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Comparative evaluation of equine mesenchymal stem cells derived from amniotic fluid and umbilical cord blood

机译:羊水和脐带血马间充质干细胞的比较评价

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Mesenchymal stem cells (MSCs) are promising therapeutic tools for the treatment of tendon rupture and other musculoskeletal injuries in horses. Although MSCs from bone marrow and adipose tissues are commonly used for therapeutic purpose in equines, umbilical cord blood (UCB) and amniotic fluid (AF) are potential non-invasive sources of MSCs. We collected AF and UCB from twenty mares during foaling for isolation of MSCs and evaluated them for the differences in isolation rates, proliferation capacity, expression of MSC markers and multi-lineage differentiation ability. The plastic adherent colonies were observed in 60% AF and 65% UCB samples. The mean doubling time for AF cells was significantly lower than that of UCB cells. The AF-MSCs proliferated till passage 36 whereas UCB-MSCs till passage 20 only. Both AF and UCB derived cells expressed CD29, CD44, CD73, CD90 and CD105 and were negative for haematopoietic and leukocytic markers (CD14, CD34 and CD45). The CD90 and CD73 expression was significantly higher in AF derived cells as compared to UCB-MSCs. On the other hand, CD29 expression was significantly lower in AF derived cells as compared to UCB derived cells. The UCB-MSCs differentiated poorly to adipogenic lineage compared to AF-MSCs. These results suggested that equine AF yields more MSCs with greater in vitro proliferation and differentiation capacities and is better non-invasive source of MSCs for regenerative therapies in equines.
机译:间充质干细胞(MSCs)是用于治疗马的肌腱断裂和其他肌肉骨骼损伤的有前途的治疗工具。尽管来自骨髓和脂肪组织的MSC通常在马中用于治疗目的,但是脐带血(UCB)和羊水(AF)是MSC的潜在非侵入性来源。我们从小马驹的分离过程中收集了来自20匹母马的AF和UCB,以评估其分离率,增殖能力,MSC标记物表达和多系分化能力的差异。在60%AF和65%UCB样品中观察到塑料粘附集落。 AF细胞的平均倍增时间显着低于UCB细胞。 AF-MSC增殖至第36代,而UCB-MSC仅增殖至第20代。 AF和UCB衍生的细胞均表达CD29,CD44,CD73,CD90和CD105,并且对造血和白细胞标记(CD14,CD34和CD45)呈阴性。与UCB-MSC相比,AF衍生细胞中的CD90和CD73表达明显更高。另一方面,与UCB来源的细胞相比,AF来源的细胞中的CD29表达明显更低。与AF-MSC相比,UCB-MSC与成脂谱系的分化差。这些结果表明,马AF产生更多的MSC,具有更大的体外增殖和分化能力,并且是用于马的再生疗法的更好的非侵入性MSC来源。

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