Immonen Nina, Karp Matti
Tampere University of Technology, Institute of Environmental Engineering and Biotechnology, P.O. Box 541, FIN-33101 Tampere, Finland.
Biosens Bioelectron. 2007 Apr 15;22(9-10):1982-7. doi: 10.1016/j.bios.2006.08.029. Epub 2006 Sep 25.
We have developed a method for determining ultralow amounts of nisin in food samples that is based on luminescent biosensor bacteria. Modified bacterial luciferase operon luxABCDE was placed under control of the nisin-inducible nisA promoter in plasmid pNZ8048, and the construct was transformed into Lactococcus lactis strains NZ9800 and NZ9000. The nisRK genes of these strains allow them to sense nisin and relay the signal to initiate transcription from nisA promoter. The resulting luminescence can be directly measured from living bacteria without the addition of exogenous substrates. Induction leads to detectable luminescence within ten minutes. Lyophilization of the biosensor cells produced viable and inducible sensor elements that can be utilized as freshly cultivated cells for rapid detection of nisin. The linear dose-response relationship perceived in the assay facilitates quantification of nisin in samples. The sensitivity of the nisin bioassay was 0.1 pg/ml in pure solution and 3 pg/ml in milk, exceeding the performance of all previously reported methods.
我们开发了一种基于发光生物传感器细菌测定食品样品中极微量乳链菌肽的方法。将修饰的细菌荧光素酶操纵子luxABCDE置于质粒pNZ8048中乳链菌肽诱导型nisA启动子的控制之下,并将构建体转化到乳酸乳球菌菌株NZ9800和NZ9000中。这些菌株的nisRK基因使它们能够感知乳链菌肽并传递信号以启动来自nisA启动子的转录。无需添加外源底物即可直接从活细菌中测量产生的发光。诱导在十分钟内导致可检测到的发光。生物传感器细胞的冻干产生了可行且可诱导的传感元件,可将其用作新鲜培养的细胞以快速检测乳链菌肽。该测定中观察到的线性剂量反应关系有助于对样品中的乳链菌肽进行定量。乳链菌肽生物测定在纯溶液中的灵敏度为0.1 pg/ml,在牛奶中为3 pg/ml,超过了所有先前报道方法的性能。