Influence of Network Topology on the Viscoelastic Properties of Dynamically Crosslinked Hydrogels
Biological materials combine stress relaxation and self-healing with non-linear stress-strain responses. These characteristic features are a direct result of hierarchical self-assembly, which often results in fiber-like architectures. Even though structural knowledge is rapidly increasing, it has re...
المؤلفون الرئيسيون: | Emilia M. Grad, Isabell Tunn, Dion Voerman, Alberto S. de Léon, Roel Hammink, Kerstin G. Blank |
---|---|
التنسيق: | مقال |
اللغة: | English |
منشور في: |
Frontiers Media S.A.
2020-06-01
|
سلاسل: | Frontiers in Chemistry |
الموضوعات: | |
الوصول للمادة أونلاين: | https://www.frontiersin.org/article/10.3389/fchem.2020.00536/full |
مواد مشابهة
-
Bioinspired Histidine–Zn2+ Coordination for Tuning the Mechanical Properties of Self-Healing Coiled Coil Cross-Linked Hydrogels
حسب: Isabell Tunn, وآخرون
منشور في: (2019-03-01) -
Injectable Biomimetic Hydrogels as Tools for Efficient T Cell Expansion and Delivery
حسب: Jorieke Weiden, وآخرون
منشور في: (2018-11-01) -
Genetically Encoded XTEN‐based Hydrogels with Tunable Viscoelasticity and Biodegradability for Injectable Cell Therapies
حسب: Jennifer I. Bennett, وآخرون
منشور في: (2024-06-01) -
Affinity-controlled capture and release of engineered monoclonal antibodies by macroporous dextran hydrogels using coiled-coil interactions
حسب: Seyed Farzad Baniahmad, وآخرون
منشور في: (2023-12-01) -
Thermo-Viscoelastic Response of Protein-Based Hydrogels
حسب: Aleksey D. Drozdov, وآخرون
منشور في: (2021-05-01)