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首页> 外文期刊>Biomedical Microdevices >Embryonic body culturing in an all-glass microfluidic device with laser-processed 4 μm thick ultra-thin glass sheet filter
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Embryonic body culturing in an all-glass microfluidic device with laser-processed 4 μm thick ultra-thin glass sheet filter

机译:在全玻璃微流控设备中用激光处理的4μm厚超薄玻璃板过滤器进行胚体培养

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摘要

In this paper, we report the development and demonstration of a method to fabricate an all-glass microfluidic cell culturing device without circulation flow. On-chip microfluidic cell culturing is an indispensable technique for cellular replacement therapies and experimental cell biology. Polydimethylsiloxane (PDMS) have become a popular material for fabricating microfluidic cell culture devices because it is a transparent, biocompatible, deformable, easy-to-mold, and gas-permeable. However, PDMS is also a chemically and physically unstable material. For example, PDMS undergoes aging easily even in room temperature conditions. Therefore, it is difficult to control long term experimental culturing conditions. On the other hand, glass is expected to be stable not only in physically but also chemically even in the presence of organic solvents. However, cell culturing still requires substance exchanges such as gases and nutrients, and so on, which cannot be done in a closed space of a glass device without circulation flow that may influence cell behavior. Thus, we introduce a filter structure with micropores onto a glass device to improve permeability to the cell culture space. Normally, it is extremely difficult to fabricate a filter structure on a normal glass plate by using a conventional fabrication method. Here, we demonstrated a method for fabricating an all-glass microfluidic cell culturing device having filters structure. The function of this all-glass culturing device was confirmed by culturing HeLa, fibroblast and ES cells. Compared with the closed glass devices without a filter structure, the numbers of cells in our device increased and embryonic bodies (EBs) were formed. This method offers a new tool in microfluidic cell culture technology for biological analysis and it expands the field of microfluidic cell culture.
机译:在本文中,我们报道了一种无循环流动的全玻璃微流细胞培养装置的制造方法的开发和演示。芯片上微流细胞培养是细胞替代疗法和实验性细胞生物学必不可少的技术。聚二甲基硅氧烷(PDMS)已成为制造微流体细胞培养装置的流行材料,因为它是透明的,生物相容性,可变形,易于成型且透气的。但是,PDMS也是化学和物理不稳定的材料。例如,PDMS即使在室温条件下也容易老化。因此,难以控制长期的实验培养条件。另一方面,期望玻璃不仅在物理上而且在化学上甚至在有机溶剂存在下也稳定。然而,细胞培养仍然需要物质交换,例如气体和营养物等,这在没有循环流动的玻璃设备的密闭空间中是不可能进行的,因为循环流动会影响细胞的行为。因此,我们将带有微孔的过滤器结构引入玻璃设备,以提高对细胞培养空间的渗透性。通常,通过使用常规的制造方法在普通玻璃板上制造过滤器结构是极其困难的。在这里,我们展示了一种制造具有过滤器结构的全玻璃微流细胞培养装置的方法。通过培养HeLa,成纤维细胞和ES细胞,证实了这种全玻璃培养装置的功能。与没有过滤器结构的封闭式玻璃设备相比,我们设备中的细胞数量增加了,并形成了胚体(EB)。该方法为微流控细胞培养技术的生物学分析提供了新的工具,并拓展了微流控细胞培养的领域。

著录项

  • 来源
    《Biomedical Microdevices》 |2017年第4期|85.1-85.10|共10页
  • 作者单位

    RIKEN, Quantitat Biol Ctr, Lab Integrated Biodevice, Suita, Osaka 5650871, Japan;

    RIKEN, Quantitat Biol Ctr, Lab Integrated Biodevice, Suita, Osaka 5650871, Japan;

    Nara Inst Sci & Technol, Grad Sch Mat Sci, Ikoma, Nara 6300192, Japan;

    Nara Inst Sci & Technol, Grad Sch Mat Sci, Ikoma, Nara 6300192, Japan;

    RIKEN, Quantitat Biol Ctr, Lab Integrated Biodevice, Suita, Osaka 5650871, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser fabrication; Glass filter; Embryonic body; ES cell;

    机译:激光加工;玻璃滤光片;胚体;ES细胞;

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