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用于细胞捕获与释放的基于光响应性 Janus 粒子的涂层

Light-Responsive Janus-Particle-Based Coatings for Cell Capture and Release.

作者信息

Cao Ziquan, Bian Qing, Chen Ying, Liang Fuxin, Wang Guojie

机构信息

School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.

State Key Laboratory of Polymer Physics and Chemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

ACS Macro Lett. 2017 Oct 17;6(10):1124-1128. doi: 10.1021/acsmacrolett.7b00714. Epub 2017 Sep 27.

Abstract

A robust light-responsive coating based on Janus composite particles is achieved. First, strawberry-like silica Janus particles are synthesized by the sol-gel process at a patchy emulsion interface. One side of the silica Janus particles possesses nanoscale roughness, and the other side is flat. Then, spiropyran-containing polymer brushes are grafted onto the coarse hemispherical side of the as-synthesized Janus particles, and the other flat side is modified with imidazoline groups. The light-responsive polymer brush-terminated coarse hemispherical sides direct toward the air when the Janus composite particles self-organize into a layer on the surface of epoxy resin substrate. The imidazoline groups react with the epoxy groups in the epoxy resin to form a robust smart coating. The coating can be reversibly triggered between hydrophobic and hydrophilic by UV and visible-light irradiation, which is attributed to the isomerization of spiropyran moieties. When the hydrophobic ring-closed spiropyran form is prominent, HeLa cells can be effectively captured onto the coating. After UV light irradiation, the ring-closed spiropyran form changes to the hydrophilic ring-opened zwitterionic merocyanine form, and then the captured cells are released. This work shows promising potential for engineering advanced smart biointerfaces.

摘要

制备了一种基于Janus复合粒子的坚固的光响应涂层。首先,通过溶胶-凝胶法在斑状乳液界面合成草莓状二氧化硅Janus粒子。二氧化硅Janus粒子的一侧具有纳米级粗糙度,另一侧是平坦的。然后,将含螺吡喃的聚合物刷接枝到合成的Janus粒子的粗半球形一侧,另一侧平坦面用咪唑啉基团修饰。当Janus复合粒子在环氧树脂基底表面自组装成一层时,光响应聚合物刷终止的粗半球形一侧朝向空气。咪唑啉基团与环氧树脂中的环氧基团反应形成坚固的智能涂层。通过紫外光和可见光照射,该涂层可以在疏水和亲水之间可逆地触发,这归因于螺吡喃部分的异构化。当疏水的闭环螺吡喃形式占主导时,HeLa细胞可以有效地捕获到涂层上。紫外光照射后,闭环螺吡喃形式转变为亲水的开环两性离子部花青形式,然后捕获的细胞被释放。这项工作显示了工程先进智能生物界面的广阔前景。

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