IIT Bombay, Powai, Mumbai, India.
Biotechnol Bioeng. 2009 Dec 15;104(6):1075-85. doi: 10.1002/bit.22500.
The feasibility of dissolved-core alginate-templated fluorescent microspheres as "smart tattoo" glucose biosensors was investigated in simulated interstitial fluid (SIF). The sensor works on the principle of competitive binding and fluorescence resonance energy transfer. The sensor consists of multilayer thin film coated alginate microspheres incorporating dye-labeled glucose receptor and competing ligand within the partially dissolved alginate core. In this study, different approaches for the sensing and detection chemistry were studied, and the response of encapsulated reagents was compared with the solution-phase counterparts. The glucose sensitivity of the encapsulated TRITC-Con A/FITC-dextran (500 kDa) assay in DI water was estimated to be 0.26%/mM glucose while that in SIF was observed to be 0.3%/mM glucose. The glucose sensitivity of TRITC-apo-GOx/FITC-dextran (500 kDa) assay was estimated to be 0.33%/mM glucose in DI water and 0.5%/mM glucose in SIF and both demonstrated a response in the range of 0-50 mM glucose. Therefore, it is hypothesized that the calcium ion concentration outside the microsphere (in the SIF) does not interfere with the response sensitivity. The sensor response was observed to exhibit a maximum response time of 120 s. The system further exhibited a sensitivity of 0.94%/mM glucose with a response in range of 0-50 mM glucose, using near-infrared dyes (Alexa Fluor-647-labeled dextran as donor and QSY-21-conjugated apo-GOx as acceptor), thereby making the sensor more amenable to in vivo use, when implanted in scattering tissue.
以溶核海藻酸钠模板荧光微球作为“智能纹身”葡萄糖生物传感器的可行性在模拟间质液(SIF)中进行了研究。该传感器基于竞争结合和荧光共振能量转移原理工作。传感器由多层薄膜涂层海藻酸钠微球组成,其中包含在部分溶解的海藻酸钠核内的染料标记葡萄糖受体和竞争配体。在这项研究中,研究了不同的传感和检测化学方法,并比较了封装试剂的响应与溶液相的对应物。在 DI 水中,封装的 TRITC-Con A/FITC-葡聚糖(500 kDa)测定法的葡萄糖灵敏度估计为 0.26%/mM 葡萄糖,而在 SIF 中观察到的葡萄糖灵敏度为 0.3%/mM 葡萄糖。TRITC-apo-GOx/FITC-葡聚糖(500 kDa)测定法的葡萄糖灵敏度在 DI 水中估计为 0.33%/mM 葡萄糖,在 SIF 中为 0.5%/mM 葡萄糖,两者在 0-50 mM 葡萄糖范围内均表现出响应。因此,假设微球外(在 SIF 中)的钙离子浓度不会干扰响应灵敏度。传感器响应观察到的最大响应时间为 120 s。该系统进一步显示,使用近红外染料(Alexa Fluor-647 标记的葡聚糖作为供体和 QSY-21 缀合的 apo-GOx 作为受体),灵敏度为 0.94%/mM 葡萄糖,响应范围为 0-50 mM 葡萄糖,从而使传感器更适用于植入散射组织时的体内使用。