骨髓间充质干细胞衍生的细胞外囊泡 miR-208a-3p 通过调节脊髓神经元的生物功能缓解脊髓损伤

DNA and cell biology Pub Date : 2024-09-01 Epub Date: 2024-08-12 DOI:10.1089/dna.2024.0064
Jianwei Yang, Yanhua Yao
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摘要

我们旨在探索骨髓间充质干细胞衍生的细胞外囊泡(BMSCs-Exo)改善脊髓损伤(SCI)的潜在机制。30只雄性12周无特定病原体(SPF)Sprague-Dawley(SD)大鼠被用来构建体内SCI模型。用 10 只雄性 12 周 SPF SD 大鼠提取 BMSCs。采用巴索、比提、布雷斯纳汉(BBB)评分法评估大鼠的运动功能。采用实时荧光定量 PCR(RT-PCR)、Western 印迹(WB)和双荧光素酶检测法探讨了 BMSCs 中 rno-miR-208a-3p 和 Cdkn1a(p21)之间的调控。用脂多糖(100 ng/mL)处理原代脊髓神经元 30 分钟,模拟体外 SCI。与模型组(14 分)相比,BMSCs-Exo 增加了 SCI 大鼠的 BBB 评分(19 分)。与假组相比,模型组的 Cdkn1a 上调,而 rno-miR-208a-3p 下调。然而,与模型组相比,BMSCs-Exo 组的 Cdkn1a 下调,而 rno-miR-208a-3p 上调。此外,rno-miR-208a-3p 通过直接结合的方式抑制了 Cdkn1a 的表达。BMSCs-Exo-rno-miR-208a-3p 在体外通过抑制凋亡促进了原发性脊髓神经元的增殖。此外,在 SCI 细胞模型中,BMSCs-Exo-rno-miR-208a-3p 能促进细胞周期蛋白 D1、CDK6 和 Bcl-2 的表达,抑制 Bax 的表达。总之,BMSCs-Exo-携带的rno-miR-208a-3p可通过调节Cdkn1a通路显著保护大鼠免受SCI损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Bone Marrow Mesenchymal Stem Cells-Derived Extracellular Vesicle miR-208a-3p Alleviating Spinal Cord Injury via Regulating the Biological Function of Spinal Cord Neurons.

We aim to explore the potential mechanism of bone marrow mesenchymal stem cells-derived extracellular vesicles (BMSCs-Exo) in improving spinal cord injury (SCI). Thirty male 12-week specific pathogen-free (SPF) Sprague-Dawley (SD) rats were used to construct SCI model in vivo. Ten male 12-week SPF SD rats were used to extract BMSCs. The Basso, Beattie, Bresnahan (BBB) score was used to evaluate the motor function of rats. Real-time fluorescence quantitative PCR (RT-PCR), western blot (WB), and double luciferase assay were used to explore the regulation between rno-miR-208a-3p and Cdkn1a (p21) in BMSCs. Primary spinal cord neurons were treated with lipopolysaccharide (100 ng/mL) for 30 min to mimic SCI in vitro. Compared with the model group (14 scores), BMSCs-Exo increased BBB score (19 scores) in SCI rats. Compared with the sham group, Cdkn1a was upregulated, whereas rno-miR-208a-3p was downregulated in the model group. However, compared with the model group, Cdkn1a was downregulated, whereas rno-miR-208a-3p was upregulated in the BMSCs-Exo group. In addition, rno-miR-208a-3p inhibited the expression of Cdkn1a via direct binding way. BMSCs-Exo-rno-miR-208a-3p promoted the proliferation of primary spinal neurons via inhibiting apoptosis in vitro. Moreover, BMSCs-Exo-rno-miR-208a-3p promoted cyclin D1, CDK6, and Bcl-2 and inhibited Bax expression in a cell model of SCI. In conclusion, BMSCs-Exo-carried rno-miR-208a-3p significantly protects rats from SCI via regulating the Cdkn1a pathway.

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