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Biosensor system for continuous glucose monitoring in fish

机译:用于鱼类连续葡萄糖监测的生物传感器系统

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摘要

A biosensor system was developed for continuous estimation of blood glucose in fish.Because it is difficult to measure blood components in real-time due to decreased sensor output resulting from blood coagulation and coalescing blood proteins at the sensor placement site,we used the eyeball scleral interstitial fluid(EISF)as the site of sensor implantation.Evaluation of the relationship between EISF and blood glucose concentrations revealed that the blood glucose concentration correlated closely with the EISF glucose concentration(y = 2.2996 + 0.9438X,R = 0.960,n = 112).To take advantage of the close correlation between blood and EISF glucose,we prepared a needle-type enzyme sensor for implantation in the fish sclera using a flexible wire electrode.The sensor provided a rapid response,good linearity,and reproducibility.Continuous glucose monitoring could be carried out by implanting this needle-type glucose sensor onto the eye.The findings indicated that the glucose concentration increased with sensor output current over time,and that changes in the blood glucose were continuously reflected in the EISF.The glucose concentration was estimated based on the one-point or two-point calibration methods.The two-point calibration method yielded the most accurate glucose monitoring(blood glucose range of 70-420 mg dL~(-1))over 160 min.Sensor-estimated glucose and whole blood glucose values were highly correlated(y = 0.4401 +0.8656x,R = 0.958).
机译:开发了用于连续估算鱼中血糖的生物传感器系统。由于由于血液凝结和在传感器放置部位凝聚蛋白而导致传感器输出减少,因此难以实时测量血液成分,因此我们使用眼球巩膜EISF与血糖浓度之间的关系评估表明,血糖浓度与EISF血糖浓度密切相关(y = 2.2996 + 0.9438X,R = 0.960,n = 112 )。为了利用血液和EISF葡萄糖之间的密切关系,我们准备了一种使用柔性线电极的针型酶传感器,用于将其植入鱼的巩膜中,该传感器提供了快速响应,良好的线性和可重复性。可以通过将这种针型葡萄糖传感器植入眼睛来进行监测。结果表明,葡萄糖浓度增加根据传感器输出电流随时间的变化,血糖变化会持续反映在EISF中。基于一点或两点校准方法估算葡萄糖浓度。两点校准方法产生的精度最高在160分钟内进行血糖监测(血糖范围为70-420 mg dL〜(-1))。传感器估计的血糖与全血糖值高度相关(y = 0.4401 + 0.8656x,R = 0.958)。

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