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配方变化影响基于透明质酸的水凝胶的材料特性和细胞行为。

Formulation Changes Affect Material Properties and Cell Behavior in HA-Based Hydrogels.

作者信息

Lawyer Thomas, McIntosh Kristen, Clavijo Cristian, Potekhina Lydia, Mann Brenda K

机构信息

Department of Bioengineering, University of Utah, 36 S. Wasatch Drive, Rm. 3100, Salt Lake City, UT 84112, USA.

出版信息

Int J Cell Biol. 2012;2012:737421. doi: 10.1155/2012/737421. Epub 2012 Nov 27.

Abstract

To develop and optimize new scaffold materials for tissue engineering applications, it is important to understand how changes to the scaffold affect the cells that will interact with that scaffold. In this study, we used a hyaluronic acid- (HA-) based hydrogel as a synthetic extracellular matrix, containing modified HA (CMHA-S), modified gelatin (Gtn-S), and a crosslinker (PEGda). By varying the concentrations of these components, we were able to change the gelation time, enzymatic degradation, and compressive modulus of the hydrogel. These changes also affected fibroblast spreading within the hydrogels and differentially affected the proliferation and metabolic activity of fibroblasts and mesenchymal stem cells (MSCs). In particular, PEGda concentration had the greatest influence on gelation time, compressive modulus, and cell spreading. MSCs appeared to require a longer period of adjustment to the new microenvironment of the hydrogels than fibroblasts. Fibroblasts were able to proliferate in all formulations over the course of two weeks, but MSCs did not. Metabolic activity changed for each cell type during the two weeks depending on the formulation. These results highlight the importance of determining the effect of matrix composition changes on a particular cell type of interest in order to optimize the formulation for a given application.

摘要

为了开发和优化用于组织工程应用的新型支架材料,了解支架的变化如何影响与之相互作用的细胞非常重要。在本研究中,我们使用了一种基于透明质酸(HA)的水凝胶作为合成细胞外基质,其包含改性透明质酸(CMHA-S)、改性明胶(Gtn-S)和一种交联剂(PEGda)。通过改变这些成分的浓度,我们能够改变水凝胶的凝胶化时间、酶促降解和压缩模量。这些变化也影响了成纤维细胞在水凝胶中的铺展,并对成纤维细胞和间充质干细胞(MSC)的增殖和代谢活性产生不同影响。特别是,PEGda浓度对凝胶化时间、压缩模量和细胞铺展的影响最大。与成纤维细胞相比,MSC似乎需要更长的时间来适应水凝胶的新微环境。在两周的时间里,成纤维细胞能够在所有配方中增殖,但MSC不能。在两周内,每种细胞类型的代谢活性根据配方而变化。这些结果凸显了确定基质成分变化对特定目标细胞类型的影响对于为给定应用优化配方的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36f2/3515900/78a41db83767/IJCB2012-737421.001.jpg

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