选择了新合成的具有不同标记程度的异硫氰酸荧光素(FITC)- 左卡尼汀(FS)。在溶解性方面,与FITC-菊粉(FI)相比,FS在处理上更方便。在室温下,高达100 mg/ml的FS可溶解于水性溶剂中,而FI仅在加热至55℃后才能溶解。这表明在制备用于静脉注射的药剂配方时,FS相对于FI具有相当大的优势。建立了一种荧光测定法来测定血清中的FS浓度,其准确性与已建立的用于多聚果糖的酶法相当。通过荧光法和酶法测定的FS血清浓度 - 时间曲线相似,表明染料标记不会使药代动力学行为发生相关变化。快速的肾脏排泄和无胆汁排泄支持了这一观点。基于这些结果,FS在处理方面优于现有的GFR标志物,使其作为一种新型诊断药物极具吸引力。

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