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首页> 外文期刊>Veterinary Immunology and Immunopathology >Preconditioning of canine adipose tissue-derived mesenchymal stem cells with deferoxamine potentiates anti-inflammatory effects by directing/reprogramming M2 macrophage polarization
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Preconditioning of canine adipose tissue-derived mesenchymal stem cells with deferoxamine potentiates anti-inflammatory effects by directing/reprogramming M2 macrophage polarization

机译:犬的预处理脂肪脂肪组织衍生的间充质干细胞与脱氧胺增强抗炎作用通过引导/重编程M2巨噬细胞极化

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摘要

Preconditioning with hypoxia or hypoxia-mimetic agents has been tried with mesenchymal stem cells (MSCs) to improve the secretion of anti-inflammatory factors. These preconditioning procedures upregulate hypoxia inducible factor (HIF) 1-alpha leading to the transcription of HIF-dependent tissue protective and anti-inflammatory genes. Due to the limited number of studies exploring the activity of deferoxamine (DFO)-a hypoxia-mimetic agent in MSCs, we aimed to determine whether DFO can enhance the secretion of antiinflammatory substances in canine adipose tissue-derived (cAT)-MSCs. Furthermore, we investigated whether this activity of DFO could affect macrophage polarization and activate anti-inflammatory reactions. cAT-MSCs preconditioned with DFO exhibited enhanced secretion of anti-inflammatory factors such as prostaglandin E2 and tumor necrosis factor-alpha-stimulated gene-6. To evaluate the interaction between DFO preconditioned cAT-MSCs and macrophages, RAW 264.7 cells were co-cultured with cAT-MSCs using the Transwell system, and changes in the expression of factors related to macrophage polarization were analyzed using the quantitative real-time PCR and western blot assays. When RAW 264.7 cells were co-cultured with DFO preconditioned cAT-MSCs, the expression of M1 and M2 markers decreased and increased, respectively, compared to co-culturing with non-preconditioned cAT-MSCs. Thus, cAT-MSCs preconditioned with DFO can more effectively direct and reprogram macrophage polarization into the M2 phase, an anti-inflammatory state.
机译:用间充质干细胞(MSCs)尝试了用缺氧或缺氧剂试剂进行预处理,以改善抗炎因子的分泌。这些预处理程序上调缺氧诱导因子(HIF)1-α导致HIF依赖性组织保护和抗炎基因的转录。由于探索MSCs中脱氧模拟剂(DFO)-A缺氧剂活性的有限数量的研究,我们旨在确定DFO是否可以增强犬脂肪组织衍生(CAT)-MSC的抗炎物质的分泌。此外,我们研究了DFO的这种活动是否可以影响巨噬细胞极化和激活抗炎反应。 DFO预处理的猫-MSC表现出增强的抗炎因子分泌,例如前列腺素E2和肿瘤坏死因子-α刺激的基因-6。为了评估DFO预处理的猫-MSCs和巨噬细胞之间的相互作用,使用Transwell系统将Raw 264.7细胞与CAT-MSC进行共同培养,并使用定量实时PCR分析与巨噬细胞极化相关的因子表达的变化Western印迹测定。当用DFO预处理的CAT-MSC共同培养RAW 264.7细胞时,与用非预处理的猫-MSCs共培养相比,M1和M2标记的表达分别降低和增加。因此,用DFO预处理的CAT-MSC可以更有效地直接和重新编程巨噬细胞偏振进入M2相,抗炎状态。

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