Polymer Nanobiomaterial Research Laboratory, Smart Materials and Devices, Yenepoya Research Centre, Yenepoya (Deemed to be University), Mangalore 575 018, India.
Nanomaterial Research Laboratory (NMRL), Smart Materials and Devices, Yenepoya Research Centre, Yenepoya (Deemed to be University), Deralakatte, Mangalore 575 018, India.
Langmuir. 2024 Jun 25;40(25):13144-13154. doi: 10.1021/acs.langmuir.4c01125. Epub 2024 Jun 13.
Reduced nicotinamide adenine dinucleotide (NADH)-detecting electrochemical sensors are attractive in monitoring and diagnosing various physiological disorders of NADH abnormalities. The NADH detection methods using conventional electrodes are challenging due to slow electron transfer and fouling effect. Interestingly, paper-based flexible and disposable electrodes (PE) are superior for sensing biomolecules through simple detection procedures with excellent sensitivity and selectivity. Herein, to construct a conducting polypeptide-modified paper electrode, initially, polytyrosine (PTyr) is synthesized from l-tyrosine N-carboxy anhydride through ring-opening polymerization, and PTyr is drop-coated on the PE. The PTyr-modified paper electrode (PMPE) demonstrated excellent electrochemical properties and facilitated the electrooxidation of NADH at a lower potential of 576 mV. The PMPE displayed a linear detection between 25 and 145 μM of NADH concentration, with a lower detection limit of 0.340 μM. Under ideal circumstances, the sensor developed displayed an excellent NADH detection capability without interference with the most common electroactive species, ascorbic acid. The PMPE facilitates good electrocatalytic activity toward NADH, which can also be employed as a substrate material for biofuel cells.
还原型烟酰胺腺嘌呤二核苷酸(NADH)电化学传感器在监测和诊断 NADH 异常引起的各种生理紊乱方面具有吸引力。由于电子转移缓慢和污垢效应,使用传统电极的 NADH 检测方法具有挑战性。有趣的是,基于纸张的灵活和一次性电极(PE)通过简单的检测程序,具有出色的灵敏度和选择性,非常适合感测生物分子。在这里,为了构建一种修饰过的聚多肽修饰的纸电极,首先通过开环聚合从 l-酪氨酸 N-羧酸酐合成聚酪氨酸(PTyr),然后将其滴涂在 PE 上。PTyr 修饰的纸电极(PMPE)表现出优异的电化学性能,并在较低的 576 mV 电势下促进 NADH 的电氧化。PMPE 显示出在 25 至 145 μM 的 NADH 浓度范围内的线性检测,检测限低至 0.340 μM。在理想条件下,开发的传感器在没有与最常见的电活性物质抗坏血酸干扰的情况下,表现出出色的 NADH 检测能力。PMPE 对 NADH 具有良好的电催化活性,也可用作生物燃料电池的基底材料。