首页> 外文期刊>Analytical chemistry >Serum Creatinine Detection by a Conducting-Polymer-Based Electrochemical Sensor To Identify Allograft Dysfunction
【24h】

Serum Creatinine Detection by a Conducting-Polymer-Based Electrochemical Sensor To Identify Allograft Dysfunction

机译:通过基于导电聚合物的电化学传感器检测肌酐,以识别同种异体移植功能障碍

获取原文
获取原文并翻译 | 示例
       

摘要

Kidney transplant recipients who have abnormally high creatinine levels in their blood often have allograft dysfunction secondary to rejection. Creatinine has become the preferred marker for renal dysfunction and is readily available in hospital clinical settings. We developed a rapid and accurate polymer-based electrochemical point-of-care (POC) assay for creatinine detection from whole blood to identify allograft dysfunction. The creatinine concentrations of 19 blood samples from transplant recipients were measured directly from clinical serum samples by the conducting polymer-based electrochemical (EC) sensor arrays. These measurements were compared to the traditional clinical laboratory assay. The time required for detection was <5 min from sample loading. Sensitivity of the detection was found to be 0.46 mg/dL of creatinine with only 40 μL sample in the creatinine concentration range of 0 mg/dL to 11.33 mg/dL. Signal levels that were detected electrochemically correlated closely with the creatinine blood concentration detected by the UCLA Ronald Reagan Medical Center traditional clinical laboratory assay (correlation coefficient = 0.94). This work is encouraging for the development of a rapid and accurate POC device for measuring creatinine levels in whole blood.
机译:血液中肌酐水平异常高的肾脏移植受者通常会继发排斥反应而出现同种异体移植功能障碍。肌酐已成为肾功能不全的首选标志物,可在医院临床环境中轻易获得。我们开发了一种快速,准确的基于聚合物的电化学即时护理(POC)分析方法,用于从全血中检测肌酐,以识别同种异体移植功能障碍。通过基于导电聚合物的电化学(EC)传感器阵列直接从临床血清样本中测量了19个移植受者血液样本中的肌酐浓度。将这些测量结果与传统的临床实验室测定法进行了比较。从上样到检测所需的时间少于5分钟。发现检测的灵敏度为0.46 mg / dL的肌酐,只有40μL样品在0 mg / dL至11.33 mg / dL的肌酐浓度范围内。电化学检测到的信号水平与UCLA罗纳德·里根医学中心传统临床实验室检测法检测到的肌酐血药浓度密切相关(相关系数= 0.94)。这项工作对于开发一种用于测量全血肌酐水平的快速,准确的POC装置令人鼓舞。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号