The Donnelly Centre for Cellular and Biomolecular Research, University of Toronto, Toronto, Ontario, Canada.
Langmuir. 2013 Jun 18;29(24):7393-400. doi: 10.1021/la305000w. Epub 2013 Feb 18.
Hydrogels are used to create 3D microenvironments with properties that direct cell function. The current study demonstrates the versatility of hyaluronic acid (HA)-based hydrogels with independent control over hydrogel properties such as mechanics, architecture, and the spatial distribution of biological factors. Hydrogels were prepared by reacting furan-modified HA with bis-maleimide-poly(ethylene glycol) in a Diels-Alder click reaction. Biomolecules were photopatterned into the hydrogel by two-photon laser processing, resulting in spatially defined growth factor gradients. The Young's modulus was controlled by either changing the hydrogel concentration or the furan substitution on the HA backbone, thereby decoupling the hydrogel concentration from mechanical properties. Porosity was controlled by cryogelation, and the pore size distribution, by the thaw temperature. The addition of galactose further influenced the porosity, pore size, and Young's modulus of the cryogels. These HA-based hydrogels offer a tunable platform with a diversity of properties for directing cell function, with applications in tissue engineering and regenerative medicine.
水凝胶可用于创建具有指导细胞功能特性的 3D 微环境。本研究展示了基于透明质酸(HA)的水凝胶的多功能性,可以独立控制水凝胶的特性,如力学、结构和生物因子的空间分布。水凝胶通过呋喃修饰的 HA 与双马来酰亚胺-聚(乙二醇)在 Diels-Alder 点击反应中反应制备。通过双光子激光加工将生物分子光图案化到水凝胶中,形成空间定义的生长因子梯度。通过改变水凝胶浓度或 HA 主链上的呋喃取代基来控制杨氏模量,从而将水凝胶浓度与机械性能解耦。通过冷冻凝胶化控制孔隙率,通过解冻温度控制孔径分布。添加半乳糖进一步影响冷冻凝胶的孔隙率、孔径和杨氏模量。这些基于 HA 的水凝胶为指导细胞功能提供了一个可调平台,具有多种特性,可应用于组织工程和再生医学。