Research Center for Applied Sciences, Academia Sinica, Taipei, 11529, Taiwan.
Lab Chip. 2011 Nov 7;11(21):3626-33. doi: 10.1039/c1lc20325h. Epub 2011 Sep 13.
This paper reports a microfluidic device capable of generating oxygen gradients for cell culture using spatially confined chemical reactions with minimal chemical consumption. The microfluidic cell culture device is constructed by single-layer polydimethylsiloxane (PDMS) microfluidic channels, in which the cells can be easily observed by microscopes. The device can control the oxygen gradients without the utilization of bulky pressurized gas cylinders, direct addition of oxygen scavenging agents, or tedious gas interconnections and sophisticated flow control. In addition, due to the efficient transportation of oxygen within the device using the spatially confined chemical reactions, the microfluidic cell culture device can be directly used in conventional cell incubators without altering their gaseous compositions. The oxygen gradients generated in the device are numerically simulated and experimentally characterized using an oxygen-sensitive fluorescence dye. In this paper, carcinomic human alveolar basal epithelial (A549) cells have been cultured in the microfluidic device with a growth medium and an anti-cancer drug (Tirapazamine, TPZ) under various oxygen gradients. The cell experiment results successfully demonstrate the hyperoxia-induced cell death and hypoxia-induced cytotoxicity of TPZ. In addition, the results confirm the great cell compatibility and stable oxygen gradient generation of the developed device. Consequently, the microfluidic cell culture device developed in this paper is promising to be exploited in biological labs with minimal instrumentation to study cellular responses under various oxygen gradients.
本文报道了一种使用空间受限化学反应以最小的化学消耗为细胞培养生成氧气梯度的微流控装置。该微流控细胞培养装置由单层聚二甲基硅氧烷(PDMS)微流道构成,其中细胞可以通过显微镜轻松观察。该装置可以控制氧气梯度,而无需使用庞大的加压气瓶、直接添加氧气清除剂或繁琐的气体连接和复杂的流量控制。此外,由于在装置内使用空间受限化学反应有效地输送氧气,因此微流控细胞培养装置可以直接在常规细胞培养箱中使用,而无需改变其气体组成。使用氧敏荧光染料对装置中产生的氧气梯度进行数值模拟和实验表征。在本文中,用人肺泡基底上皮癌细胞(A549)在微流控装置中以生长培养基和抗癌药物(替拉扎明,TPZ)在各种氧气梯度下进行培养。细胞实验结果成功地证明了缺氧诱导的细胞死亡和缺氧诱导的 TPZ 细胞毒性。此外,结果证实了所开发装置的出色细胞相容性和稳定的氧气梯度生成。因此,本文开发的微流控细胞培养装置有望在生物实验室中得到广泛应用,只需最小的仪器即可在各种氧气梯度下研究细胞反应。