Ozkan Melek, Erhan Elif, Terzi Ozlem, Tan Ibrahim, Ozöner Seyda Korkut
Gebze Institute of Technology, Department of Environmental Engineering, 41400 Kocaeli, Turkey.
Talanta. 2009 Oct 15;79(5):1412-7. doi: 10.1016/j.talanta.2009.06.012. Epub 2009 Jun 12.
The gene for Clostridium thermocellum L-lactate dehydrogenase enzyme was cloned into pGEX-4T-2 purification vector to supply a source for a thermostable enzyme in order to produce a stable lactate biosensor working at relatively high temperatures. The purified thermostable enzyme (t-LDH) was then immobilized on a gold electrode via polymerization of polygluteraldehyde and pyrrol resulting in a conductive co-polymer. t-LDH working electrode (t-LDHE) was used for determination of lactate in CHES buffer. Amperometric response of the produced electrodes was measured as a function of lactate concentration, at a fixed bias voltage of 200 mV in a three-electrode system. The linear range and sensitivity of the biosensor was investigated at various temperatures in the range of 25-60 degrees C. The sensitivity t-LDHE increased with increasing the temperature and reached its highest value at 60 degrees C. The calculated value was nearly 70 times higher as compared to the sensitivity value of the same electrode tested at 25 degrees C. The sensing parameters of t-LDHE were compared with the electrodes produced by commercially available rabbit muscle LDH (m-LDH). The sensitivity of t-LDHE was nearly 8 times higher than that of m-LDHE. t-LDHE was found to retain its activity for a week incubation at refrigerator (+5 degrees C), while m-LDHE lost its activity in this period. t-LDHE was also tested in the presence of human blood serum. The results showed that the current increased with increasing concentrations of lactate in the human blood serum and the biosensor is more sensitive to serum lactate as well as the commercial lactate dissolved in serum as compared to the commercial lactate dissolved in CHES buffer.
将嗜热栖热菌L-乳酸脱氢酶基因克隆到pGEX-4T-2纯化载体中,以提供一种热稳定酶的来源,从而生产出能在相对较高温度下工作的稳定乳酸生物传感器。然后,通过聚戊二醛和吡咯的聚合反应,将纯化后的热稳定酶(t-LDH)固定在金电极上,形成导电共聚物。t-LDH工作电极(t-LDHE)用于在CHES缓冲液中测定乳酸。在三电极系统中,固定偏置电压为200 mV的条件下,测量所制备电极的安培响应随乳酸浓度的变化。在25-60℃范围内的不同温度下,研究了该生物传感器的线性范围和灵敏度。t-LDHE的灵敏度随温度升高而增加,在60℃时达到最高值。与在25℃下测试的同一电极的灵敏度值相比,计算值高出近70倍。将t-LDHE的传感参数与市售兔肌肉LDH(m-LDH)制备的电极进行了比较。t-LDHE的灵敏度比m-LDH高出近8倍。发现t-LDHE在冰箱(+5℃)中孵育一周仍保持其活性,而m-LDH在此期间失去了活性。还在人血清存在的情况下对t-LDHE进行了测试。结果表明,随着人血清中乳酸浓度的增加,电流增大,并且与溶解在CHES缓冲液中的市售乳酸相比,该生物传感器对血清乳酸以及溶解在血清中的市售乳酸更敏感。