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首页> 外文期刊>Acta biomaterialia >Characterization of glycidyl methacrylate - crosslinked hyaluronan hydrogel scaffolds incorporating elastogenic hyaluronan oligomers.
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Characterization of glycidyl methacrylate - crosslinked hyaluronan hydrogel scaffolds incorporating elastogenic hyaluronan oligomers.

机译:甲基丙烯酸缩水甘油酯-交联的透明质酸水凝胶支架的表征,该支架结合有弹性的透明质酸低聚物。

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摘要

Prior studies on two-dimensional cell cultures suggest that hyaluronic acid (HA) stimulates cell-mediated regeneration of extracellular matrix structures, specifically those containing elastin, though such biologic effects are dependent on HA fragment size. Towards being able to regenerate three-dimensional (3-D) elastic tissue constructs, the present paper studies photo-crosslinked hydrogels containing glycidyl methacrylate (GM)-derivatized bio-inert high molecular weight (HMW) HA (1 x 10(6)Da) and a bioactive HA oligomer mixture (HA-o: MW approximately 0.75 kDa). The mechanical (rheology, degradation) and physical (apparent crosslinking density, swelling ratio) properties of the gels varied as a function of incorporated HA oligomer content; however, overall, the mechanics of these hydrogels were too weak for vascular applications as stand-alone materials. Upon in vivo subcutaneous implantation, only a few inflammatory cells were evident around GM-HA gels, however their number increased as HA-o content within the gels increased, and the collagen I distribution was uniform. Smooth muscle cells (SMC) were encapsulated into GM hydrogels, and calcein acetoxymethyl detection revealed that the cells were able to endure twofold the level of UV exposure used to crosslink the gels. After 21 days of culture, SMC elastin production, measured by immunofluorescence quantification, showed HA-o to increase cellular deposition of elastic matrix twofold relative to HA-o-free GM-HA gels. These results demonstrate that cell response to HA/HA-o is not altered by their methacrylation and photo-crosslinking into a hydrogel, and that HA-o incorporation into cell-encapsulating hydrogel scaffolds can be useful for enhancing their production of elastic matrix structures in a 3-D space, important for regenerating elastic tissues.
机译:先前对二维细胞培养物的研究表明,透明质酸(HA)刺激细胞介导的细胞外基质结构(特别是那些含有弹性蛋白的基质结构)的再生,尽管这种生物学效应取决于HA片段的大小。为了能够再生三维(3-D)弹性组织构造,本论文研究了含有甲基丙烯酸缩水甘油酯(GM)衍生的生物惰性高分子量(HMW)HA(1 x 10(6))的光交联水凝胶。 Da)和具有生物活性的HA低聚物混合物(HA-o:MW约为0.75 kDa)。凝胶的机械(流变性,降解)和物理(表观交联密度,溶胀率)特性随掺入的HA低聚物含量而变化;然而,总的来说,这些水凝胶的力学性能太弱,无法作为独立材料用于血管应用。体内皮下植入后,GM-HA凝胶周围只有少数炎性细胞,但是随着凝胶中HA-o含量的增加,它们的数量也增加了,并且胶原I分布均匀。将平滑肌细胞(SMC)封装在GM水凝胶中,钙黄绿素乙酰氧基甲基检测显示该细胞能够承受用于使凝胶交联的UV暴露水平的两倍。培养21天后,通过免疫荧光定量法测量的SMC弹性蛋白产生显示HA-o相对于不含HA-o的GM-HA凝胶,使弹性基质的细胞沉积增加了两倍。这些结果表明,细胞对HA / HA-o的甲基丙烯酸酯化作用和光交联到水凝胶中并不会改变其反应,并且将HA-o掺入细胞包封的水凝胶支架中可用于增强其在细胞中的弹性基质结构的产生。 3-D空间,对于再生弹性组织很重要。

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