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Sustained heparin release actuator achieved from thermal and water activated shape memory hydrogels containing main-chain LC units
A sustained heparin release actuator is achieved from shape memory hydrogels containing main-chain LC. The hydrogels illustrate good biocompatibility and reinforced shape memory properties, indicating a new idea to prepare shape memory hydrogels by introducing main-chain mesogenic units into hydroge...
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Published in: | Chemical engineering journal (Lausanne, Switzerland : 1996) Switzerland : 1996), 2018-05, Vol.339, p.459-467 |
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Main Authors: | , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | A sustained heparin release actuator is achieved from shape memory hydrogels containing main-chain LC. The hydrogels illustrate good biocompatibility and reinforced shape memory properties, indicating a new idea to prepare shape memory hydrogels by introducing main-chain mesogenic units into hydrogels. The sustained heparin release hydrogel actuator will have potential application in anticoagulant scaffold.
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•Shape memory hydrogels containing main-chain LC units were investigated.•The shape memory properties were reinforced by incorporating LC units.•Sustained heparin release actuator is achieved from shape memory hydrogels.•The actuator will have potential application in anticoagulant scaffold.
In this work, liquid crystalline (LC) monomer with two n-decenoyl terminated groups was synthesized and applied into shape memory hydrogels containing main-chain LC unit by Michael addition polymerization. The liquid crystalline textures of LC monomer and hydrogels were determined by polarized optical microscopy. Thermal and water activated shape memory properties were investigated. And the shape memory properties were improved by incorporating main chain LC unit into hydrogels. The biocompatibility was evaluated by the cytotoxicity test and all these hydrogels illustrated no cytotoxicity. The good biocompatibility and reinforced shape memory properties with shape fixity ratio higher than 96% and shape recovery ratio higher than 93%, indicating a new idea to prepare shape memory hydrogels by introducing main-chain mesogenic units into hydrogels in the safe application of smart biomedical areas. Finally, water-activated actuators were prepared and could change themselves into “C” or “S” shape in water at 25 °C with about 20 min. And through in vitro heparin release of hydrogel and actuator investigation, more sustained heparin release performance of actuator was observed in our study. This indicated that the heparin loaded actuator would have potential application in anticoagulant scaffold by combining the sustained heparin delivery character and the shape self-changing character of water-activated actuators. |
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ISSN: | 1385-8947 1873-3212 |
DOI: | 10.1016/j.cej.2018.02.009 |