Ritter Sarah C, Milanick Mark A, Meissner Kenith E
Biomed Opt Express. 2011 Jul 1;2(7):2012-21. doi: 10.1364/BOE.2.002012. Epub 2011 Jun 22.
A need exists for a long-term, minimally-invasive system to monitor blood analytes. For certain analytes, such as glucose in the case of diabetics, a continuous system would help reduce complications. Current methods suffer significant drawbacks, such as low patient compliance for the finger stick test or short lifetime (i.e., 3-7 days) and required calibrations for continuous glucose monitors. Red blood cells (RBCs) are potential biocompatible carriers of sensing assays for long-term monitoring. We demonstrate that RBCs can be loaded with an analyte-sensitive fluorescent dye. In the current study, FITC, a pH-sensitive fluorescent dye, is encapsulated within resealed red cell ghosts. Intracellular FITC reports on extracellular pH: fluorescence intensity increases as extracellular pH increases because the RBC rapidly equilibrates to the pH of the external environment through the chloride-bicarbonate exchanger. The resealed ghost sensors exhibit an excellent ability to reversibly track pH over the physiological pH range with a resolution down to 0.014 pH unit. Dye loading efficiency varies from 30% to 80%. Although complete loading is ideal, it is not necessary, as the fluorescence signal is an integration of all resealed ghosts within the excitation volume. The resealed ghosts could serve as a long-term (>1 to 2 months), continuous, circulating biosensor for the management of diseases, such as diabetes.
需要一种长期的、微创的系统来监测血液分析物。对于某些分析物,如糖尿病患者的葡萄糖,连续监测系统将有助于减少并发症。目前的方法存在显著缺点,如手指采血检测的患者依从性低,或连续血糖监测仪的使用寿命短(即3 - 7天)且需要校准。红细胞(RBC)是用于长期监测的传感测定的潜在生物相容性载体。我们证明红细胞可以装载对分析物敏感的荧光染料。在当前研究中,一种对pH敏感的荧光染料异硫氰酸荧光素(FITC)被封装在重新密封的红细胞空壳内。细胞内的FITC报告细胞外pH:随着细胞外pH升高,荧光强度增加,因为红细胞通过氯 - 碳酸氢盐交换器迅速与外部环境的pH平衡。重新密封的空壳传感器在生理pH范围内具有出色的可逆跟踪pH的能力,分辨率低至0.014 pH单位。染料加载效率在30%至80%之间变化。虽然完全加载是理想的,但并非必要,因为荧光信号是激发体积内所有重新密封的空壳的综合信号。重新密封的空壳可作为一种长期(>1至2个月)、连续循环的生物传感器用于疾病管理,如糖尿病。