Chang Ko-Tung, Chang Yu-Jen, Chen Chia-Ling, Wang Yao-Nan
Department of Biological Science and Technology, National Pingtung University of Science and Technology, Pingtung, Taiwan.
Electrophoresis. 2015 Feb;36(3):413-9. doi: 10.1002/elps.201400272. Epub 2014 Oct 27.
A low-cost platform is proposed for the growth and real-time monitoring of biological cells. The main components of the platform include a PMMA cell culture microchip and a multichannel lens-free CMOS (complementary metal-oxide-semiconductor) / LED imaging system. The PMMA microchip comprises a three-layer structure and is fabricated using a low-cost CO2 laser ablation technique. The CMOS / LED monitoring system is controlled using a self-written LabVIEW program. The platform has overall dimensions of just 130 × 104 × 115 mm(3) and can therefore be placed within a commercial incubator. The feasibility of the proposed system is demonstrated using HepG2 cancer cell samples with concentrations of 5000, 10 000, 20 000, and 40 000 cells/mL. In addition, cell cytotoxicity tests are performed using 8, 16, and 32 mM cyclophosphamide. For all of the experiments, the cell growth is observed over a period of 48 h. The cell growth rate is found to vary in the range of 44∼52% under normal conditions and from 17.4∼34.5% under cyclophosphamide-treated conditions. In general, the results confirm the long-term cell growth and real-time monitoring ability of the proposed system. Moreover, the magnification provided by the lens-free CMOS / LED observation system is around 40× that provided by a traditional microscope. Consequently, the proposed system has significant potential for long-term cell proliferation and cytotoxicity evaluation investigations.
本文提出了一种用于生物细胞生长和实时监测的低成本平台。该平台的主要组件包括一个聚甲基丙烯酸甲酯(PMMA)细胞培养微芯片和一个多通道无透镜互补金属氧化物半导体(CMOS)/发光二极管(LED)成像系统。PMMA微芯片具有三层结构,采用低成本的二氧化碳激光烧蚀技术制造。CMOS/LED监测系统由自行编写的LabVIEW程序控制。该平台的整体尺寸仅为130×104×115毫米³,因此可以放置在商业培养箱内。使用浓度为5000、10000、20000和40000个细胞/毫升的肝癌细胞系(HepG2)癌细胞样本,证明了所提出系统的可行性。此外,使用8、16和32毫摩尔的环磷酰胺进行细胞毒性测试。在所有实验中,观察细胞生长48小时。发现在正常条件下细胞生长速率在44%至52%之间变化,在环磷酰胺处理条件下在17.4%至34.5%之间变化。总体而言,结果证实了所提出系统的长期细胞生长和实时监测能力。此外,无透镜CMOS/LED观察系统提供的放大倍数约为传统显微镜的40倍。因此,所提出的系统在长期细胞增殖和细胞毒性评估研究方面具有巨大潜力。