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3D可打印的分级纳米凝胶-甲基丙烯酸缩水甘油酯复合水凝胶体系

3D-Printable Hierarchical Nanogel-GelMA Composite Hydrogel System.

作者信息

Zu Guangyue, Meijer Marnix, Mergel Olga, Zhang Heng, van Rijn Patrick

机构信息

University of Groningen, University Medical Center Groningen, Department of Biomedical Engineering, W. J. Kolff Institute for Biomedical Engineering and Materials Science, A. Deusinglaan 1, 9713 AV Groningen, The Netherlands.

University of Groningen, Zernike Institute for Advanced Materials, Nijenborgh 4, 9747 AG Groningen, The Netherlands.

出版信息

Polymers (Basel). 2021 Jul 29;13(15):2508. doi: 10.3390/polym13152508.

Abstract

The strength of the extracellular matrix (ECM) is that it is hierarchical in terms of matrix built-up, matrix density and fiber structure, which allows for hormones, cytokines, and other small biomolecules to be stored within its network. The ECM-like hydrogels that are currently used do not possess this ability, and long-term storage, along with the need for free diffusion of small molecules, are generally incompatible requirements. Nanogels are able to fulfill the additional requirements upon successful integration. Herein, a stable hierarchical nanogel-gelatin methacryloyl (GelMA) composite hydrogel system is provided by covalently embedding nanogels inside the micropore network of GelMA hydrogel to allow a controlled local functionality that is not found in a homogenous GelMA hydrogel. Nanogels have emerged as a powerful tool in nanomedicine and are highly versatile, due to their simplicity of chemical control and biological compatibility. In this study, an -isopropylacrylamide-based nanogel with primary amine groups on the surface was modified with methacryloyl groups to obtain a photo-cross-linking ability similar to GelMA. The nanogel-GelMA composite hydrogel was formed by mixing the GelMA and the photo-initiator within the nanogel solution through UV irradiation. The morphology of the composite hydrogel was observed by scanning electron microscopy, which clearly showed the nanogel wrapped within the GelMA network and covering the surface of the pore wall. A release experiment was conducted to prove covalent bonding and the stability of the nanogel inside the GelMA hydrogel. In addition, 3D printability studies showed that the nanogel-GelMA composite ink is printable. Therefore, the suggested stable hierarchical nanogel-GelMA composite hydrogel system has great potential to achieve the in situ delivery and controllable release of bioactive molecules in 3D cell culture systems.

摘要

细胞外基质(ECM)的优势在于其在基质组成、基质密度和纤维结构方面具有层级性,这使得激素、细胞因子和其他小生物分子能够存储在其网络中。目前使用的类ECM水凝胶不具备这种能力,长期储存以及小分子自由扩散的需求通常是相互矛盾的要求。纳米凝胶在成功整合后能够满足这些额外要求。在此,通过将纳米凝胶共价嵌入甲基丙烯酰化明胶(GelMA)水凝胶的微孔网络中,提供了一种稳定的层级纳米凝胶-GelMA复合水凝胶系统,以实现均匀的GelMA水凝胶中所没有的可控局部功能。纳米凝胶已成为纳米医学中的一种强大工具,由于其化学控制简单和生物相容性高,具有高度的多功能性。在本研究中,对表面带有伯胺基团的基于N-异丙基丙烯酰胺的纳米凝胶进行甲基丙烯酰化修饰,以获得与GelMA相似的光交联能力。通过紫外线照射,将GelMA和光引发剂在纳米凝胶溶液中混合,形成纳米凝胶-GelMA复合水凝胶。通过扫描电子显微镜观察复合水凝胶的形态,清晰地显示出纳米凝胶包裹在GelMA网络中并覆盖孔壁表面。进行了释放实验以证明纳米凝胶在GelMA水凝胶内的共价键合和稳定性。此外,3D可打印性研究表明纳米凝胶-GelMA复合墨水是可打印的。因此,所提出的稳定层级纳米凝胶-GelMA复合水凝胶系统在3D细胞培养系统中实现生物活性分子的原位递送和可控释放方面具有巨大潜力。

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