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Is Fluorescence Valid to Monitor Removal of Protein Bound Uremic Solutes in Dialysis?

机译:荧光法是否有效监测透析中蛋白质结合的尿液溶质的去除?

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摘要

The aim of this study was to evaluate the contribution and removal dynamics of the main fluorophores during dialysis by analyzing the spent dialysate samples to prove the hypothesis whether the fluorescence of spent dialysate can be utilized for monitoring removal of any of the protein bound uremic solute. A high performance liquid chromatography system was used to separate and quantify fluorophoric solutes in the spent dialysate sampled at the start and the end of 99 dialysis sessions, including 57 hemodialysis and 42 hemodiafiltration treatments. Fluorescence was acquired at excitation 280 nm and emission 360 nm. The main fluorophores found in samples were identified as indole derivatives: tryptophan, indoxyl glucuronide, indoxyl sulfate, 5-hydroxy-indoleacetic acid, indoleacetyl glutamine, and indoleacetic acid. The highest contribution (35 +/- 11%) was found to arise from indoxyl sulfate. Strong correlation between contribution values at the start and end of dialysis (R-2 = 0.90) indicated to the stable contribution during the course of the dialysis. The reduction ratio of indoxyl sulfate was very close to the decrease of the total fluorescence signal of the spent dialysate (49 +/- 14% vs 51 +/- 13% respectively, P = 0.30, N = 99) and there was strong correlation between these reduction ratio values (R-2 = 0.86). On-line fluorescence measurements were carried out to illustrate the technological possibility for real-time dialysis fluorescence monitoring reflecting the removal of the main fluorophores from blood into spent dialysate. In summary, since a predominant part of the fluorescence signal at excitation 280 nm and emission 360 nm in the spent dialysate originates from protein bound derivatives of indoles, metabolites of tryptophan and indole, the fluorescence signal at this wavelength region has high potential to be utilized for monitoring the removal of slowly dialyzed uremic toxin indoxyl sulfate.
机译:这项研究的目的是通过分析用过的透析液样品来评估透析过程中主要荧光团的贡献和去除动力学,以证明是否可以将用过的透析液的荧光用于监测蛋白质结合的尿毒症溶质的去除的假说。在99个透析阶段的开始和结束时,使用了高效液相色谱系统来分离和量化废透析液中的荧光溶质,包括57个血液透析和42个血液透析滤过治疗。在激发280nm和发射360nm处获得荧光。样品中发现的主要荧光团被确定为吲哚衍生物:色氨酸,吲哚葡糖醛酸苷,硫酸吲哚酚,5-羟基吲哚乙酸,吲哚乙酰基谷氨酰胺和吲哚乙酸。发现最高的贡献(35 +/- 11%)来自硫酸吲哚酚。透析开始和结束时的贡献值之间的强相关性(R-2 = 0.90)表明透析过程中的稳定贡献。硫酸吲哚酚的还原率与用过的透析液的总荧光信号的降低非常接近(分别为49 +/- 14%和51 +/- 13%,P = 0.30,N = 99),并且具有很强的相关性在这些减速比值之间(R-2 = 0.86)。进行了在线荧光测量,以说明实时透析荧光监测的技术可能性,反映了从血液中去除主要荧光团到用过的透析液中的情况。总之,由于用过的透析液在激发280 nm和发射360 nm处的荧光信号的主要部分来自于吲哚的蛋白质结合衍生物,色氨酸和吲哚的代谢产物,因此该波长区域的荧光信号具有很高的利用潜力。用于监测缓慢透析的尿毒症毒素吲哚酚硫酸盐的去除。

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