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通过钙离子与双膦酸盐功能化星形聚合物之间的络合作用形成的自愈合水凝胶。

Self-healing hydrogels formed by complexation between calcium ions and bisphosphonate-functionalized star-shaped polymers.

作者信息

Lopez-Perez Paula M, da Silva Ricardo M P, Strehin Iossif, Kouwer Paul H J, Leeuwenburgh Sander C G, Messersmith Phillip B

机构信息

Biomedical Engineering Department, Materials Science and Engineering Department, Chemical and Biological Engineering Department, Chemistry of Life Processes Institute, Institute for Bionanotechnology in Medicine, Robert H. Lurie Comprehensive Cancer Center, Northwestern University, Evanston, IL, USA.

Department of Biomaterials, Radboud University Medical Center, Nijmegen, The Netherlands.

出版信息

Macromolecules. 2017;50(21):8698-8706. doi: 10.1021/acs.macromol.7b01417. Epub 2017 Oct 19.

Abstract

Star-shaped poly(ethylene glycol) (PEG) chain termini were functionalized with alendronate to create transient networks with reversible crosslinks upon addition of calcium ions. The gelation ability of alendronate-functionalized PEG was greatly dependent on the number of arms and arm molecular weight. After mixing polymer and calcium solutions, the formed hydrogels could be cut and then brought back together without any visible interface. After 2 minutes of contact, their connection was strong enough to allow for stretching without tearing through the previous fracture surface. Oscillatory rheology showed that the hydrogels recovered between 70 and 100% of the original storage and loss modulus after rupture. Frequency sweep measurements revealed a liquid-like behavior at lower frequencies and solid-like at high frequencies. Shifting frequency curves obtained at different calcium and polymer concentrations, all data collapsed in a single common master curve. This time-concentration superposition reveals a common relaxation mechanism intrinsically connected to the calcium-bisphosphonate complexation equilibrium.

摘要

将阿仑膦酸盐功能化于星形聚乙二醇(PEG)链端,以在添加钙离子时创建具有可逆交联的瞬态网络。阿仑膦酸盐功能化PEG的凝胶化能力很大程度上取决于臂的数量和臂分子量。混合聚合物溶液和钙溶液后,形成的水凝胶可以被切割,然后重新组合在一起,没有任何可见的界面。接触2分钟后,它们的连接强度足以在不撕裂先前断裂表面的情况下进行拉伸。振荡流变学表明,水凝胶在破裂后恢复到原始储能模量和损耗模量的70%至100%之间。频率扫描测量显示,在较低频率下呈液体状行为,在较高频率下呈固体状行为。在不同钙和聚合物浓度下获得的频率偏移曲线,所有数据都汇聚在一条共同的主曲线上。这种时间-浓度叠加揭示了一种与钙-双膦酸盐络合平衡内在相关的共同松弛机制。

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