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Fibroblast growth factor-1 as a mediator of paracrine effects of canine adipose tissue-derived mesenchymal stem cells on in vitro-induced insulin resistance models

机译:成纤维细胞生长因子-1作为犬帕拉甘蓝曲氏植物作用的介质脂肪脂肪组织衍生的间充质干细胞对体外诱导的胰岛素抵抗模型

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摘要

Abstract Background In the field of diabetes research, many studies on cell therapy have been conducted using mesenchymal stem cells. This research was intended to shed light on the influence of canine adipose-tissue-derived mesenchymal stem cell conditioned medium (cAT-MSC CM) on in vitro insulin resistance models that were induced in differentiated 3T3-L1 adipocytes and the possible mechanisms involved in the phenomenon. Results Gene expression levels of insulin receptor substrate-1 (IRS-1) and glucose transporter type 4 (GLUT4) were used as indicators of insulin resistance. Relative protein expression levels of IRS-1 and GLUT4 were augmented in the cAT-MSC CM treatment group compared to insulin resistance models, indicating beneficial effects of cAT-MSC to DM, probably by actions of secreting factors. With reference to previous studies on fibroblast growth factor-1 (FGF1), we proposed FGF1 as a key contributing factor to the mechanism of action. We added anti-FGF1 neutralizing antibody to the CM-treated insulin resistance models. As a result, significantly diminished protein levels of IRS-1 and GLUT4 were observed, supporting our assumption. Similar results were observed in glucose uptake assay. Conclusions Accordingly, this study advocated the potential of FGF-1 from cAT-MSC CM as an alternative insulin sensitizer and discovered a signalling factor associated with the paracrine effects of cAT-MSC.
机译:抽象背景在糖尿病研究领域,使用间充质干细胞进行了许多关于细胞疗法的研究。该研究旨在阐明犬脂肪 - 组织衍生的间充质干细胞条件(CAT-MSC cm)对分化的3T3-L1脂肪细胞的体外胰岛素抵抗模型的影响,以及所涉及的可能机制现象。结果胰岛素受体基质-1(IRS-1)和葡萄糖转运蛋白4(Glut4)的基因表达水平用作胰岛素抗性的指标。与胰岛素抵抗模型相比,在CAT-MSC CM处理组中增加了IRS-1和Glut4的相对蛋白表达水平,表明CAT-MSC至DM的有益效果,可能是通过分泌因子的作用。参考先前对成纤维细胞生长因子-1(FGF1)的研究,我们提出了FGF1作为作用机制的关键贡献因素。我们将抗FGF1中和抗体添加到CM处理的胰岛素抵抗模型中。结果,观察到IRS-1的蛋白质水平显着降低,并支持我们的假设。在葡萄糖摄取测定中观察到类似的结果。结论相应地,本研究主张从猫-MSCCM中的FGF-1作为替代胰岛素敏化剂的潜力,并发现了与CAT-MSC的旁静脉效应相关的信号传导因子。

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