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Different Donors Mesenchymal Stromal Cells Secretomes Reveal Heterogeneous Profile of Relevance for Therapeutic Use

机译:不同的供体间充质基质细胞分泌物揭示了对治疗用途相关性的异质型材

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Duchenne muscular dystrophy (DMD) is a lethal X-linked disorder caused by null mutations in the dystrophin gene. Although the primary defect is the deficiency of muscle dystrophin, secondary events, including chronic inflammation, fibrosis, and muscle regeneration failure are thought to actively contribute to disease progression. Despite several advances, there is still no effective therapy for DMD. Therefore, the potential regenerative capacities, and immune-privileged properties of mesenchymal stromal cells (MSCs), have been the focus of intense investigation in different animal models aiming the treatment of these disorders. However, these studies have shown different outcomes according to the sources from which MSCs were obtained, which raise the question whether stem cells from distinct sources have comparable clinical effects. Here, we analyzed the protein content of the secretome of MSCs, isolated from three different sources (adipose tissue, skeletal muscle, and uterine tubes), obtained from five donors and evaluated their in vitro properties when cocultured with DMD myoblasts. All MSC lineages showed pathways enrichment related to protein metabolic process, oxidation-reduction process, cell proliferation, and regulation of apoptosis. We found that MSCs secretome proteins and their effect in vitro vary significantly according to the tissue and donors, including opposite effects in apoptosis assay, indicating the importance of characterizing MSC secretome profile before its use in animal and clinical trials. Despite the individual differences a pool of conditioned media from all MSCs lineages was able to delay apoptosis and enhance migration when in contact with DMD myoblasts.
机译:Duchenne肌营养不良(DMD)是患者基因中含有零突变引起的致死X链接疾病。虽然主要缺陷是肌肉营养不良症的缺乏,但常见事件,包括慢性炎症,纤维化和肌肉再生衰竭被认为积极促进疾病进展。尽管有几次进展,但DMD仍然没有有效的治疗。因此,间充质基质细胞(MSCs)的潜在的再生能力和免疫特征性能是旨在治疗这些疾病的不同动物模型中的激烈调查的重点。然而,这些研究表明了根据获得MSCs的来源的不同结果,这提出了来自不同来源的干细胞的问题具有可比的临床作用。在这里,我们分析了MSCs沉淀的蛋白质含量,从三种不同的来源(脂肪组织,骨骼肌和子宫管)中分离出来,从五个供体中获得,并在用DMD肌细胞与DMD肌细胞与DMD肌细胞共同化时评价它们的体外性质。所有MSC谱系均显示出与蛋白质代谢过程,氧化还原过程,细胞增殖和细胞凋亡调节相关的途径富集。我们发现MSCs沉酯蛋白及其体外效果根据组织和供体而显着变化,包括细胞凋亡测定中的相反影响,表明在其在动物和临床试验中使用之前表征MSC沉淀型的重要性。尽管个人差异差异,来自所有MSCS谱系的条件媒体池能够在与DMD肌细胞接触时延迟细胞凋亡并增强迁移。

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