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使用解耦的 3D 水凝胶系统综合考察机械和扩散效应对细胞行为的影响。

Comprehensive Examination of Mechanical and Diffusional Effects on Cell Behavior Using a Decoupled 3D Hydrogel System.

机构信息

School of Materials Science and Engineering, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919, South Korea.

School of Life Sciences, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919, South Korea.

出版信息

Macromol Biosci. 2017 Sep;17(9). doi: 10.1002/mabi.201700162. Epub 2017 Jul 10.

Abstract

Hydrogels possess several physical and chemical properties suitable for engineering cellular environments for biomedical applications. Despite recent advances in hydrogel systems for cell culture, it is still a significant challenge to independently control the mechanical and diffusional properties of hydrogels, both of which are well known to influence various cell behaviors when using hydrogels as 3D cell culture systems. Controlling the crosslinking density of a hydrogel system to tune the mechanical properties inevitably affects their diffusional properties, as the crosslinking density and diffusion are often inversely correlated. In this study, a polymeric crosslinker is demonstrated that allows for the adjustment of the degree of substitution of reactive functional groups. By using this polymeric crosslinker, the rigidity of the resulting hydrogel is controlled in a wide range without changing the polymer concentration. Furthermore, their diffusional properties, as characterized by their swelling ratios, pore diameters, and drug release rates, are not significantly affected by the changes in the degree of substitution. 3D cell studies using this hydrogel system successfully demonstrate the varying effects of mechanical properties on different cell types, whereas those in a conventional hydrogel system are more significantly influenced by changes in diffusional properties.

摘要

水凝胶具有多种物理和化学性质,非常适合用于生物医学应用的细胞环境工程。尽管最近在用于细胞培养的水凝胶系统方面取得了进展,但仍然存在一个重大挑战,即独立控制水凝胶的机械和扩散性质,因为当使用水凝胶作为 3D 细胞培养系统时,这两个性质都对各种细胞行为有很大影响。通过控制水凝胶系统的交联密度来调节机械性能,不可避免地会影响其扩散性能,因为交联密度和扩散通常是成反比的。在这项研究中,展示了一种聚合物交联剂,该交联剂可以调节反应性官能团的取代度。通过使用这种聚合物交联剂,可以在不改变聚合物浓度的情况下,在很宽的范围内控制所得水凝胶的硬度。此外,它们的扩散性能(通过溶胀比、孔径和药物释放速率来表征)不会因取代度的变化而受到显著影响。使用这种水凝胶系统进行的 3D 细胞研究成功地证明了机械性能对不同细胞类型的不同影响,而在传统水凝胶系统中,机械性能的变化受扩散性能的影响更大。

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