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用于在垂直化学和氧气梯度下进行细胞迁移研究的聚二甲基硅氧烷-聚碳酸酯微流控装置

Polydimethylsiloxane-polycarbonate Microfluidic Devices for Cell Migration Studies Under Perpendicular Chemical and Oxygen Gradients.

作者信息

Chiang Hung-Ju, Yeh Sih-Ling, Peng Chien-Chung, Liao Wei-Hao, Tung Yi-Chung

机构信息

Research Center for Applied Sciences, Academia Sinica.

Research Center for Applied Sciences, Academia Sinica;

出版信息

J Vis Exp. 2017 Feb 23(120):55292. doi: 10.3791/55292.

Abstract

This paper reports a microfluidic device made of polydimethylsiloxane (PDMS) with an embedded polycarbonate (PC) thin film to study cell migration under combinations of chemical and oxygen gradients. Both chemical and oxygen gradients can greatly affect cell migration in vivo; however, due to technical limitations, very little research has been performed to investigate their effects in vitro. The device developed in this research takes advantage of a series of serpentine-shaped channels to generate the desired chemical gradients and exploits a spatially confined chemical reaction method for oxygen gradient generation. The directions of the chemical and oxygen gradients are perpendicular to each other to enable straightforward migration result interpretation. In order to efficiently generate the oxygen gradients with minimal chemical consumption, the embedded PC thin film is utilized as a gas diffusion barrier. The developed microfluidic device can be actuated by syringe pumps and placed into a conventional cell incubator during cell migration experiments to allow for setup simplification and optimized cell culture conditions. In cell experiments, we used the device to study migrations of adenocarcinomic human alveolar basal epithelial cells, A549, under combinations of chemokine (stromal cell-derived factor, SDF-1α) and oxygen gradients. The experimental results show that the device can stably generate perpendicular chemokine and oxygen gradients and is compatible with cells. The migration study results indicate that oxygen gradients may play an essential role in guiding cell migration, and cellular behavior under combinations of gradients cannot be predicted from those under single gradients. The device provides a powerful and practical tool for researchers to study interactions between chemical and oxygen gradients in cell culture, which can promote better cell migration studies in more in vivo-like microenvironments.

摘要

本文报道了一种由聚二甲基硅氧烷(PDMS)制成的微流控装置,该装置嵌入了聚碳酸酯(PC)薄膜,用于研究在化学梯度和氧气梯度组合作用下的细胞迁移。化学梯度和氧气梯度都会极大地影响体内细胞迁移;然而,由于技术限制,很少有研究在体外研究它们的作用。本研究开发的装置利用一系列蛇形通道产生所需的化学梯度,并采用空间受限的化学反应方法来产生氧气梯度。化学梯度和氧气梯度的方向相互垂直,以便能够直接解释迁移结果。为了以最少的化学消耗高效地产生氧气梯度,嵌入的PC薄膜被用作气体扩散屏障。在细胞迁移实验期间,所开发的微流控装置可以由注射泵驱动并放置在传统的细胞培养箱中,以简化设置并优化细胞培养条件。在细胞实验中,我们使用该装置研究了趋化因子(基质细胞衍生因子,SDF-1α)和氧气梯度组合作用下腺癌人肺泡基底上皮细胞A549的迁移。实验结果表明,该装置能够稳定地产生垂直的趋化因子和氧气梯度,并且与细胞兼容。迁移研究结果表明,氧气梯度可能在引导细胞迁移中起重要作用,并且梯度组合作用下的细胞行为无法从单一梯度作用下的细胞行为预测得出。该装置为研究人员提供了一个强大而实用的工具,用于研究细胞培养中化学梯度和氧气梯度之间的相互作用,这可以促进在更类似体内的微环境中进行更好的细胞迁移研究。

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