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Visible-Light-Initiated Thiol-Acrylate Photopolymerization of Heparin-Based Hydrogels

机译:肝素基水凝胶的可见光引发的巯基丙烯酸丙烯酸酯光聚合

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An in situ heparin-based forming hydrogel that cures under visible-light is formulated using eosin Y as a photoinitiator with triethanolamine as an electron donor to initiate reaction of thiolated-heparin with acrylate-ended poly(ethylene glycol). Formulations and irradiation conditions are presented for control of heparin content (1.6 to 3.3% w/v), modulus (100-10 000 Pa), and gelation time (30-600 s). Encapsulation of 3T3 fibroblasts in the hydrogel gave over 96% viability for all conditions examined. In vitro characterization of epidermal growth factor released from the hydrogel confirmed that the growth factor remains bioactive. The ability to deliver growth factors, fast gelation kinetics under visible light, and independent control of physical and biochemical properties makes this system a promising candidate for use in regenerative medicine. In particular, irradiation conditions that achieve gelation in 150s are compatible with the stringent light exposure limits of the retina, which affords a wide safety margin for use with other tissues.
机译:使用曙红Y作为光引发剂,三乙醇胺作为电子给体,配制在可见光下固化的基于肝素的原位形成水凝胶,以引发硫醇化肝素与丙烯酸酯端基聚乙二醇的反应。介绍了用于控制肝素含量(1.6至3.3%w / v),模量(100-10 000 Pa)和胶凝时间(30-600 s)的制剂和辐照条件。在所检查的所有条件下,将3T3成纤维细胞封装在水凝胶中的生存力均超过96%。从水凝胶中释放的表皮生长因子的体外特征证实了该生长因子仍然具有生物活性。提供生长因子的能力,在可见光下的快速凝胶动力学以及对物理和生化特性的独立控制,使得该系统成为用于再生医学的有希望的候选者。尤其是,在150秒内实现凝胶化的照射条件与视网膜的严格曝光极限兼容,从而为与其他组织一起使用提供了很大的安全裕度。

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