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β-氨基酸酯合成水凝胶:易于获取且操作简单的生物材料网络。

β-Aminoacrylate Synthetic Hydrogels: Easily Accessible and Operationally Simple Biomaterials Networks.

机构信息

Koch Institute for Integrative Cancer Research, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

出版信息

Angew Chem Int Ed Engl. 2018 Dec 3;57(49):16026-16029. doi: 10.1002/anie.201808452. Epub 2018 Nov 8.

Abstract

The development of new material platforms can improve our ability to study biological processes. Here, we developed a water-compatible variant of a click-like polymerization between alkynoates and secondary amines to form β-aminoacrylate synthetic polyethylene glycol (PEG) based hydrogels. These materials are easy to access-PEG alkynoate was synthesized on a 100 gram scale and the amines were available commercially; these materials are also operationally simple to formulate-gel formation occurred upon simple mixing of precursor solutions without the need for initiators, catalysts, nor specialized equipment. Three-dimensional cell culture experiments also indicated cytocompatibility of these gels with >90 % viability retained in THP-1 and NIH/3T3 cells after 72 hours in culture. This hydrogel system therefore represents an alternative platform to other click and click-like hydrogels with improved accessibility and user-friendliness for biomaterials application.

摘要

新型材料平台的发展可以提高我们研究生物过程的能力。在这里,我们开发了一种水兼容的点击类似聚合反应,用于形成β-氨基丙烯酸酯合成的聚乙二醇(PEG)基水凝胶,其中炔酸酯和仲胺反应。这些材料易于获取-PEG 炔酸酯可以在 100 克规模上合成,胺可以从商业途径获得;这些材料的配方也很简单-只需将前体溶液简单混合即可形成凝胶,无需引发剂、催化剂或专用设备。三维细胞培养实验还表明,这些凝胶具有细胞相容性,在培养 72 小时后,THP-1 和 NIH/3T3 细胞的存活率超过 90%。因此,与其他点击和点击类似水凝胶相比,该水凝胶系统具有更好的生物材料应用的可及性和易用性,代表了一种替代平台。

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