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Biocompatible macro-initiators controlling radical retention in microfluidic on-chip photo-polymerization of water-in-oil emulsions.生物相容的大分子引发剂控制水包油乳液的微流控芯片光聚合中的自由基保留。
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Collagen cross-linking using rose bengal and green light to increase corneal stiffness.使用孟加拉玫瑰红和绿光进行胶原交联,以增加角膜硬度。
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Visible-light-mediated thiol-ene hydrogelation using eosin-Y as the only photoinitiator.使用曙红 Y 作为唯一的光引发剂实现可见光介导的硫醇-烯基水凝胶化。
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通过可见光诱导的硫醇-烯反应形成透明质酸水凝胶。

-forming hyaluronic acid hydrogel through visible light-induced thiol-ene reaction.

作者信息

Lee Hyun Jong, Fernandes-Cunha Gabriella M, Myung David

机构信息

Byers Eye Institute at Stanford University School of Medicine, Palo Alto, California 94303, USA.

VA Palo Alto Health Care System, Palo Alto, California 94304, USA.

出版信息

React Funct Polym. 2018 Oct;131:29-35. doi: 10.1016/j.reactfunctpolym.2018.06.010. Epub 2018 Jul 2.

DOI:10.1016/j.reactfunctpolym.2018.06.010
PMID:32256185
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7111509/
Abstract

Here we present hyaluronic acid (HA) hydrogels crosslinked via thiol-ene reaction initiated by visible blue light exposure in the presence of riboflavin phosphate (RFP). The gelation procedure is rapid and proceeds as effectively with exposure to blue light as it does with UV light. We successfully initiated the thiol-ene reaction by RFP with blue light, which triggered gelation that proceeds over about 5 min at 36 °C after an initial small change in modulus upon light exposure. Gel transparency was also evaluated, and the HA gel exhibited over 80% transmittance in the visible spectrum. The degradation and protein release kinetics of the photo-crosslinked HA hydrogel are also presented. The capacity of blue light to initiate thiol-ene reaction was equal to or more effective than UV light of the same energy. The cytocompatibility of hydrogels was evaluated using corneal fibroblasts, and the light-induced fabrication procedure and resultant gel materials did not affect cell viability. The results indicate that an RFP-based, BL-initiated photo-reaction to gelate HA may be an effective and promising modality for applications where gelation is desired.

摘要

在此,我们展示了通过在磷酸核黄素(RFP)存在下可见光蓝光照射引发的硫醇-烯反应交联的透明质酸(HA)水凝胶。凝胶化过程迅速,在蓝光照射下与紫外线照射一样有效。我们成功地通过RFP与蓝光引发了硫醇-烯反应,在光照后模量最初有一个小变化后,在36℃下约5分钟内引发凝胶化。还评估了凝胶透明度,HA凝胶在可见光谱中表现出超过80%的透光率。还展示了光交联HA水凝胶的降解和蛋白质释放动力学。蓝光引发硫醇-烯反应的能力与相同能量的紫外线相当或更有效。使用角膜成纤维细胞评估了水凝胶的细胞相容性,光诱导制备过程和所得凝胶材料不影响细胞活力。结果表明,基于RFP的蓝光引发的光反应使HA凝胶化可能是一种在需要凝胶化的应用中有效且有前景的方式。