首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Fabrication, chemical modification, and topographical patterning of reactive gels assembled from azlactone-functionalized polymers and a diamine
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Fabrication, chemical modification, and topographical patterning of reactive gels assembled from azlactone-functionalized polymers and a diamine

机译:从唑酮官能化聚合物和二胺组装的反应性凝胶的制造,化学改性和地形图案化

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摘要

The work reported here demonstrates an approach to the fabrication of chemically reactive and topographically patterned hydrogels using the azlactone-functionalized polymer poly(2-vinyl-4,4'-dimethylazlactone) (PVDMA) and the hydrophilic diamine Jeffamine (R). Gels were initially assembled in DMSO but can be subsequently transferred into aqueous media to form hydrogels. Spectroscopic characterization of assembled gels demonstrated that variation in the stoichiometric ratio of azlactones to amines during gel synthesis permits control over the extent of crosslinking in the gels. Residual azlactones not consumed during crosslinking can be exploited to further functionalize these gels with hydrophobic, hydrophilic, and macromolecular amines that influence the physicochemical properties of these materials in aqueous solvents. The surface and bulk of these gels can be differentially functionalized (i.e., different functional groups on the gel surface relative to the bulk) by taking advantage of different rates of diffusion of macromolecular amines versus small molecule amines into assembled gels. Finally, these azlactone-functionalized gels can be topographically patterned with microwell arrays using a replica molding technique and chemically modified postfabrication with amine nucleophiles. This reactive approach to the fabrication of topographically patterned and chemically functionalized hydrogels offers a straightforward method for the rapid synthesis of micropatterned scaffolds of interest in a broad range of applications. (c) 2017 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2017, 55, 3185-3194
机译:这里报道的工作证明了使用唑酮官能化的聚合物聚(2-乙烯基-4,4'-二甲基唑酯)(PVDMA)和亲水二胺jeffamine(R)制备化学反应性和拓扑图案化水凝胶的方法。最初在DMSO中组装凝胶,但随后可以转移到水性介质中以形成水凝胶。组装凝胶的光谱表征证明,在凝胶合成期间,唑克内酯与胺的化学计量比的变化允许控制凝胶中交联的程度。可以利用交联期间不消耗的残留的唑酮,以进一步用疏水,亲水和大分子胺进一步挥发这些凝胶,其影响这些材料在水性溶剂中的物质化学性质。通过利用大分子胺与小分子胺的不同扩散速率,可以差异官能化(即,凝胶表面上的不同官能团的不同官能团)可以差异官能化(即,凝胶表面上的不同官能团)通过进入组装凝胶。最后,这些Azlactone官能化凝胶可以使用微孔阵列使用微孔阵列进行地拓扑图案化,并用胺亲核试剂化学改性的后休息。这种对拓扑图案化和化学官能化的水凝胶制备的反应性方法提供了一种用于快速合成在广泛的应用中的微型理由的脚手架的快速方法的直接方法。 (c)2017 Wiley期刊,Inc.Minod。 SCI。,A部分:polym。化学。 2017,55,3185-3194

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