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Wrinkling Non-Spherical Particles and Its Application in Cell Attachment Promotion

机译:起皱的非球形颗粒及其在促进细胞附着中的应用

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摘要

Surface wrinkled particles are ubiquitous in nature and present in different sizes and shapes, such as plant pollens and peppercorn seeds. These natural wrinkles provide the particles with advanced functions to survive and thrive in nature. In this work, by combining flow lithography and plasma treatment, we have developed a simple method that can rapidly create wrinkled non-spherical particles, mimicking the surface textures in nature. Due to the oxygen inhibition in flow lithography, the non-spherical particles synthesized in a microfluidic channel are covered by a partially cured polymer (PCP) layer. When exposed to plasma treatment, this PCP layer rapidly buckles, forming surface-wrinkled particles. We designed and fabricated various particles with desired shapes and sizes. The surfaces of these shapes were tuned to created wrinkle morphologies by controlling UV exposure time and the washing process. We further demonstrated that wrinkles on the particles significantly promoted cell attachment without any chemical modification, potentially providing a new route for cell attachment for various biomedical applications.
机译:表面起皱的颗粒本质上无处不在,并且以不同的大小和形状存在,例如植物花粉和胡椒种子。这些自然的皱纹为颗粒提供了先进的功能,可以在自然环境中生存和繁荣。在这项工作中,通过结合流式光刻和等离子处理,我们开发了一种简单的方法,该方法可以快速创建起皱的非球形颗粒,从而模仿自然界中的表面纹理。由于流式光刻中的氧气抑制作用,在微流体通道中合成的非球形颗粒被部分固化的聚合物(PCP)层覆盖。当进行等离子体处理时,该PCP层迅速弯曲,形成表面起皱的颗粒。我们设计和制造了具有所需形状和尺寸的各种颗粒。通过控制紫外线照射时间和洗涤过程,可以将这些形状的表面调整为可产生皱纹的形态。我们进一步证明,颗粒上的皱纹无需任何化学修饰即可显着促进细胞附着,从而可能为各种生物医学应用提供新的细胞附着途径。

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