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Biossensor enzimático para detec??o de fungicidas ditiocarbamatos: estudo cinético da enzima aldeído desidrogenase e otimiza??o do biossensor

机译:用于检测二硫代氨基甲酸酯类杀菌剂的酶生物传感器:醛脱氢酶的动力学研究和生物传感器的优化

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Initially, all major factors that affect the rate of the AldH-catalyzed reaction (enzyme concentration, substrate concentration, temperature and pH) were investigated. Optimal activity was observed between pH values of 7.5 and 9.5 in the temperature range of 25 to 50 oC. Kinetic parameters, such as Km (2.92 μmol L-1) and Vmax (1.33 10-2 μmol min-1) demonstrate a strong enzyme-substrate affinity. The sensors were based on screen-printed electrodes modified with the Meldola Blue-Reinecke salt (MBRS) combination. Operational conditions (NAD+ and substrate contents, enzyme loading and response time) were optimized. Also, two enzyme immobilization procedures were tested: entrapment in poly(vinyl alcohol) bearing styrylpyridinium groups (PVA-SbQ) and crosslinking with glutaraldehyde. Chronoamperometry was employed to observe the biosensor responses during enzymatic hydrolysis of propionaldehyde and also to construct inhibition curves with maneb and zineb fungicides. Best results were found with the following conditions: [NAD+] = 0.25 mmol L-1; [propionaldehyde] = 80 μmol L-1; enzyme loading = 0.8 U per electrode; response time = 10 min, and inhibition time = 10 min. Current intensities around 103 ± 13 nA with the sensors and good stability was obtained for both immobilization procedures. Detection limits, calculated using 10% inhibition were 31.5 μg L-1 and 35 μg L-1 for maneb and zineb, respectively. Results obtained with other MBRS-modified electrodes consisting of mono and bi-enzymic sensors were compared. The ability to catalyze NADH oxidation by MB was also highlighted.
机译:最初,研究了影响AldH催化反应速率的所有主要因素(酶浓度,底物浓度,温度和pH)。在25至50 oC的温度范围内,在7.5至9.5的pH值之间观察到最佳活性。动力学参数,例如Km(2.92μmolL-1)和Vmax(1.33 10-2μmolmin-1)表现出很强的酶-底物亲和力。传感器基于用Meldola Blue-Reinecke盐(MBRS)组合修饰的丝网印刷电极。优化了操作条件(NAD +和底物含量,酶负载和响应时间)。此外,还测试了两种酶固定程序:截留在带有苯乙烯吡啶鎓基团(PVA-SbQ)的聚乙烯醇中和与戊二醛交联。计时安培法用于观察丙醛酶促水解过程中的生物传感器响应,还用于构建Maneb和Zineb杀菌剂的抑制曲线。在以下条件下发现最佳结果:[NAD +] = 0.25 mmol L-1; [丙醛] = 80μmolL-1;每个电极的酶负载= 0.8 U;响应时间= 10分钟,抑制时间= 10分钟。对于这两种固定程序,使用传感器获得的电流强度约为103±13 nA,并且具有良好的稳定性。使用10%抑制计算得出的检出限分别是maneb和zineb为31.5μgL-1和35μgL-1。比较了用其他由单酶和双酶传感器组成的MBRS修饰电极获得的结果。还强调了通过MB催化NADH氧化的能力。

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