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光引发炔基-叠氮点击和自由基交联反应用于 PEG 水凝胶的图案化。

Photoinitiated alkyne-azide click and radical cross-linking reactions for the patterning of PEG hydrogels.

机构信息

Department of Chemical and Biomolecular Engineering, The University of Melbourne , Parkville, Victoria, 3010, Australia.

出版信息

Biomacromolecules. 2012 Mar 12;13(3):889-95. doi: 10.1021/bm201802w. Epub 2012 Feb 14.

Abstract

The photolithographical patterning of hydrogels based solely on the surface immobilization and cross-linking of alkyne-functionalized poly(ethylene glycol) (PEG-tetraalkyne) is described. Photogenerated radicals as well as UV absorption by a copper chelating ligand result in the photochemical redox reduction of Cu(II) to Cu(I). This catalyzes the alkyne-azide click reaction to graft the hydrogels onto an azide-functionalized plasma polymer (N(3)PP) film. The photogenerated radicals were also able to abstract hydrogen atoms from PEG-tetraalkyne to form poly(α-alkoxy) radicals. These radicals can initiate cross-linking by addition to the alkynes and intermolecular recombination to form the PEG hydrogels. Spatially controlling the two photoinitiated reactions by UV exposure through a photomask leads to surface patterned hydrogels, with thicknesses that were tunable from tens to several hundreds of nanometers. The patterned PEG hydrogels (ca. 60 μm wide lines) were capable of resisting the attachment of L929 mouse fibroblast cells, resulting in surfaces with spatially controlled cell attachment. The patterned hydrogel surface also demonstrated spatially resolved chemical functionality, as postsynthetic modification of the hydrogels was successfully carried out with azide-functionalized fluorescent dyes via subsequent alkyne-azide click reactions.

摘要

仅通过炔基功能化聚乙二醇(PEG-四炔)的表面固定和交联,描述了水凝胶的光致光刻图案化。光生自由基以及铜螯合配体的紫外吸收导致 Cu(II)光化学氧化还原还原为 Cu(I)。这催化了炔基-叠氮点击反应,将水凝胶接枝到叠氮功能化等离子体聚合物(N(3)PP)膜上。光生自由基还能够从 PEG-四炔中提取氢原子,形成聚(α-烷氧基)自由基。这些自由基可以通过与炔烃的加成和分子间重组来引发交联,形成 PEG 水凝胶。通过光掩模通过紫外光照射空间控制这两个光引发反应,导致表面图案化水凝胶,其厚度可从几十到几百纳米可调。图案化的 PEG 水凝胶(约 60 μm 宽的线)能够抵抗 L929 小鼠成纤维细胞的附着,从而得到具有空间控制细胞附着的表面。图案化水凝胶表面还表现出空间分辨的化学功能,因为通过随后的炔基-叠氮点击反应,可以成功地用叠氮功能化荧光染料对水凝胶进行后合成修饰。

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