Institute of Food Science and Technology, National Taiwan University, No.1, Roosevelt Road, Section 4, Taipei, Taiwan, ROC.
J Pharm Biomed Anal. 2014 Jan;88:571-8. doi: 10.1016/j.jpba.2013.09.011. Epub 2013 Oct 12.
Simple and fast photometric flow injection analysis system was developed for sensing of β-1,3-glucan from medicinal mushroom Ganoderma lucidum during fermentation. For this purpose, the chitosan-guar gum-silver nanoparticle-beta glucanase (Ch-GG-AgNPs-βG) beads and Ch-GG-AgNPs-GOD (glucose oxidase) beads were prepared. The bead packed mini-columns were then used to assemble a flow injection analysis (FIA) system for the detection of β-(1→3)-d-glucan biomarker or glucose. This colorimetric flow system can detect glucose and glucan with detection limits as low as 50ngmL(-1) and 100ngmL(-1) (S/N=3), respectively. The analysis time of this FIA was approximately 40s, which is faster than the previously reported glucan sensors. The glucose and glucan calibration curves were obtained in the range of 0.25-1.25μgmL(-1) (R(2)=0.988) and 0.2-1.0μgmL(-1)(R(2)=0.979), respectively. The applicability of the nano-bio-composite FIA sensor system for spiked and real β-(1→3)-d-glucan samples were tested, and the accuracy of the results were greater than 95%. Thus, the designed FIA provides a simple, interference free and rapid tool for monitoring glucose and β-glucan content, which can be used for various food samples with a little modification.
建立了一种简单、快速的光学生物传感流动注射分析系统,用于检测灵芝发酵过程中β-1,3-葡聚糖。为此,制备了壳聚糖-瓜尔胶-银纳米粒子-β葡聚糖酶(Ch-GG-AgNPs-βG)和壳聚糖-瓜尔胶-银纳米粒子-GOD(葡萄糖氧化酶)珠。然后,将珠填充的微型柱组装成用于检测β-(1→3)-d-葡聚糖生物标志物或葡萄糖的流动注射分析(FIA)系统。该比色流动系统可检测葡萄糖和葡聚糖,检测限分别低至 50ngmL(-1)和 100ngmL(-1)(S/N=3)。该 FIA 的分析时间约为 40s,快于先前报道的葡聚糖传感器。获得的葡萄糖和葡聚糖校准曲线的范围分别为 0.25-1.25μgmL(-1)(R(2)=0.988)和 0.2-1.0μgmL(-1)(R(2)=0.979)。测试了纳米生物复合 FIA 传感器系统对加标和实际β-(1→3)-d-葡聚糖样品的适用性,结果的准确性大于 95%。因此,设计的 FIA 为监测葡萄糖和β-葡聚糖含量提供了一种简单、无干扰和快速的工具,稍加修改即可用于各种食品样品。