Yea Ji-Hye, Kim Yeasol, Jo Chris H
Department of Pathology, Johns Hopkins University, Baltimore, MD, USA.
Department of Translational Medicine, Seoul National University College of Medicine, Seoul, South Korea.
Biochem Biophys Rep. 2023 May 17;34:101486. doi: 10.1016/j.bbrep.2023.101486. eCollection 2023 Jul.
Although mesenchymal stem cells (MSCs) can be obtained from various tissues such as bone marrow (BM), umbilical cord blood (UCB) and umbilical cord tissue (UC), the comparative efficacy of each MSC in tendon regeneration is unknown. Therefore, we investigated the efficacy of MSCs isolated from three different sources on tendon regeneration after injury. We evaluated the potential of BM-, UCB- and UC-MSC to differentiate into tendon-like cells in tensioned three-dimensional construct (T-3D) using gene and histological analysis. In animal experiments, full-thickness tendon defect (FTD) was created in supraspinatus of rats, and injected with Saline and BM-, UCB- and UC-MSC. After two and four weeks, histological evaluations were performed. After inducing tenogenic differentiation, the gene expression of scleraxis, mohawk, type I collagen and tenascin-C was upregulated by 3.12-, 5.92-, 6.01- and 1.61-fold respectively and formation of tendon-like matrix was increased 4.22-fold in UC-MSC compared to BM-MSC in T-3D. In animal experiments, the total degeneration score was lower in the UC-MSC group than in BM-MSC group at both weeks. In heterotopic matrix formation, glycosaminoglycan-rich area was reduced in the UC-MSC group, whereas area was larger in the BM-MSC group than in Saline group at four weeks. In conclusion, and . compared to BM- and UCB-MSC.
尽管间充质干细胞(MSCs)可从多种组织中获取,如骨髓(BM)、脐带血(UCB)和脐带组织(UC),但每种MSCs在肌腱再生中的相对疗效尚不清楚。因此,我们研究了从三种不同来源分离的MSCs对损伤后肌腱再生的疗效。我们使用基因和组织学分析评估了BM-MSC、UCB-MSC和UC-MSC在张紧的三维构建体(T-3D)中分化为肌腱样细胞的潜力。在动物实验中,在大鼠的冈上肌制造全层肌腱缺损(FTD),并注射生理盐水以及BM-MSC、UCB-MSC和UC-MSC。在两周和四周后,进行组织学评估。在诱导成腱分化后,与BM-MSC相比,UC-MSC中scleraxis、mohawk、I型胶原蛋白和肌腱蛋白-C的基因表达分别上调了3.12倍、5.92倍、6.01倍和1.61倍,并且肌腱样基质的形成增加了4.22倍。在动物实验中,在两个时间点,UC-MSC组的总退变评分均低于BM-MSC组。在异位基质形成方面,在四周时,UC-MSC组富含糖胺聚糖的区域减少,而BM-MSC组的该区域比生理盐水组更大。总之,与BM-MSC和UCB-MSC相比,…… 。(注:原文最后结论部分不完整)