首页> 美国卫生研究院文献>PLoS Clinical Trials >Elimination of Endogenous Toxin, Creatinine from Blood Plasma Depends on Albumin Conformation: Site Specific Uremic Toxicity & Impaired Drug Binding
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Elimination of Endogenous Toxin, Creatinine from Blood Plasma Depends on Albumin Conformation: Site Specific Uremic Toxicity & Impaired Drug Binding

机译:从血浆中消除内源性毒素,肌酐取决于白蛋白构象:特定部位的尿毒症和药物结合受损

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摘要

Uremic syndrome results from malfunctioning of various organ systems due to the retention of uremic toxins which, under normal conditions, would be excreted into the urine and/or metabolized by the kidneys. The aim of this study was to elucidate the mechanisms underlying the renal elimination of uremic toxin creatinine that accumulate in chronic renal failure. Quantitative investigation of the plausible correlations was performed by spectroscopy, calorimetry, molecular docking and accessibility of surface area. Alkalinization of normal plasma from pH 7.0 to 9.0 modifies the distribution of toxin in the body and therefore may affect both the accumulation and the rate of toxin elimination. The ligand loading of HSA with uremic toxin predicts several key side chain interactions of site I that presumably have the potential to impact the specificity and impaired drug binding. These findings provide useful information for elucidating the complicated mechanism of toxin disposition in renal disease state.
机译:尿毒症综合征是由于保留了尿毒症毒素而导致的各种器官系统功能异常,尿毒症毒素在正常情况下会排泄到尿液中和/或被肾脏代谢。这项研究的目的是阐明肾脏清除慢性肾功能衰竭中累积的尿毒症肌酐的潜在机制。通过光谱学,量热法,分子对接和表面积可及性对可能的相关性进行了定量研究。正常血浆从pH 7.0到9.0的碱化作用会改变体内毒素的分布,因此可能会影响毒素的积累和清除速度。 HSA与尿毒症毒素的配体负载可预测位点I的几种关键侧链相互作用,据推测它们可能会影响特异性并损害药物结合。这些发现为阐明肾脏疾病状态下毒素处置的复杂机制提供了有用的信息。

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