Biochemical Research Laboratory, Eiken Chemical Co. Ltd., 143 Nogi-Machi, Nogi, Shimotsuga-gun Tochigi 329-0114, Japan.
Luminescence. 2011 May-Jun;26(3):167-71. doi: 10.1002/bio.1200. Epub 2010 Mar 30.
Firefly luciferin-luciferase bioluminescence is known for its high quantum yield (41.0 ± 7.4%). Given this high quantum yield, application of this bioluminescence is expected to be useful in the field of clinical diagnostics. The kinetic profile of this bioluminescence exhibits an instant rise (<1 s) and a rapid decay in light emission (decreased to 42% after 5 s). In this study, we applied four enhancers including coenzyme A, inosine5'-triphosphate sodium salt, sodium tripolyphosphate and potassium pyrophosphate to prolong light emission. When these enhancers were used, luminescence was only decreased to 89, 83, 87 and 82% after 5 s, respectively. These materials modified the kinetic profile of bioluminescence so that the luminescence is more suitable for clinical application. It becomes more suitable because they enable highly sensitive integration and simplification of a device by separating luminescence measurements from dispensing of reagents. Using these enhancers, we then developed a bioluminescent enzyme immunoassay (BLEIA) for hepatitis B virus surface antigen (HBsAg) that employed firefly luciferase as a labeling enzyme. We compared the results obtained from the HBsAg BLEIA method with the conventional chemiluminescent enzyme immunoassay method, and found a satisfactory correlation (r=0.984, n=118).
萤火虫荧光素-荧光素酶生物发光以其高量子产率(41.0±7.4%)而闻名。鉴于这种高量子产率,预计这种生物发光在临床诊断领域的应用将非常有用。该生物发光的动力学曲线表现出瞬间上升(<1 秒)和光发射的快速衰减(5 秒后降至 42%)。在这项研究中,我们应用了四种增强剂,包括辅酶 A、肌苷 5'-三磷酸钠盐、三聚磷酸钠和焦磷酸钾,以延长发光时间。当使用这些增强剂时,发光在 5 秒后分别仅降低至 89%、83%、87%和 82%。这些材料修饰了生物发光的动力学曲线,使发光更适合临床应用。由于它们通过将发光测量与试剂分配分开,从而能够高度灵敏地集成和简化设备,因此变得更加适用。我们使用这些增强剂开发了一种用于乙型肝炎病毒表面抗原(HBsAg)的生物发光酶免疫分析(BLEIA),该分析采用萤火虫荧光素酶作为标记酶。我们将从 HBsAg BLEIA 方法获得的结果与传统的化学发光酶免疫分析方法进行了比较,发现两者具有令人满意的相关性(r=0.984,n=118)。