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Extracellular matrix expression and production in fibroblast-collagengels: Towards an in vitro model for ligament woundhealing

机译:细胞外基质在成纤维细胞胶原蛋白中的表达和产生凝胶:建立韧带伤口的体外模型康复

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摘要

Ligament wound healing involves the proliferation of a dense and disorganized fibrous matrix that slowly remodels into scar tissue at the injury site. This remodeling process does not fully restore the highly aligned collagen network that exists in native tissue, and consequently repaired ligament has decreased strength and durability. In order to identify treatments that stimulate collagen alignment and strengthen ligament repair, there is a need to develop in vitro models to study fibroblast activation during ligament wound healing. The objective of this study was to measure gene expression and matrix protein accumulation in fibroblast-collagen gels that were subjected to different static stress conditions (stress-free, biaxial stress, and uniaxial stress) for three time points (1, 2 or 3 weeks). By comparing our in vitro results to prior in vivo studies, we found that stress-free gels had time-dependent changes in gene expression (col3a1, TnC) corresponding to early scar formation, and biaxial stress gels had protein levels (collagen type III, decorin) corresponding to early scar formation. This is the first study to conduct a targeted evaluation of ligament healing biomarkers in fibroblast-collagen gels, and the results suggest thatbiomimetic in-vitro models of early scar formation should beinitially cultured under biaxial stress conditions.
机译:韧带伤口愈合涉及致密无序的纤维基质的增殖,该基质会在损伤部位缓慢重塑为瘢痕组织。这种重塑过程不能完全恢复天然组织中存在的高度对齐的胶原网络,因此修复后的韧带强度和耐久性下降。为了确定刺激胶原蛋白排列并增强韧带修复的治疗方法,需要开发体外模型来研究韧带伤口愈合过程中的成纤维细胞活化。这项研究的目的是测量在三个时间点(1、2或3周)经受不同静态应力条件(无应力,双轴应力和单轴应力)的成纤维-胶原蛋白凝胶中的基因表达和基质蛋白积累)。通过将我们的体外研究结果与先前的体内研究进行比较,我们发现无应力凝胶的基因表达(col3a1,TnC)具有时间依赖性,与早期瘢痕形成相对应,而双轴应力凝胶的蛋白质水平(III型胶原,除臭)对应于早期疤痕形成。这是第一项针对成纤维细胞胶原蛋白凝胶中韧带愈合生物标记物进行靶向评估的研究,结果表明:早期疤痕形成的仿生体外模型应为最初在双轴应力条件下培养。

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