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On-chip microfluidic systems for determination of L-glutamate based on enzymatic recycling of substrate

机译:基于底物酶回收的片上微流控系统用于测定L-谷氨酸

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摘要

Two microfluidic systems have been developed for specific analysis of L-glutamate in food based on substrate recycling fluorescence detection. L-glutamate dehydrogenase and a novel enzyme, D-phenylglycine aminotransferase, were covalently immobilized on (i) the surface of silicon microchips containing 32 porous flow channels of 235 μm depth and 25 μm width and (ii) polystyrene Poros™ beads with a particle size of 20 μm. The immobilized enzymes recycle L-glutamate by oxidation to 2-oxoglutarate followed by the transfer of an amino group from D-4-hydroxyphenylglycine to 2-oxoglutarate. The reaction was accompanied by reduction of nicotinamide adenine dinucleotide (NAD+) to NADH, which was monitored by fluorescence detection (εex=340 nm, εem=460 nm). First, the microchip-based system, L-glutamate was detected within a range of 3.1–50.0 mM. Second, to be automatically determined, sequential injection analysis (SIA) with the bead-based system was investigated. The bead-based system was evaluated by both flow injection analysis and SIA modes, where good reproducibility for L-glutamate calibrations was obtained (relative standard deviation of 3.3% and 6.6%, respectively). In the case of SIA, the beads were introduced and removed from the microchip automatically. The immobilized beads could be stored in a 20% glycerol and 0.5 mM ethylenediaminetetraacetic acid solution maintained at a pH of 7.0 using a phosphate buffer for at least 15 days with 72% of the activity remaining. The bead-based system demonstrated high selectivity, where L-glutamate recoveries were between 91% and 108% in the presence of six other L-amino acids tested.
机译:已经开发了两种微流体系统,用于基于底物循环荧光检测对食品中的L-谷氨酸进行特异性分析。 L-谷氨酸脱氢酶和一种新型酶D-苯基甘氨酸氨基转移酶被共价固定在(i)硅微芯片表面,该芯片包含32个深度为235μm,宽度为25μm的多孔流道,以及(ii)具有颗粒的聚苯乙烯Poros™珠尺寸为20μm。固定化的酶通过氧化成2-氧戊二酸,然后将氨基从D-4-羟基苯基甘氨酸转移到2-氧戊二酸来循环L-谷氨酸。反应伴随着烟酰胺腺嘌呤二核苷酸(NAD + )还原为NADH,通过荧光检测(εex= 340 nm,εem= 460 nm)监测。首先,基于微芯片的系统L-谷氨酸的检测范围为3.1-50.0 mM。其次,要自动确定,研究了基于微珠的系统的顺序注射分析(SIA)。通过流动注射分析和SIA模式对基于微珠的系统进行了评估,获得了L-谷氨酸校准品的良好重现性(相对标准偏差分别为3.3%和6.6%)。在SIA的情况下,会自动引入微珠并从微芯片中去除微珠。可以使用磷酸盐缓冲液将固定化的珠子保存在20%的甘油和0.5 mM的乙二胺四乙酸溶液(保持pH值为7.0)中至少15天,保留72%的活性。基于珠的系统显示出高选择性,其中在测试的其他六个L-氨基酸存在下,L-谷氨酸的回收率在91%至108%之间。

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