Bioionic Liquid Conjugation as Universal Approach To Engineer Hemostatic Bioadhesives

被引:51
作者
Krishnadoss, Vaishali [1 ]
Melillo, Atlee [3 ]
Kanjilal, Baishali [1 ]
Hannah, Tyler [2 ]
Ellis, Ethan [2 ]
Kapetanakis, Andrew [2 ]
Hazelton, Joshua [3 ]
Roman, Janika San [3 ]
Masoumi, Arameh [1 ]
Leijten, Jeroen [4 ]
Noshadi, Iman [1 ]
机构
[1] Rowan Univ, Dept Chem Engn, Glassboro, NJ 08028 USA
[2] Rowan Univ, Dept Biomed Engn, Glassboro, NJ 08028 USA
[3] Rowan Univ, Cooper Med Sch, Camden, NJ 08103 USA
[4] Univ Twente, Dev Bioengn DBE, NL-7522 NB Enschede, Netherlands
基金
美国国家科学基金会;
关键词
Bioadhesives; Hemostatic; Bioionic liquid; Hydrogels; Traumatic injury; TEMPERATURE IONIC LIQUIDS; CHOLINE; BLOOD; ADHESIVES; PHOSPHATIDYLCHOLINE; STRATEGIES; HYDROGELS; SEALANT; FILMS;
D O I
10.1021/acsami.9b08757
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Adhesion to wet and dynamic surfaces is vital for many biomedical applications. However, the development of effective tissue adhesives has been challenged by the required combination of properties, which includes mechanical similarity to the native tissue, high adhesion to wet surfaces, hemostatic properties, biodegradability, high bio-compatibility, and ease of use. In this study, we report a novel bioinspired design with bioionic liquid (BIL) conjugated polymers to engineer multifunctional highly sticky, biodegradable, biocompatible, and hemostatic adhesives. Choline-based BIL is a structural precursor of the phospholipid bilayer in the cell membrane. We show that the conjugation of choline molecules to naturally derived polymers (i.e., gelatin) and synthetic polymers (i.e., polyethylene glycol) significantly increases their adhesive strength and hemostatic properties. Synthetic or natural polymers and BILs were mixed at room temperature and cross-linked via visible light photopolymerization to make hydrogels with tunable mechanical, physical, adhesive, and hemostatic properties. The hydrogel adhesive exhibits a close to 50% decrease in the total blood volume loss in tail cut and liver laceration rat animal models compared to the control. This technology platform for adhesives is expected to have further reaching application vistas from tissue repair to wound dressings and the attachment of flexible electronics.
引用
收藏
页码:38373 / 38384
页数:12
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