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首页> 外文期刊>Lab on a chip >Extracellular-controlled breast cancer cell formation and growth using non-UV patterned hydrogels via optically-induced electrokinetics
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Extracellular-controlled breast cancer cell formation and growth using non-UV patterned hydrogels via optically-induced electrokinetics

机译:细胞外控制的乳腺癌细胞的形成和生长,通过光诱导的电动学,使用非紫外模式的水凝胶

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The culturing of cancer cells on micropatterned substrates can provide insight into the factors of the extracellular environment that enable the control of cell growth. We report here a novel non-UV-based technique to quickly micropattern a poly-(ethylene) glycol diacrylate (PEGDA)-based hydrogel on top of modified glass substrates, which were then used to control the growth patterns of breast cancer cells. Previously, the fabrication of micropatterned substrates required relatively complicated steps, which made it impractical for researchers to rapidly and systematically investigate the effects of different cell growth patterns. The technique presented herein operates on the principle of optically-induced electrokinetics (OEKs) and uses computer-generated projection light patterns to dynamically pattern the hydrogel on a hydrogenated amorphous silicon (a-Si:H) thin-film, atop an indium tin oxide (ITO) glass substrate. This technique allows us to pattern lines, circles, pentagons, and more complex shapes in the hydrogel with line widths below 3 μm and thicknesses of up to 6 μm within 8 s by simply controlling the projected illumination pattern and applying an appropriate AC voltage between the two ITO glass substrates. After separating the glass substrates to expose the patterned hydrogel, we experimentally demonstrate that MCF-7 breast cancer cells will adhere to the bare a-Si:H surface, but not to the hydrogel patterned in various geometric shapes and sizes. Theoretical analysis and finite-element model simulations reveal that the dominant OEK forces in our technique are the dielectrophoresis (DEP) force and the electro-osmosis force, which enhance the photo-initiated cross-linking reaction in the hydrogel. Our preliminary cultures of breast cancer cells demonstrate that this reported technique could be applied to effectively confine the growth of cancer cells on a-Si:H surfaces and affect individual cell geometry during their growth.
机译:在微图案底物上培养癌细胞可以提供对细胞外环境中能够控制细胞生长的因素的了解。我们在这里报告了一种新颖的非基于紫外线的技术,可以在改性玻璃基板上快速微图案化基于聚乙二醇二丙烯酸酯(PEGDA)的水凝胶,然后将其用于控制​​乳腺癌细胞的生长方式。以前,微图案化基板的制造需要相对复杂的步骤,这使得研究人员无法快速而系统地研究不同细胞生长方式的影响。本文介绍的技术基于光感应电动学(OEK)原理运行,并使用计算机生成的投影光图案在铟锡氧化物上方的氢化非晶硅(a-Si:H)薄膜上动态图案化水凝胶(ITO)玻璃基板。这项技术使我们能够在8 s内对水凝胶中的线宽,圆形,五边形和更复杂的形状进行图案化,线宽小于3μm,厚度最大为6μm,只需简单地控制投影照明图案并在水凝胶之间施加适当的AC电压即可。两个ITO玻璃基板。分离玻璃基板以暴露出图案化的水凝胶后,我们实验证明MCF-7乳腺癌细胞将粘附到裸露的a-Si:H表面,而不粘附到以各种几何形状和尺寸进行图案化的水凝胶。理论分析和有限元模型仿真表明,在我们的技术中,主要的OEK力是介电电泳(DEP)力和电渗力,它们增强了水凝胶中光引发的交联反应。我们对乳腺癌细胞的初步培养表明,该报道的技术可用于有效地限制a-Si:H表面上癌细胞的生长,并在其生长过程中影响单个细胞的几何形状。

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