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Ion-selective optical sensor for continuous on-line monitoring of dialysate sodium during dialysis

机译:离子选择性光学传感器,用于透析期间连续在线监测透析钠钠

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Patients with end stage renal disease are dependent on dialysis. In most outpatient centers, the dialysate is prepared with a fixed electrolyte concentration without taking into account the inter-individual differences of essential electrolytes (sodium, potassium and calcium). This one-size fits all approach can lead to acute and chronic cardiovascular complications in dialysis patients. On-line monitoring of these essential electrolytes is an important physiological step towards patient specific dialysate leading to individualized treatment. Currently, changes in electrolyte concentrations are indirectly measured by conductivity measurements, which are not ion-specific. In this paper, we present a novel optical sensor for on-line monitoring of sodium concentrations in dialysate. This sensor is ion-specific and can detect up to a single ion. The working principle is based on the selective fluorescence quenching of photoinduced electron transfer (PET) molecules. The PET molecules when complexed with sodium ions start fluorescing upon laser excitation. The emission intensity is directly correlated to the sodium concentration. To prove the working principle, a micro-optofluidic device has been fabricated in polydimethylsiloxane (PDMS) with integrated optical fibers for fluorescence light collection. The PET molecules are covalently grafted in the PDMS microchannel for continuous monitoring of the sodium dialysate concentrations. The experimental setup consists of a laser module (A=450nm) operating at 4.5mW, a syringe pump to precisely control the sample flow and a spectrometer for fluorescence collection. The performance of the sensor has been evaluated for sodium ions ranging from 0-50mM. A clear signal and good response time was observed.
机译:患有末期肾病的患者依赖于透析。在大多数门诊中心中,透析酸盐用固定电解质浓度制备,而不考虑基本电解质(钠,钾和钙)的间间差异。这种单尺寸适合所有方法可以导致透析患者的急性和慢性心血管并发症。对这些基本电解质的在线监测是患者患者特异性透析液导致个体化治疗的重要生理学步骤。目前,通过电导率测量间接测量电解质浓度的变化,这不是离子特异性的。本文介绍了一种新型光学传感器,用于在透析液中对钠浓度的在线监测。该传感器是离子特异性的,可以检测到单个离子。工作原理基于光致电子转移(PET)分子的选择性荧光猝灭。与钠离子复合时的PET分子在激光激发时开始荧光。发射强度与钠浓度直接相关。为了证明工作原理,在聚二甲基硅氧烷(PDMS)中制造了微醇化物品装置,其具有集成光纤,用于荧光光收集。 PET分子在PDMS微通道中共价接枝,以连续监测透析钠浓度。实验装置包括在4.5mW下操作的激光模块(A = 450nm),注射器泵精确控制样品流量和用于荧光收集的光谱仪。已经评估了传感器的性能,用于0-50mm的钠离子。观察到明确的信号和良好的响应时间。

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