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Surface-Acoustic-Wave (SAW)-Driven Device for Dynamic Cell Cultures

机译:用于动态细胞培养物的表面声波(SAW)驱动装置

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摘要

In the last few decades, new types of cell cultures have been introduced to provide better cell survival and development, with micro- and nanoenvironmental physicochemical conditions aimed at mimicking those present in vivo. However, despite the efforts made, the systems available to date are often difficult to replicate and use. Here, an easy-to-use surface-acoustic-wave (SAW)-based platform is presented for realizing dynamic cell cultures that is compatible with standard optical microscopes, incubators, and cell-culture dishes. The SAW chip is coupled to a standard Petri dish via a polydimethylsiloxane (PDMS) disc and consists of a lithium niobate (LN) substrate on which gold interdigital transducers (IDTs) are patterned to generate the SAWs and induce acoustic streaming in the dish. SAW excitation is verified and characterized by laser Doppler vibrometry, and the fluid dynamics is studied by microparticle image velocimetry (mu PIV). Heating is measured by an infrared (IR) thermal camera. We finally tested this device with the U-937 monocyte cell line for viability and proliferation and cell-morphological analysis. The data demonstrate that it is possible to induce significant fluid recirculation within the Petri dish while maintaining negligible heating. Remarkably, cell proliferation in this condition was enhanced by 36 +/- 12% with respect to those of standard static cultures. Finally, we show that cell death does not increase and that cell morphology is not altered in the presence of SAWs. This device is the first demonstration that SAW-induced streaming can mechanically improve cell proliferation and further supports the great versatility and biocompatibility of the SAW technology for cell manipulation.
机译:在过去几十年中,已经引入了新型的细胞培养物,以提供更好的细胞存活和发育,旨在模拟体内存在的微型和纳米环境的物理化学病症。但是,尽管所做的努力,可用的系统通常难以复制和使用。这里,提出了一种易于使用的表面声波(SAW)的平台,用于实现与标准光学显微镜,培养箱和细胞培养皿相容的动态细胞培养物。锯芯片通过聚二甲基硅氧烷(PDMS)盘联接到标准培养皿,并且由铌酸锂(LN)衬底组成,在该铌酸锂(LN)基板上,金叉指式换能器(IDTS)被图案化以产生锯并在盘中诱导声学流。通过激光多普勒振动器验证并表征SAW激发,并通过微粒图像速度(MU PIV)研究流体动力学。通过红外线(IR)热相机测量加热。我们最终将该装置与U-937单核细胞细胞系进行了活性和增殖和细胞形态分析。数据表明,可以在培养皿内诱导显着的流体再循环,同时保持可忽略的加热。值得注意的是,对于标准静态培养物的那些,该病症中的细胞增殖增强了36 +/- 12%。最后,我们表明细胞死亡不会增加,并且细胞形态在锯的存在下没有改变。该装置是第一次演示,锯诱导的流动可以机械地改善细胞增殖,并进一步支持SAW技术进行细胞操纵的巨大通用性和生物相容性。

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  • 来源
    《Analytical chemistry》 |2018年第12期|共8页
  • 作者单位

    CNR Ist Nanosci NEST Piazza San Silvestro 12 I-56127 Pisa Italy;

    CNR Ist Nanosci NEST Piazza San Silvestro 12 I-56127 Pisa Italy;

    CNR Ist Nanosci NEST Piazza San Silvestro 12 I-56127 Pisa Italy;

    CNR Ist Nanosci NEST Piazza San Silvestro 12 I-56127 Pisa Italy;

    Osped Versilia USL Toscana Nordovest Ctr Procreaz Assistita I-55043 Viareggio Italy;

    CNR Ist Nanosci NEST Piazza San Silvestro 12 I-56127 Pisa Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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