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PEG-Chitosan Hydrogel with Tunable Stiffness for Study of Drug Response of Breast Cancer Cells

机译:具有可调刚度的PEG-壳聚糖水凝胶用于研究乳腺癌细胞的药物反应

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Mechanical properties of the extracellular matrix have a profound effect on the behavior of anchorage-dependent cells. However, the mechanisms that define the effects of matrix stiffness on cell behavior remains unclear. Therefore, the development and fabrication of synthetic matrices with well-defined stiffness is invaluable for studying the interactions of cells with their biophysical microenvironment in vitro . We demonstrate a methoxypolyethylene glycol (mPEG)-modified chitosan hydrogel network where hydrogel stiffness can be easily modulated under physiological conditions by adjusting the degree of mPEG grafting onto chitosan (PEGylation). We show that the storage modulus of the hydrogel increases as PEGylation decreases and the gels exhibit instant self-recovery after deformation. Breast cancer cells cultured on the stiffest hydrogels adopt a more malignant phenotype with increased resistance to doxorubicin as compared with cells cultured on tissue culture polystyrene or Matrigel. This work demonstrates the utility of mPEG-modified chitosan hydrogel, with tunable mechanical properties, as an improved replacement of conventional culture system for in vitro characterization of breast cancer cell phenotype and evaluation of cancer therapies.
机译:细胞外基质的机械性质对锚定依赖性细胞的行为具有深远的影响。但是,定义矩阵刚度对细胞行为影响的机制仍不清楚。因此,具有明确定义的刚度的合成基质的开发和制造对于研究细胞与其体外生物物理微环境的相互作用具有不可估量的价值。我们证明了甲氧基聚乙二醇(mPEG)改性的壳聚糖水凝胶网络,其中可以通过调节mPEG接枝到壳聚糖上的程度(PEG化)在生理条件下轻松调节水凝胶的硬度。我们表明,水凝胶的储能模量随着聚乙二醇化程度的降低而增加,并且在变形后凝胶表现出即时的自我恢复。与在组织培养聚苯乙烯或基质胶上培养的细胞相比,在最坚硬的水凝胶上培养的乳腺癌细胞具有更恶性的表型,并且对阿霉素的抗性增加。这项工作证明了mPEG修饰的壳聚糖水凝胶具有可调节的机械性能,可作为常规培养系统的改进替代品,用于体外表征乳腺癌细胞表型和评估癌症治疗方法。

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