Department of Chemistry, College of Staten Island, City University of New York, Staten Island, NY 10314, USA.
Biosens Bioelectron. 2010 Aug 15;25(12):2603-10. doi: 10.1016/j.bios.2010.04.030. Epub 2010 Apr 28.
A new class of optical glucose nanobiosensors with high sensitivity and selectivity at physiological pH is described. To construct these glucose nanobiosensors, the fluorescent CdS quantum dots (QDs), serving as the optical code, were incorporated into the glucose-sensitive poly(N-isopropylacrylamide-acrylamide-2-acrylamidomethyl-5-fluorophenylboronic acid) copolymer microgels, via both in situ growth method and "breathing in" method, respectively. The polymeric gel can adapt to surrounding glucose concentrations, and regulate the fluorescence of the embedded QDs, converting biochemical signals into optical signals. The gradual swelling of the gel would lead to the quenching of the fluorescence at the elevated glucose concentrations. The hybrid microgels displayed high selectivity to glucose over the potential primary interferents of lactate and human serum albumin in the physiologically important glucose concentration range. The stability, reversibility, and sensitivity of the organic-inorganic hybrid microgel-based biosensors were also systematically studied. These general properties of our nanobiosensors are well tunable under appropriate tailor on the hybrid microgels, in particular, simply through the change in the crosslinking degree of the microgels. The optical glucose nanobiosensors based on the organic-inorganic hybrid microgels have shown the potential for a third generation fluorescent biosensor.
本文介绍了一类在生理 pH 值下具有高灵敏度和选择性的新型光学葡萄糖纳米生物传感器。为了构建这些葡萄糖纳米生物传感器,荧光 CdS 量子点(QDs)被分别通过原位生长法和“吸入”法掺入到对葡萄糖敏感的聚(N-异丙基丙烯酰胺-丙烯酰胺-2-丙烯酰胺基-5-氟苯硼酸)共聚微凝胶中,作为光学编码。聚合物凝胶可以适应周围的葡萄糖浓度,并调节嵌入的 QDs 的荧光,将生化信号转化为光学信号。凝胶的逐渐溶胀会导致在升高的葡萄糖浓度下荧光猝灭。在生理上重要的葡萄糖浓度范围内,杂化微凝胶对葡萄糖具有高选择性,而对乳酸和人血清白蛋白等潜在的主要干扰物则具有选择性。还系统研究了基于有机-无机杂化微凝胶的生物传感器的稳定性、可逆性和灵敏度。通过适当调整杂化微凝胶的特性,包括简单地改变微凝胶的交联度,我们的纳米生物传感器的这些一般特性可以很好地进行调整。基于有机-无机杂化微凝胶的光学葡萄糖纳米生物传感器已经显示出了成为第三代荧光生物传感器的潜力。