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通过竞争交联机制调控功能化聚乙二醇二丙烯酸酯水凝胶的力学性能用于软组织应用

Modulating Functionalized Poly(ethylene glycol) Diacrylate Hydrogel Mechanical Properties through Competitive Crosslinking Mechanics for Soft Tissue Applications.

作者信息

Chapla Rachel, Alhaj Abed Mera, West Jennifer

机构信息

Department of Biomedical Engineering, Duke University, Durham, NC 27708, USA.

出版信息

Polymers (Basel). 2020 Dec 16;12(12):3000. doi: 10.3390/polym12123000.

Abstract

Local mechanical stiffness influences cell behavior, and thus cell culture scaffolds should approximate the stiffness of the tissue type from which the cells are derived. In synthetic hydrogels, this has been difficult to achieve for very soft tissues such as neural. This work presents a method for reducing the stiffness of mechanically and biochemically tunable synthetic poly(ethylene glycol) diacrylate hydrogels to within the soft tissue stiffness regime by altering the organization of the crosslinking sites. A soluble allyl-presenting monomer, which has a higher propensity for chain termination than acrylate monomers, was introduced into the PEG-diacrylate hydrogel precursor solution before crosslinking, resulting in acrylate-allyl competition and a reduction in gel compressive modulus from 5.1 ± 0.48 kPa to 0.32 ± 0.09 kPa. Both allyl monomer concentration and chemical structure were shown to influence the effectiveness of competition and change in stiffness. Fibroblast cells demonstrated a 37% reduction in average cell spread area on the softest hydrogels produced as compared to cells on control hydrogels, while the average percentage of neural cells extending neurites increased by 41% on these hydrogels, demonstrating the potential for this technology to serve as a soft tissue culture system.

摘要

局部机械刚度会影响细胞行为,因此细胞培养支架应接近细胞来源组织类型的刚度。在合成水凝胶中,对于像神经组织这样非常柔软的组织而言,很难做到这一点。这项工作提出了一种方法,通过改变交联位点的组织方式,将机械和生化可调的合成聚乙二醇二丙烯酸酯水凝胶的刚度降低到软组织刚度范围内。在交联之前,将一种比丙烯酸酯单体具有更高链终止倾向的可溶性含烯丙基单体引入聚乙二醇二丙烯酸酯水凝胶前体溶液中,导致丙烯酸酯 - 烯丙基竞争,凝胶压缩模量从5.1±0.48千帕降低到0.32±0.09千帕。结果表明,烯丙基单体浓度和化学结构都会影响竞争效果和刚度变化。与对照水凝胶上的细胞相比,成纤维细胞在制备的最柔软水凝胶上的平均细胞铺展面积减少了37%,而在这些水凝胶上,延伸神经突的神经细胞平均百分比增加了41%,这表明该技术有潜力作为一种软组织培养系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2e0/7766244/5bc66913f2b5/polymers-12-03000-g001.jpg

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