生物粘附
材料科学
组织粘连
聚酯纤维
胶粘剂
生物相容性
预聚物
生物材料
双吖丙啶
弹性体
共价键
聚合物
纳米技术
化学工程
高分子化学
生物医学工程
粘附
有机化学
化学
复合材料
光化学
图层(电子)
聚氨酯
工程类
冶金
医学
作者
Ivan Djordjevic,Oleksandr Pokholenko,Ankur Harish Shah,Gautama Wicaksono,Lluı́s Blancafort,John V. Hanna,Samuel J. Page,Himansu Sekhar Nanda,Chee Bing Ong,Sze Ryn Chung,Andrew Yuan Hui Chin,Duncan Angus McGrouther,Muntasir Mannan Choudhury,Fang Li,Jonathan Shunming Teo,Lui Shiong Lee,Terry W. J. Steele
出处
期刊:Biomaterials
[Elsevier BV]
日期:2020-07-11
卷期号:260: 120215-120215
被引量:23
标识
DOI:10.1016/j.biomaterials.2020.120215
摘要
Driven by the clinical need for a strong tissue adhesive with elastomeric material properties, a departure from legacy crosslinking chemistries was sought as a multipurpose platform for tissue mending. A fresh approach to bonding wet substrates has yielded a synthetic biomaterial that overcomes the drawbacks of free-radical and nature-inspired bioadhesives. A food-grade liquid polycaprolactone grafted with carbene precursors yields CaproGlu. The first-of-its-kind low-viscosity prepolymer is VOC-free and requires no photoinitiators. Grafted diazirine end-groups form carbene diradicals upon low energy UVA (365 nm) activation that immediately crosslink tissue surfaces; no pre-heating or animal-derived components are required. The hydrophobic polymeric environment enables metastable functional groups not possible in formulations requiring solvents or water. Activated diazirine within CaproGlu is uniquely capable of crosslinking all amino acids, even on wet tissue substrates. CaproGlu undergoes rapid liquid-to-biorubber transition within seconds of UVA exposure-features not found in any other bioadhesive. The exceptional shelf stability of CaproGlu allows gamma sterilization with no change in material properties. CaproGlu wet adhesiveness is challenged against current unmet clinical needs: anastomosis of spliced blood vessels, anesthetic muscle patches, and human platelet-mediating coatings. The versatility of CaproGlu enables both organic and inorganic composites for future bioadhesive platforms.
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