Department of BioNano Technology, Gachon University, Gyeonggi 461-701, Republic of Korea.
Department of Chemical and Biological Engineering, Gachon University, Gyeonggi 461-701, Republic of Korea.
Biosens Bioelectron. 2017 Jul 15;93:226-233. doi: 10.1016/j.bios.2016.08.113. Epub 2016 Aug 31.
A composite consisting of cerium oxide nanoparticles (nanoceria) and an oxidative enzyme co-entrapped in an agarose gel has been developed for the reagent-free colorimetric detection of biologically important target molecules. The oxidase, immobilized in the agarose matrix, promotes the oxidation of target molecules to generate HO that subsequently induces changes in the physicochemical properties of nanoceria exhibiting a color change from white/light-yellow into intense-yellow/light-orange without any requirement for additional colorimetric substrates. By utilizing the unique color-changing property of nanoceria entrapped within the agarose gel, target glucose molecules were very specifically detected over a wide linear range from 0.05 to 2mM, which is suitable to measure the serum glucose level, with excellent operational stability over two weeks at room temperature. The biosensor also exhibited a high degree of precision and reproducibility when employed to detect glucose present in real human serum samples. We expect that this novel nanoceria-based biosensing format could be readily extended to other oxidative enzymes for the convenient detection of various clinically important target molecules.
一种由氧化铈纳米粒子(纳米氧化铈)和一种氧化酶组成的复合材料被开发出来,用于无试剂比色检测生物重要目标分子。氧化酶固定在琼脂糖基质中,促进目标分子的氧化生成 HO,随后诱导纳米氧化铈的物理化学性质发生变化,使其颜色从白色/浅黄色变为强烈的黄色/浅橙色,而无需任何额外的比色底物。通过利用纳米氧化铈在琼脂糖凝胶中的独特变色特性,可以非常特异性地检测到范围很宽的葡萄糖分子,从 0.05 到 2mM,这适合测量血清葡萄糖水平,在室温下具有两周以上的优异操作稳定性。当用于检测真实人体血清样本中的葡萄糖时,该生物传感器还表现出高度的精确性和重现性。我们期望这种基于新型纳米氧化铈的生物传感格式可以很容易地扩展到其他氧化酶,以方便检测各种临床重要的目标分子。