Wallace T C, Leh M B, Coughlin R W
Biotechnol Bioeng. 1977 Jun;19(6):901-21. doi: 10.1002/bit.260190609.
We have demonstrated that a simple electrochemical cell can serve as a detector of NADH concentration in a flow system thereby providing an assay technique for NADH dependent enzymes. When this is applied to NADH produced by enzymatic reaction, then a reproducible measure of enzyme activity is obtained. This method of enzyme activity assay is applicable to a number of oxidoreductase enzymes which employ NAD+ or NADP+ as coenzymes to achieve substrate modification. The presence of electroactive species in samples of human serum has proved a serious problem in the electrochemical analysis of serum activity. These species produce a large background anode current at the anode voltage appropriate for NADH oxidation. The presence of this high current limits the usefulness of amplification of the current output to detect small changes in NADH concentration.
我们已经证明,一个简单的电化学电池可以作为流动系统中NADH浓度的检测器,从而为依赖NADH的酶提供一种测定技术。当将其应用于酶促反应产生的NADH时,便可获得酶活性的可重复测量值。这种酶活性测定方法适用于多种氧化还原酶,这些酶利用NAD+或NADP+作为辅酶来实现底物修饰。在人血清样本中存在的电活性物质已被证明是血清活性电化学分析中的一个严重问题。这些物质在适合NADH氧化的阳极电压下会产生很大的背景阳极电流。这种高电流的存在限制了通过放大电流输出来检测NADH浓度微小变化的实用性。