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通过控制光交联条件来调整明胶甲基丙烯酰基水凝胶的机械性能。

Tailoring the mechanical properties of gelatin methacryloyl hydrogels through manipulation of the photocrosslinking conditions.

机构信息

ARC Centre of Excellence for Electromaterials Science, Intelligent Polymer Research Institute, Innovation Campus, University of Wollongong, NSW 2522, Australia.

出版信息

Soft Matter. 2018 Mar 14;14(11):2142-2151. doi: 10.1039/c7sm02187a.

Abstract

Photo-crosslinkable hydrogels, in particular gelatin methacryloyl (GelMa), are gaining increasing importance in biofabrication and tissue engineering. While GelMa is often described as mechanically 'tunable', clear relationships linking the photocrosslinking conditions to reaction rates, and the resulting mechanical properties, have not been described. Meanwhile the conditions employed in the literature are disparate, and difficult to compare. In this work, in situ rheological measurements were used to quantify the relative rate of reaction of GelMa hydrogels with respect to light intensity, exposure time and photo-initiator concentration. In addition the UV degradation of the photo-initiator Irgacure 2959 was measured by UV-vis spectroscopy, and used to estimate the rate of free radical production as a function of light exposure. Using these data an expression was derived which predicts the mechanical properties of GelMa hydrogels produced across a wide range of crosslinking conditions. The model was validated through fabrication of a GelMa gradient which matched predicted properties. Human mesenchymal stem cells encapsulated in crosslinked GelMa exhibited high (>90%) viability post encapsulation, however metabolic activity over one week was influenced by the intensity of light used during crosslinking. The expressions described may be used to aid rational choices of GelMa photocrosslinking conditions, especially in cell encapsulation experiments where minimising the cytotoxic elements in the reaction is a priority.

摘要

光交联水凝胶,特别是明胶甲基丙烯酰(GelMa),在生物制造和组织工程中变得越来越重要。虽然 GelMa 通常被描述为机械“可调”,但将光交联条件与反应速率以及由此产生的机械性能联系起来的明确关系尚未描述。同时,文献中采用的条件差异很大,难以比较。在这项工作中,原位流变测量用于定量 GelMa 水凝胶相对于光强度、暴露时间和光引发剂浓度的相对反应速率。此外,通过紫外可见光谱测量 Irgacure 2959 光引发剂的紫外降解,并用于估计自由基产生速率作为光暴露的函数。使用这些数据推导出一个表达式,该表达式预测了在广泛的交联条件下生产的 GelMa 水凝胶的机械性能。通过制造与预测性能匹配的 GelMa 梯度来验证该模型。包埋在交联 GelMa 中的人骨髓间充质干细胞在包埋后表现出高(>90%)活力,然而,在交联过程中使用的光强度会影响一周内的代谢活性。所描述的表达式可用于辅助 GelMa 光交联条件的合理选择,特别是在细胞包封实验中,其中反应中的细胞毒性元素最小化是优先考虑的。

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