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Multidomain Hybrid Hydrogels: Spatially Resolved Photopatterned Synthetic Nanomaterials Combining Polymer and Low-Molecular Weight Gelators

机译:多域混合水凝胶:结合聚合物和低分子量胶凝剂的空间分辨光图案化合成纳米材料。

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摘要

A simple approach to a patterned multidomain gel is reported, combining a pH-responsive low-molecular-weight gelator (LMWG) and a photoinducible polymer gelator (PG). Using SEM (scanning electron microscopy), NMR spectroscopy, and CD, we demonstrate that self-assembly of the LMWG network occurs in the presence of the PG network, but that the PG has an influence on LMWG assembly kinetics and morphology. The application of a mask during photoirradiation allows patterning of the PG network; we define the resulting system as a multidomain gelone domain consists of a LMWG, whereas the patterned region contains both LMWG and PG networks. The different domains have different properties with regard to diffusion of small molecules, and both gelator networks can control diffusion rates to give systems capable of controlled release. Such materials may have future applications in multikinetic control of drug release, or as patterned scaffolds for directed tissue engineering.
机译:报道了一种将多域凝胶图样化的简单方法,该方法结合了pH响应性低分子量胶凝剂(LMWG)和光诱导聚合物胶凝剂(PG)。使用SEM(扫描电子显微镜),NMR光谱和CD,我们证明了LMWG网络的自组装在PG网络的存在下发生,但PG对LMWG组装动力学和形态有影响。在光照射过程中使用掩模可以对PG网络进行构图;我们将生成的系统定义为由LMWG组成的多域Gelone域,而图案化区域包含LMWG和PG网络。就小分子的扩散而言,不同的域具有不同的属性,并且两个胶凝剂网络都可以控制扩散速率,从而提供能够控制释放的系统。这样的材料可能在药物释放的多动力学控制中具有未来的应用,或作为用于定向组织工程的构图支架。

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