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首页> 外文期刊>ELECTROPHORESIS >Microfluidic chip-capillary electrophoresis with dynamic multi-segment standard addition for rapidly identifying nephrolithiasis markers in urine
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Microfluidic chip-capillary electrophoresis with dynamic multi-segment standard addition for rapidly identifying nephrolithiasis markers in urine

机译:微流控芯片毛细管电泳加上动态多段标准品,可快速识别尿液中的肾结石标记

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摘要

A microchip-CE device was fabricated for bed-side monitoring of nephrolithiasis biomarkers in urine by incorporating on-chip continuous passive mixing and standard addition to reduce sample matrix interference, increase sample throughput and eliminate accessories for active mixing. Under optimized conditions with buffer containing 20 mM borate and 0.5 mM CTAB at pH 10.3, sample and standards injected electrokinetically at −350 V for 10 s for online mixing in a Y-merging flow microchannel prior to CE separation and UV detection at 210 nm, both inhibitors (citrate, CA) and promoters (oxalate, OA and uric acid, UA) for nephrolithiasis can be separated and determined in human urine in a single run completed within 10 min after a simple 50-fold sample dilution and filtering. Satisfactory working ranges from 0.13–40, 0.25–40 and 0.025–40 mM, LOD 2.6, 6.1 and 0.7 μM, repeatability (%RSD, n=5) for migration time 1.40, 1.43, 0.47 and peak area 4.46, 6.10, 1.98, respectively, for CA, OA and UA are obtained for urine samples. The use of on-chip standard addition is shown to improve repeatability of the migration time, assist the identification of nephrolithiasis markers from difficult samples with noisy baseline and enlarge the working range for nephrolithiasis marker determination. The device developed can be used for both routine and emergency monitoring to deliver results on demand for bedside monitoring and public health protection. It provides an early detection of nephrolithiasis to enable timely treatments, ease anxiety of parents for neonates consuming suspected contaminated food, and quick results for patients in a critical condition.
机译:通过结合芯片上连续被动混合和标准添加物以减少样品基质干扰,增加样品通量并消除用于主动混合的附件,制造了一种微芯片CE设备,用于床边监测尿中肾结石病生物标志物。在优化的条件下,在pH 10.3的缓冲液中加入20µmM硼酸盐和0.5µmM CTAB,在−350µV电动注入样品和标准品10µs,在Y合并流微通道中在线混合,然后进行CE分离和210µnm的UV检测,可以简单地将样品稀释50倍并过滤10分钟后,在一次人类尿液中分离和测定肾结石病的抑制剂(柠檬酸盐,CA)和启动子(草酸盐,OA和尿酸,UA)。令人满意的工作范围为0.13–40、0.25–40和0.025–40μmM,LOD 2.6、6.1和0.7μm,迁移时间1.40、1.43、0.47和峰面积4.46、6.10、1.98的重复性(%RSD,n = 5)对于尿液样本,分别获得了CA,OA和UA。已显示使用片上标准添加物可改善迁移时间的可重复性,有助于从基线嘈杂的困难样品中鉴定肾结石标记,并扩大了确定肾结石标记的工作范围。开发的设备可用于常规和紧急监测,以根据需要提供结果,以进行床边监测和公共卫生保护。它提供了对肾结石病的早期检测,可以及时进行治疗,减轻父母食用被怀疑受污染食物的新生儿的焦虑,并为处于危急状况的患者迅速取得结果。

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