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基于PF127-PEG的复合水凝胶中的结构-动力学相关性;内聚/疏水相互作用决定相态和流变学,并确定胶束浓度在控制3D挤出可印刷性中的作用。

Structure-dynamics correlations in composite PF127-PEG-based hydrogels; cohesive/hydrophobic interactions determine phase and rheology and identify the role of micelle concentration in controlling 3D extrusion printability.

作者信息

Singh Krutika, Wychowaniec Jacek K, Edwards-Gayle Charlotte J C, Reynaud Emmanuel G, Rodriguez Brian J, Brougham Dermot F

机构信息

School of Chemistry, University College Dublin, Belfield, Dublin 4, Ireland.

School of Chemistry, University College Dublin, Belfield, Dublin 4, Ireland; AO Research Institute Davos, Clavadelerstrasse 8, 7270, Davos, Switzerland.

出版信息

J Colloid Interface Sci. 2024 Apr 15;660:302-313. doi: 10.1016/j.jcis.2023.12.151. Epub 2024 Jan 12.

DOI:10.1016/j.jcis.2023.12.151
PMID:38244497
Abstract

A library of composite polymer networks (CPNs) were formed by combining Pluronic F127, as the primary gelator, with a range of di-acrylate functionalised PEG polymers, which tune the rheological properties and provide UV crosslinkability. A coarse-grained sol-gel room temperature phase diagram was constructed for the CPN library, which identifies PEG-dependent disruption of micelles as leading to liquefication. Small angle X-ray scattering and rheological measurements provide detailed insight into; (i) micelle-micelle ordering; (ii) micelle-micelle disruption, and; (iii) acrylate-micelle disruption; with contributions that depend on composition, including weak PEG chain length and end group effects. The influence of composition on 3D extrusion printability through modulation of the cohesive/hydrophobic interactions was assessed. It was found that only micelle content provides consistent changes in printing fidelity, controlled largely by printing conditions (pressure and feed rate). Finally, the hydrogels were shown to be UV photo-crosslinkable, which further improves fidelity and structural integrity, and usefully reduces the mesh size. Our results provide a guide for design of 3D-printable CPN inks for future biomedical applications.

摘要

通过将作为主要凝胶剂的普朗尼克F127与一系列二丙烯酸酯官能化的聚乙二醇(PEG)聚合物相结合,形成了一个复合聚合物网络(CPN)库,这些聚合物可调节流变学性质并提供紫外线可交联性。为该CPN库构建了一个粗粒度的溶胶-凝胶室温相图,该相图确定了PEG依赖性的胶束破坏会导致液化。小角X射线散射和流变学测量提供了对以下方面的详细洞察:(i)胶束-胶束有序排列;(ii)胶束-胶束破坏,以及;(iii)丙烯酸酯-胶束破坏;其贡献取决于组成,包括PEG链长度和端基效应较弱。通过调节内聚/疏水相互作用评估了组成对3D挤出可打印性的影响。发现只有胶束含量能在打印保真度上提供一致的变化,这在很大程度上受打印条件(压力和进料速率)控制。最后,这些水凝胶被证明是紫外线光可交联的,这进一步提高了保真度和结构完整性,并有效地减小了网格尺寸。我们的结果为未来生物医学应用中3D可打印CPN油墨的设计提供了指导。

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