Schade-Kampmann G, Huwiler A, Hebeisen M, Hessler T, Di Berardino M
Leister Process Technologies, Axetris Microsystems Division, Kägiswil, Switzerland.
Cell Prolif. 2008 Oct;41(5):830-40. doi: 10.1111/j.1365-2184.2008.00548.x. Epub 2008 Jul 31.
Many flow-cytometric cell characterization methods require costly markers and colour reagents. We present here a novel device for cell discrimination based on impedance measurement of electrical cell properties in a microfluidic chip, without the need of extensive sample preparation steps and the requirement of labelling dyes.
MATERIALS AND METHODS, RESULTS: We demonstrate that in-flow single cell measurements in our microchip allow for discrimination of various cell line types, such as undifferentiated mouse fibroblasts 3T3-L1 and adipocytes on the one hand, or human monocytes and in vitro differentiated dendritic cells and macrophages on the other hand. In addition, viability and apoptosis analyses were carried out successfully for Jurkat cell models. Studies on several species, including bacteria or fungi, demonstrate not only the capability to enumerate these cells, but also show that even other microbiological life cycle phases can be visualized.
These results underline the potential of impedance spectroscopy flow cytometry as a valuable complement to other known cytometers and cell detection systems.
许多流式细胞术细胞表征方法需要昂贵的标记物和显色试剂。我们在此展示一种新型装置,用于基于微流控芯片中细胞电学特性的阻抗测量来区分细胞,无需大量样品制备步骤和标记染料。
材料与方法、结果:我们证明,在我们的微芯片中进行的入流单细胞测量能够区分各种细胞系类型,一方面是未分化的小鼠成纤维细胞3T3-L1和脂肪细胞,另一方面是人类单核细胞以及体外分化的树突状细胞和巨噬细胞。此外,对Jurkat细胞模型成功进行了活力和凋亡分析。对包括细菌或真菌在内的几种物种的研究不仅证明了对这些细胞进行计数的能力,还表明甚至其他微生物生命周期阶段也可以可视化。
这些结果强调了阻抗谱流式细胞术作为其他已知细胞仪和细胞检测系统的有价值补充的潜力。