Department of Biosciences and Bioengineering, IIT Bombay, Powai, Mumbai, India.
Analyst. 2010 Oct;135(10):2620-8. doi: 10.1039/c0an00109k. Epub 2010 Aug 6.
Microparticle optical sensors hold potential as implantable smart materials for in vivo analysis. In this work, the reversible response of dissolved-core alginate microspheres containing a homogeneous fluorescence resonance energy transfer (FRET)-based competitive binding assay for glucose was evaluated. The layer-by-layer self assembly technique was used to deposit multilayered nanofilm coatings on the alginate microspheres containing the assay, thereby stabilizing the sensor system when the alginate was de-crosslinked. The response to glucose was then determined in DI water and simulated interstitial fluid (SIF) using a flow cell to establish controlled, dynamic flow conditions for demonstrating reversibility. The glucose sensitivity under dynamic conditions was estimated to be 0.52%/mM glucose in DI water and 0.6%/mM glucose in simulated interstitial fluid; in both cases, the analytical response range was 0-30 mM glucose, covering both physiological (normoglycemia) and pathophysiological range (hyperglycemia and hypoglycemia). The sensor demonstrated a repeatable and reproducible response when tested over a period of one month, under dynamic flow conditions. Finally, in vitro cytotoxicity assays performed with L929 mouse fibroblast cell lines suggested that the dissolved-core alginate microsphere sensor system with nanofilm coating has sufficient biocompatibility for use as implantable glucose biosensors.
微颗粒光学传感器有望成为用于体内分析的可植入智能材料。在这项工作中,评估了含有基于荧光共振能量转移 (FRET) 的同质竞争结合分析物的溶解芯海藻酸盐微球的溶解芯海藻酸盐微球的可逆响应用于葡萄糖。使用层层自组装技术在含有该分析物的海藻酸盐微球上沉积多层纳米薄膜涂层,从而在海藻酸盐去交联时稳定传感器系统。然后使用流动池在 DI 水和模拟间质液 (SIF) 中测定对葡萄糖的响应,以建立用于证明可逆性的受控动态流动条件。在动态条件下,葡萄糖的灵敏度估计为 DI 水中的 0.52%/mM 葡萄糖和模拟间质液中的 0.6%/mM 葡萄糖;在这两种情况下,分析响应范围均为 0-30 mM 葡萄糖,涵盖了生理(正常血糖)和病理生理范围(高血糖和低血糖)。在动态流动条件下测试一个月期间,传感器表现出可重复和可再现的响应。最后,用 L929 小鼠成纤维细胞系进行的体外细胞毒性测定表明,具有纳米薄膜涂层的溶解芯海藻酸盐微球传感器系统具有足够的生物相容性,可用于植入式葡萄糖生物传感器。