Thedinga Elke, Kob Axel, Holst Heiko, Keuer Andreas, Drechsler Sabine, Niendorf Ricarda, Baumann Werner, Freund Ingo, Lehmann Mirko, Ehret Ralf
Bionas GmbH, Friedrich-Barnewitz-Str. 3, 18119 Rostock, Germany.
Toxicol Appl Pharmacol. 2007 Apr 1;220(1):33-44. doi: 10.1016/j.taap.2006.12.027. Epub 2007 Jan 3.
To characterize modes of action of substances and their cytotoxic effects Bionas GmbH has developed a new screening system to allow the continuous recording of how an active substance can act (Bionas 2500 analyzing system). In the pharmaceutical industry it is important to acquire as much information as possible about the metabolic effects of an active substance. Most classical pre-clinical studies are very expensive and time-consuming. Often they are so-called end-point tests which require many individual tests before approximate statements can be made about how an effect takes its course. With the Bionas 2500 analyzing system metabolically relevant data including oxygen consumption, acidification rate and the adhesion (cell impedance) of cells can be measured in parallel, online and label-free. Using e.g. ion-sensitive field effect-transistors (ISFET) and electrode structures it is possible to observe metabolic parameters non-invasively and continuously over longer periods of time. The system has already been established for several cell models, cell lines as well as primary cells. It also offers the advantage that regenerative effects can be observed during the same test run.
为了表征物质的作用模式及其细胞毒性效应,Bionas GmbH公司开发了一种新的筛选系统,用于连续记录活性物质的作用方式(Bionas 2500分析系统)。在制药行业,尽可能多地获取有关活性物质代谢效应的信息非常重要。大多数传统的临床前研究成本高昂且耗时。它们通常是所谓的终点测试,在能够对效应的发生过程做出大致说明之前,需要进行许多单独的测试。使用Bionas 2500分析系统,可以并行、在线且无标记地测量与代谢相关的数据,包括细胞的耗氧量、酸化率和黏附(细胞阻抗)。例如,使用离子敏感场效应晶体管(ISFET)和电极结构,可以在较长时间内无创且连续地观察代谢参数。该系统已应用于多种细胞模型、细胞系以及原代细胞。它还具有在同一次测试运行中可以观察到再生效应的优势。