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过表达 RUNX1 的人脐带间充质干细胞通过抑制骨溶解、增强成骨和促进血管生成促进腱骨愈合。

Human umbilical cord mesenchymal stem cells overexpressing RUNX1 promote tendon-bone healing by inhibiting osteolysis, enhancing osteogenesis and promoting angiogenesis.

机构信息

Department of Orthopedic, Yangzhou Clinical Medical College of Nanjing Medical University, Yangzhou, 225001, Jiangsu, China.

出版信息

Genes Genomics. 2024 Apr;46(4):461-473. doi: 10.1007/s13258-023-01478-3. Epub 2024 Jan 5.

Abstract

BACKGROUND

Rotator cuff injury (RCI) is a common shoulder injury, which is difficult to be completely repaired by surgery. Hence, new strategies are needed to promote the healing of tendon-bone.

OBJECTIVE

We aimed to investigate the effect of human umbilical cord mesenchymal stem cells (hUC-MSCs) overexpressing RUNX1 on the tendon-bone healing after RCI, and to further explore its mechanism.

METHODS

Lentiviral vector was used to mediate the overexpression of RUNX1. RUNX1-overexpressed UCB-MSCs (referred to as MSC-RUNX1) were co-cultured with osteoclasts, and TRAP staining was performed to observe the formation of osteoclasts. Then MSC-RUNX1 was cultured in osteogenic differentiation medium, Alizarin red staining was conducted to detect osteogenic differentiation. The expression of markers of osteogenesis and osteoclast was detected by RT-qPCR. EA. hy926 cells were co-cultured with MSC-RUNX1. Transwell assay was used to detect the migration, and the expression of angiogenesis related-genes VEGF and TGF-β was detected by RT-qPCR. The rat rotator cuff reconstruction model was established and MSCs were injected at the tendon-bone junction. Biomechanical test and micro-CT scanning were performed, and HE, Masson and Alcian Blue staining were used for histological evaluation of tendon-bone healing. TUNEL and PCNA immunofluorescence (IF) staining were performed to evaluate apoptosis and proliferation at the tendon-bone healing site. The levels of TNF-α, IL-6 and IL-8 in serum were detected by ELISA. The expression of CD31 and Endomucin that related to angiogenesis was detected by IF. Safranin O-fast and TRAP/CD40L immunohistochemical staining were used to assess the levels of osteoclasts and osteoblasts at the tendon-bone healing site.

RESULTS

hUC-MSCs overexpressing RUNX1 inhibited osteoclast formation and promoted osteogenic differentiation. MSC-RUNX1 could promote the migration and tube formation of EA. hy926 cells, and up-regulate the levels of VEGF and TGF-β. Model mice treated with MSC-RUNX1 partially restored the biomechanical indexes. Treatment of MSC-RUNX1 obviously increased the bone density, accompanied by the formation of new bone. In vivo experiments showed that MSC-RUNX1 treatment could promote tendon-bone healing and inhibit inflammatory response in rats. MSC-RUNX1 treatment also promoted angiogenesis at the tendon-bone healing site, while inhibiting osteoclast formation and promoting osteogenic differentiation.

CONCLUSION

hUC-MSCs overexpressing RUNX1 can inhibit the formation of osteoclasts and differentiation of osteoblasts, promote angiogenesis and inhibit inflammation, thereby promoting tendon-bone healing after RCI.

摘要

背景

肩袖损伤(RCI)是一种常见的肩部损伤,很难通过手术完全修复。因此,需要新的策略来促进腱骨愈合。

目的

我们旨在研究过表达 RUNX1 的人脐带间充质干细胞(hUC-MSCs)对 RCI 后腱骨愈合的影响,并进一步探讨其机制。

方法

使用慢病毒载体介导 RUNX1 的过表达。将 RUNX1 过表达的 UCB-MSCs(称为 MSC-RUNX1)与破骨细胞共培养,进行 TRAP 染色以观察破骨细胞的形成。然后将 MSC-RUNX1 培养在成骨分化培养基中,茜素红染色检测成骨分化。通过 RT-qPCR 检测成骨和破骨细胞标志物的表达。将 EA.hy926 细胞与 MSC-RUNX1 共培养。Transwell 测定用于检测迁移,通过 RT-qPCR 检测血管生成相关基因 VEGF 和 TGF-β的表达。建立大鼠肩袖重建模型,并在腱骨交界处注射 MSCs。进行生物力学测试和 micro-CT 扫描,对腱骨愈合进行组织学评估。通过 TUNEL 和 PCNA 免疫荧光(IF)染色评估腱骨愈合部位的细胞凋亡和增殖。通过 ELISA 检测血清中 TNF-α、IL-6 和 IL-8 的水平。通过 IF 检测与血管生成相关的 CD31 和 Endomucin 的表达。采用 Safranin O-fast 和 TRAP/CD40L 免疫组化染色评估腱骨愈合部位的破骨细胞和成骨细胞水平。

结果

过表达 RUNX1 的 hUC-MSCs 抑制破骨细胞形成并促进成骨分化。MSC-RUNX1 可促进 EA.hy926 细胞的迁移和管形成,并上调 VEGF 和 TGF-β 的水平。用 MSC-RUNX1 处理的模型小鼠部分恢复了生物力学指标。MSC-RUNX1 治疗明显增加了骨密度,伴随着新骨的形成。体内实验表明,MSC-RUNX1 治疗可促进大鼠腱骨愈合并抑制炎症反应。MSC-RUNX1 治疗还促进腱骨愈合部位的血管生成,同时抑制破骨细胞形成并促进成骨分化。

结论

过表达 RUNX1 的 hUC-MSCs 可抑制破骨细胞形成和成骨细胞分化,促进血管生成和抑制炎症反应,从而促进 RCI 后腱骨愈合。

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