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首页> 外文期刊>Stem Cell Research & Therapy >Cladophora glomerata methanolic extract promotes chondrogenic gene expression and cartilage phenotype differentiation in equine adipose-derived mesenchymal stromal stem cells affected by metabolic syndrome
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Cladophora glomerata methanolic extract promotes chondrogenic gene expression and cartilage phenotype differentiation in equine adipose-derived mesenchymal stromal stem cells affected by metabolic syndrome

机译:Cladophora Glomerata甲烷醇提取物促进了由代谢综合征影响的大二脂肪衍生的间充质菌干细胞中有软骨生基因表达和软骨表型分化

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BACKGROUND:Chondrogenesis represents a highly dynamic cellular process that leads to the establishment of various types of cartilage. However, when stress-related injuries occur, a rapid and efficient regeneration of the tissues is necessary to maintain cartilage integrity. Mesenchymal stem cells (MSCs) are known to exhibit high capacity for self-renewal and pluripotency effects, and thus play a pivotal role in the repair and regeneration of damaged cartilage. On the other hand, the influence of certain pathological conditions such as metabolic disorders on MSCs can seriously impair their regenerative properties and thus reduce their therapeutic potential.OBJECTIVES:In this investigation, we attempted to improve and potentiate the in vitro chondrogenic ability of adipose-derived mesenchymal stromal stem cells (ASCs) isolated from horses suffering from metabolic syndrome.METHODS:Cultured cells in chondrogenic-inductive medium supplemented with Cladophora glomerata methanolic extract were experimented for expression of the main genes and microRNAs involved in the differentiation process using RT-PCR, for their morphological changes through confocal and scanning electron microscopy and for their physiological homeostasis.RESULTS:The different added concentrations of C. glomerata extract to the basic chondrogenic inductive culture medium promoted the proliferation of equine metabolic syndrome ASCs (ASCsEMS) and resulted in chondrogenic phenotype differentiation and higher mRNA expression of collagen type II, aggrecan, cartilage oligomeric matrix protein, and Sox9 among others. The results reveal an obvious inhibitory effect of hypertrophy and a strong repression of miR-145-5p, miR-146-3p, and miR-34a and miR-449a largely involved in cartilage degradation. Treated cells additionally exhibited significant reduced apoptosis and oxidative stress, as well as promoted viability and mitochondrial potentiation.CONCLUSION:Chondrogenesis in EqASCsEMS was found to be prominent after chondrogenic induction in conditions containing C. glomerata extract, suggesting that the macroalgae could be considered for the enhancement of ASC cultures and their reparative properties.
机译:背景:软骨发生代表高度动态的细胞过程,导致建立各种类型的软骨。然而,当发生压力相关的伤害时,需要快速和有效的组织再生来维持软骨完整性。已知间充质干细胞(MSCs)表现出高容量的自我更新和多能性效应,从而在受损软骨的修复和再生中发挥枢轴作用。另一方面,某些病理条件如MSCs的代谢紊乱的影响可能严重损害它们的再生性能,从而减少其治疗潜力。目的,我们试图改善和提高脂肪的体外有软骨性能力 - 从患有代谢综合征的马匹中分离的衍生间充质基质干细胞(ASCS)。方法:补充有Cladophora glomerata甲醇提取物的软骨内诱导培养基中的培养细胞进行了使用RT-PCR参与分化过程中涉及的主要基因和微大血管,通过共聚焦和扫描电子显微镜和它们的生理稳态,它们的形态改变。结果:将不同浓度的C.Glomerata提取物与碱性软骨诱导培养基的促进促进了马代谢综合征Ascs(ASCSEMS)的增殖,并导致软骨形成表型胶原II型,藻,软骨寡聚基蛋白和SOX9等的分化及更高mRNA表达。结果揭示了肥大的明显抑制作用和强大的抑制miR-145-5p,miR-146-3p和miR-34a和miR-449a,主要涉及软骨降解。处理过的细胞另外表现出显着降低的凋亡和氧化应激,以及促进的活力和线粒体增强。结论:在含有C.Glomerata提取物的条件下有软骨菌诱导后发现在EQSCSEM中的软骨发生突出,表明可以考虑宏观格子增强ASC文化及其检测性质。

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