Department of Bioengineering, Northeastern University, 360 Huntington Ave., Boston, MA 02115, USA.
Integr Biol (Camb). 2011 Feb;3(2):142-8. doi: 10.1039/c0ib00020e. Epub 2010 Nov 19.
Sodium balance is vital to maintaining normal physiological function. Imbalances can occur in a variety of diseases, during certain surgical operations or during rigorous exercise. There is currently no method to continuously monitor sodium concentration in patients who may be susceptible to hyponatremia. Our approach was to design sodium specific fluorescent sensors capable of measuring physiological fluctuations in sodium concentration. The sensors are submicron plasticized polymer particles containing sodium recognition components that are coated with biocompatible poly(ethylene) glycol. Here, the sensors were brought up in saline and placed in the subcutaneous area of the skin of mice by simple injection. The fluorescence was monitored in real time using a whole animal imager to track changes in sodium concentrations. This technology could be used to monitor certain disease states or warn against dangerously low levels of sodium during exercise.
钠平衡对维持正常生理功能至关重要。在各种疾病、某些手术操作或剧烈运动期间,可能会发生平衡失调。目前,对于易发生低钠血症的患者,尚无连续监测钠浓度的方法。我们的方法是设计能够测量钠浓度生理波动的钠特异性荧光传感器。这些传感器是含有钠识别成分的亚微米塑料化聚合物颗粒,用生物相容性的聚(乙二醇)进行涂覆。在这里,将传感器置于盐水中,并通过简单注射将其放置在小鼠皮肤的皮下区域。使用小动物活体成像仪实时监测荧光,以跟踪钠浓度的变化。该技术可用于监测某些疾病状态,或在运动期间警告钠含量过低的危险。