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首页> 外文期刊>Journal of biomaterials science >Poly (ethylene glycol) hydrogel scaffolds with multiscale porosity for culture of human adipose-derived stem cells
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Poly (ethylene glycol) hydrogel scaffolds with multiscale porosity for culture of human adipose-derived stem cells

机译:聚(乙二醇)水凝胶支架,具有多尺度孔隙率,用于人脂肪衍生的干细胞培养

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摘要

Three-dimensional (3 D) hydrogel scaffolds are an attractive option for tissue regeneration applications because they allow for cell migration, fluid exchange, and can be synthesized to closely mimic the physical properties of the extracellular matrix environment. The material properties of hydrogels play a vital role in cellular migration and differentiation. In light of this, in-depth understanding of material properties is required before such scaffolds can be used to study their influence on cells. Herein, various blends and thicknesses of poly (ethylene glycol) dimethacrylate (PEGDMA) hydrogels were synthesized, flash frozen, and dried by lyophilization to create scaffolds with multiscale porosity. Environmental scanning electron microscopy (ESEM) images demonstrated that lyophilization induced microporous voids in the PEGDMA hydrogels while swelling studies show the hydrogels retain their innate swelling properties. Change in pore size was observed between drying methods, polymer blend, and thickness when imaged in the hydrated state. Human adipose-derived stem cells (hASCs) were seeded on lyophilized and non-lyophilized hydrogels to determine if the scaffolds would support cell attachment and proliferation of a clinically relevant cell type. Cell attachment and morphology of the hASCs were evaluated using fluorescence imaging. Qualitative observations in cell attachment and morphology of hASCs on the surface of the different hydrogel spatial configurations indicate these multiscale porosity hydrogels create a suitable scaffold for hASC culture. These findings offer another factor of tunability in creating biomimetic hydrogels for various tissue engineering applications including tissue repair, regeneration, wound healing, and controlled release of growth factors.
机译:三维(3D)水凝胶支架是组织再生应用的有吸引力的选择,因为它们允许细胞迁移,流体交换,并且可以合成以密切地模仿细胞外基质环境的物理性质。水凝胶的材料特性在细胞迁移和分化中起着至关重要的作用。鉴于此,在这种支架可以用于研究其对细胞的影响之前,需要深入了解材料性质。这里,合成,闪蒸冷冻,通过冻干干燥,用多尺度孔隙率产生多尺度孔隙率的各种共混物和厚度的聚(乙二醇)二甲基丙烯酸酯(PEGDMA)水凝胶。环境扫描电子显微镜(ESEM)图像表明,冻干诱导PEGDMA水凝胶中的微孔空隙,同时肿胀研究显示水凝胶保留其先天溶胀性质。在水合状态成像时,在干燥方法,聚合物共混物和厚度之间观察到孔径的变化。将人脂肪衍生的干细胞(HASC)接种在冻干和非冻干水凝胶上,以确定支架是否会支持临床相关细胞类型的细胞附着和增殖。使用荧光成像评估HASC的细胞附着和形态。不同水凝胶空间配置的表面细胞附着和碱的形态的定性观察表明这些多尺度孔隙水凝胶为HASC培养产生合适的支架。这些发现提供了另一种可调性的因素,用于为各种组织工程应用创造仿生水凝胶,包括组织修复,再生,伤口愈合和增殖因子的控制释放。

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