Skommer J, McGuinness D, Wlodkowic D
School of Biological Sciences, University of Auckland, Auckland, New Zealand.
Biotech Histochem. 2011 Jun;86(3):174-80. doi: 10.3109/10520290903547075. Epub 2010 Jan 29.
Gas permeable and biocompatible soft polymers are convenient for biological applications. Using the soft polymer poly(dimethylsiloxane) (PDMS), we established a straightforward technique for in-house production of self-adhesive and optical grade microculture devices. A gas permeable PDMS layer effectively protects against medium evaporation, changes in osmolarity, contamination and drug diffusion. These chip-based devices can be used effectively for long term mammalian cell culture and support a range of bioassays used in pharmacological profiling of anti-cancer drugs. Results obtained on a panel of hematopoietic and solid tumor cell lines during screening of investigative anti-cancer agents corresponded well to those obtained in a conventional cell culture on polystyrene plates. The cumulative correlation analysis of multiple cell lines and anti-cancer drugs showed no adverse effects on cell viability or cell growth retardation during microscale static cell culture. PDMS devices also can be custom modified for many bio-analytical purposes and are interfaced easily with both inverted and upright cell imaging platforms. Moreover, PDMS microculture devices are suitable for extended real time cell imaging. Data from the multicolor, real time analysis of apoptosis on human breast cancer MCF-7 cells provided further evidence that elimination of redundant centrifugation/washing achieved during microscale real time analysis facilitates preservation of fragile apoptotic cells and provides dynamic cellular information at high resolution. Because only small reaction volumes are required, such devices offer reduced use of consumables as well as simplified manipulations during all stages of live cell imaging.
气体可渗透且具有生物相容性的软聚合物适用于生物应用。我们使用软聚合物聚二甲基硅氧烷(PDMS)建立了一种直接的技术,用于内部生产自粘性和光学级微培养装置。透气的PDMS层可有效防止培养基蒸发、渗透压变化、污染和药物扩散。这些基于芯片的装置可有效地用于长期哺乳动物细胞培养,并支持一系列用于抗癌药药理学分析的生物测定。在筛选研究性抗癌药物期间,在一组造血和实体瘤细胞系上获得的结果与在聚苯乙烯板上进行的传统细胞培养中获得的结果非常吻合。对多种细胞系和抗癌药物的累积相关性分析表明,在微尺度静态细胞培养期间对细胞活力或细胞生长迟缓没有不利影响。PDMS装置还可针对许多生物分析目的进行定制修改,并且可轻松与倒置和正立细胞成像平台连接。此外,PDMS微培养装置适用于延长的实时细胞成像。来自对人乳腺癌MCF-7细胞凋亡的多色实时分析的数据提供了进一步的证据,即在微尺度实时分析期间消除冗余的离心/洗涤有助于保存脆弱的凋亡细胞,并以高分辨率提供动态细胞信息。由于仅需要小的反应体积,因此此类装置减少了消耗品的使用,并简化了活细胞成像所有阶段的操作。