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首页> 外文期刊>Stem cell reviews and Reports >Therapeutic mesenchymal stromal stem cells: Isolation, characterization and role in equine regenerative medicine and metabolic disorders
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Therapeutic mesenchymal stromal stem cells: Isolation, characterization and role in equine regenerative medicine and metabolic disorders

机译:治疗性间充质基质干细胞:在马再生医学和代谢障碍中分离,表征和作用

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摘要

Mesenchymal stromal cells (MSC) have become a popular treatment modality in equine orthopaedics. Regenerative therapies are especially interesting for pathologies like complicated tendinopathies of the distal limb, osteoarthritis, osteochondritis dissecans (OCD) and more recently metabolic disorders. Main sources for MSC harvesting in the horse are bone marrow, adipose tissue and umbilical cord blood. While the acquisition of umbilical cord blood is fairly easy and non-invasive, extraction of bone marrow and adipose tissue requires more invasive techniques. Characterization of the stem cells as a result of any isolation method, is also a crucial step for the confirmation of the cells' stemness properties; thus, three main characteristics must be fulfilled by these cells, namely: adherence, expression of a series of well-defined differentiation clusters as well as pluripotency. EVs, resulting from the paracrine action of MSCs, also play a key role in the therapeutic mechanisms mediated by stem cells; MSC-EVs are thus largely implicated in the regulation of proliferation, maturation, polarization and migration of various target cells. Evidence that EVs alone represent a complex network Oinvolving different soluble factors and could then reflect biophysical characteristics of parent cells has fuelled the importance of developing highly specific techniques for their isolation and analysis. All these aspects related to the functional and technical understanding of MSCs will be discussed and summarized in this review.
机译:间充质基质细胞(MSC)已成为马骨科的普遍治疗方式。对肢体的复杂肌腱病变,骨关节炎,骨质脑膜炎甲酰甲壳(OCD)和最近代谢障碍的病理学疗法特别有趣。 MSC中的主要来源是骨髓,脂肪组织和脐带血。虽然采集脐带血相当容易且非侵入性,骨髓和脂肪组织的提取需要更多的侵入性技术。由于任何分离方法的结果,干细胞的表征也是用于确认细胞的茎干特性的关键步骤;因此,这些细胞必须满足三个主要特征,即:粘附,一系列明确定义的分化簇的表达以及多能性。来自MSCs的旁静脉作用导致的EVS,也在干细胞介导的治疗机制中发挥关键作用;因此,MSC-eV在很大程度上涉及各种靶细胞的增殖,成熟,偏振和迁移的调节。仅表明EVS代表了一种复杂的网络,源于不同可溶性因子,然后可以反映亲本细胞的生物物理特征,这促使为其分离和分析开发高度具体技术的重要性。将在本次审查中讨论和总结与MSCS的功能和技术理解有关的所有这些方面。

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