表面能诱导的聚合物纳米结构图像化用于癌症诊断和治疗

W. Hu, F. Yoon, A. Crouch, Li Tao, H. Hillebrenner, J. S. Guthi, Moon J. Kim, Jinming Gao
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引用次数: 1

摘要

我们开发了一种新的简单方法来绘制离散聚合物微纳米结构。通过光刻和选择性表面处理对硅模板进行图案化,使其具有空间不同的表面能,从而诱导自旋涂覆聚合物层的微流体自图案化。利用该方法对生物相容性二嵌段共聚物和SU8进行图图化,形成单分散和形状特定的微结构。在制作图案化后,这些颗粒被从模板表面带到水溶液中。然后对模板进行清理和重用。这些独立的聚合物颗粒具有均匀和精确的球形形态,可作为生物医学应用的药物和显像剂的载体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface energy induced patterning of polymer nanostructures for cancer diagnosis and therapy
We have developed a new simple method to pattern discrete polymer micro and nanostructures. A Si template is patterned by lithography and selective surface treatment to have spatially different surface energies that induce microfluidic self-patterning of a spincoated polymer layer. Biocompatible diblock co-polymer and SU8 are patterned using this method to form monodisperse and shape specific microstructures. After patterning, these particles are lifted off the template surface into aqueous solution. The template is then cleaned and re-used. These freestanding polymer particles with uniform and precise spherical morphology can be used as carriers for drug and imaging agents for biomedical applications.
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