人胎儿软骨衍生祖细胞肌原分化过程中分泌的外泌体通过 miR-145-5p 促进骨骼肌再生

IF 4.4 4区 医学 Q2 CELL & TISSUE ENGINEERING Tissue engineering and regenerative medicine Pub Date : 2024-04-01 Epub Date: 2024-01-31 DOI:10.1007/s13770-023-00618-w
Dong Il Shin, Yong Jun Jin, Sujin Noh, Hee-Woong Yun, Do Young Park, Byoung-Hyun Min
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引用次数: 0

摘要

背景:肌肉疏松症的特点是肌母细胞功能减退,目前尚无明显的治疗方法。我们的目的是制造保留了人胎儿软骨来源祖细胞(hFCPCs)成肌分化能力的外泌体,并研究其在肌母细胞和肌肉疏松症大鼠模型中的肌肉再生功效:方法:比较了hFCPCs成肌分化过程中分泌的外泌体(F-Exo)与人骨髓间充质干细胞衍生的外泌体(B-Exo)在肌母细胞和肌肉疏松症大鼠模型中的肌肉再生潜力。通过已知的微RNAs(miRNAs)分析,对F-Exo的作用进行了分析。通过测量参与 Wnt 信号通路的蛋白质的表达,证实了 F-Exo 的作用机制:结果:F-Exo和B-Exo显示出相似的外泌体特征。然而,F-Exo比B-Exo更有效地诱导肌肉标志物(MyoD、MyoG和MyHC)的表达和肌细胞中肌管的形成。此外,与 B-Exo 相比,F-Exo 对肌肉疏松症大鼠肌纤维横截面积和肌肉质量的诱导作用更大。在 F-Exo 中发现了高浓度的与肌肉再生有关的 miR-145-5p,RNase 预处理降低了外泌体的功效。miR-145-5p模拟物与F-Exo对肌母细胞中肌生成标志物表达的影响相似,而抑制剂则部分抵消了这种影响。F-Exo通过增强Wnt5a和β-catenin的表达参与了Wnt信号通路:结论:F-Exo通过丰富的miR-145-5p激活了Wnt信号通路,模拟了hFCPCs显著的成肌分化潜能,从而改善了肌肉再生。
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Exosomes Secreted During Myogenic Differentiation of Human Fetal Cartilage-Derived Progenitor Cells Promote Skeletal Muscle Regeneration through miR-145-5p.

Background: Currently, there is no apparent treatment for sarcopenia, which is characterized by diminished myoblast function. We aimed to manufacture exosomes that retain the myogenic differentiation capacity of human fetal cartilage-derived progenitor cells (hFCPCs) and investigate their muscle regenerative efficacy in myoblasts and a sarcopenia rat model.

Methods: The muscle regeneration potential of exosomes (F-Exo) secreted during myogenic differentiation of hFCPCs was compared to human bone marrow mesenchymal stem cells-derived (hBMSCs) exosomes (B-Exo) in myoblasts and sarcopenia rat model. The effect of F-Exo was analyzed through known microRNAs (miRNAs) analysis. The mechanism of action of F-Exo was confirmed by measuring the expression of proteins involved in the Wnt signaling pathway.

Results: F-Exo and B-Exo showed similar exosome characteristics. However, F-Exo induced the expression of muscle markers (MyoD, MyoG, and MyHC) and myotube formation in myoblasts more effectively than B-Exo. Moreover, F-Exo induced greater increases in muscle fiber cross-sectional area and muscle mass compared to B-Exo in a sarcopenia rat. The miR-145-5p, relevant to muscle regeneration, was found in high concentrations in the F-Exo, and RNase pretreatment reduced the efficacy of exosomes. The effects of F-Exo on the expression of myogenic markers in myoblasts were paralleled by the miR-145-5p mimics, while the inhibitor partially negated this effect. F-Exo was involved in the Wnt signaling pathway by enhancing the expression of Wnt5a and β-catenin.

Conclusion: F-Exo improved muscle regeneration by activating the Wnt signaling pathway via abundant miR-145-5p, mimicking the remarkable myogenic differentiation potential of hFCPCs.

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来源期刊
Tissue engineering and regenerative medicine
Tissue engineering and regenerative medicine CELL & TISSUE ENGINEERING-ENGINEERING, BIOMEDICAL
CiteScore
6.80
自引率
5.60%
发文量
83
审稿时长
6-12 weeks
期刊介绍: Tissue Engineering and Regenerative Medicine (Tissue Eng Regen Med, TERM), the official journal of the Korean Tissue Engineering and Regenerative Medicine Society, is a publication dedicated to providing research- based solutions to issues related to human diseases. This journal publishes articles that report substantial information and original findings on tissue engineering, medical biomaterials, cells therapy, stem cell biology and regenerative medicine.
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