首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Spironolactone Ameliorates Senescence and Calcification by Modulating Autophagy in Rat Tendon-Derived Stem Cells via the NF- κ B/MAPK Pathway
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Spironolactone Ameliorates Senescence and Calcification by Modulating Autophagy in Rat Tendon-Derived Stem Cells via the NF- κ B/MAPK Pathway

机译:硫腙通过NF-κB/ MAPK途径调节大鼠肌腱衍生的干细胞的自噬改善衰老和钙化

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Tendinopathy is a disabling musculoskeletal disease, the pathological process of which is tightly associated with inflammation. Spironolactone (SP) has been widely used as a diuretic in clinical practice. Recently, SP has shown anti-inflammatory features in several diseases. Tendon-derived stem cells (TDSCs), a subset cell type from tendon tissue possessing clonogenic capacity, play a vital role in the pathological process of tendinopathy. In the present study, the protective effect of SP on TDSCs was demonstrated under simulated tendinopathy conditions both in vitro and in vivo . SP contributed to the maintenance of TDSC-specific genes or proteins, while suppressing the interleukin- (IL-) 1 β -induced overexpression of inflammation-mediated factors. Additionally, IL-1 β -induced cellular senescence in TDSCs was inhibited, while autophagy was enhanced, as determined via β -galactosidase activity, western blot (WB), and quantitative real-time polymerase chain reaction analysis. With the aid of several emerging bioinformatics tools, the mitogen-activated protein kinase (MAPK) pathway likely participated in the effect of SP, which was further validated through WB analysis and the use of MAPK agonist. Immunofluorescence analysis and an NF- κ B agonist were used to confirm the inhibitory effect of SP on IL-1 β -induced activation of the NF- κ B pathway. X-ray, immunofluorescence, immunohistochemistry, hematoxylin and eosin staining, histological grades, and Masson staining showed that SP ameliorated tendinopathy in an Achilles tenotomy (AT) rat model in vivo . This work elucidates the protective role of SP on the pathological process of tendinopathy both in vitro and in vivo , indicating a potential therapeutic strategy for tendinopathy treatment.
机译:腱病是一种致残性骨骼疾病,病理过程,其中被紧紧地与炎症有关。螺旋内酯(SP)已被广泛用作临床实践中的利尿剂。最近,SP在几种疾病中表现出抗炎特征。肌腱衍生的干细胞(Tdscs),来自具有克隆托能力的肌腱组织的子集细胞类型,在肌腱病的病理过程中起到至关重要的作用。在本研究中,SP对TDSCS的保护作用在体外和体内模拟肌腱病变下证明了在模拟的肌腱病变下。 SP有助于维持TDSC特异性基因或蛋白质,同时抑制白细胞介素 - (IL-)1β-屈服过表达的炎症介导的因子。另外,抑制了TDSC中的IL-1β-诱导的细胞衰老,同时提高自噬,通过β-甘乳酰基酶活性,Western印迹(WB)和定量的实时聚合酶链反应分析。借助于几种新出现的生物信息学工具,丝裂剂激活蛋白激酶(MAPK)途径可能参与SP的效果,通过WB分析和MAPK激动剂的使用进一步验证。使用免疫荧光分析和NF-κB激动剂用于确认SP对IL-1β-诱导的NF-κB途径活化的抑制作用。 X射线,免疫荧光,免疫组织化学,血毒素和曙红染色,组织学等级和Masson染色表明,在体内Achilles enotomy(AT)大鼠模型中的Sp改善肌腱病变。这项工作阐明了SP在体外和体内肌腱病变的病理过程中的保护作用,表明血肿病治疗的潜在治疗策略。

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