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采用近红外光的硫醇-丙烯酸盐聚乙二醇水凝胶的合成。

Transdermal thiol-acrylate polyethylene glycol hydrogel synthesis using near infrared light.

机构信息

School of Materials Science and Engineering, Gwangju Institute of Science and Engineering, Gwangju 500-712, Republic of Korea.

出版信息

Nanoscale. 2016 Aug 7;8(29):14213-21. doi: 10.1039/c6nr01956k. Epub 2016 Jul 8.

Abstract

Light-induced polymerization has been widely applied for hydrogel synthesis, which conventionally involves the use of ultraviolet or visible light to activate a photoinitiator for polymerization. However, with these light sources, transdermal gelation is not efficient and feasible due to their substantial interactions with biological systems, and thus a high power is required. In this study, we used biocompatible and tissue-penetrating near infrared (NIR) light to remotely trigger a thiol-acrylate reaction for efficient in vivo gelation with good controllability. Our gelation system includes gold nanorods as a photothermal agent, a thermal initiator, diacrylate polyethylene glycol (PEG), and thiolated PEG. Irradiation with a low-power NIR laser (0.3 W cm(-2)) could induce gelation via a mixed-mode reaction with a small increase in temperature (∼5 °C) under the optimized conditions. We also achieved successful transdermal gelation via the NIR-assisted photothermal thiol-acryl reactions. This new type of NIR-assisted thiol-acrylate polymerization provides new opportunities for in situ hydrogel formation for injectable hydrogels and delivery of drugs/cells for various biomedical applications.

摘要

光引发聚合已广泛应用于水凝胶合成,其通常涉及使用紫外光或可见光来激活光引发剂以引发聚合。然而,由于这些光源与生物系统的大量相互作用,经皮凝胶化的效率和可行性并不高,因此需要高功率。在这项研究中,我们使用生物相容性和组织穿透性的近红外(NIR)光远程触发硫醇-丙烯酰基反应,以实现高效的体内凝胶化,具有良好的可控性。我们的凝胶化系统包括金纳米棒作为光热剂、热引发剂、二丙烯酸酯聚乙二醇(PEG)和巯基化 PEG。在优化条件下,用低功率近红外激光(0.3 W cm(-2))照射可以通过混合模式反应诱导凝胶化,同时温度仅略有升高(约 5°C)。我们还通过 NIR 辅助光热硫醇-丙烯酰基反应实现了成功的经皮凝胶化。这种新型的 NIR 辅助硫醇-丙烯酰基聚合为原位水凝胶形成提供了新的机会,适用于各种生物医学应用的可注射水凝胶和药物/细胞的递送。

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