Wang Gaoling, Li Yue, Wan Xing, Wang Yu, Niu Huimin, Tan Enxue, Niu Songlin, Feng Xiaojian, Hou Yanjuan, Wang Lihua
Department of Nephrology, Second Hospital, Shanxi Medical University, Taiyuan, People's Republic of China.
Department of Hospital Infection Management Office, Shanxi Bethune Hospital, Shanxi Academy of Medical Sciences, Tongji Shanxi Hospital, Third Hospital of Shanxi Medical University, Taiyuan, People's Republic of China.
Drug Des Devel Ther. 2025 Sep 4;19:7795-7808. doi: 10.2147/DDDT.S520262. eCollection 2025.
The epithelial-mesenchymal transition (EMT) plays an important role in renal fibrosis. Defective fatty acid oxidation (FAO) is the metabolic hallmark in injured tubular epithelial cells (TECs) contributing to renal fibrogenesis. Dysregulated cytoskeleton is believed to be an important element of renal injury and its function has been linked to cell metabolism, but little is known about the influence of the cytoskeleton on FAO in TECs. Herein, we aimed to investigate the protective effects and molecular mechanisms of pharmacological stabilization of the cytoskeleton against unilateral ureteric obstruction (UUO) -induced renal tubulointerstitial fibrosis.
TGF-β1-treated primary tubular epithelial cells (PTECs) and UUO mice served as renal interstitial fibrosis (RIF) models, with or without pharmacological cytoskeleton stabilization by Bis-T-23 (TargetMol, T30479; 20 mg/kg/day intraperitoneally in vivo; 5 μM in vitro). Biomarkers, HE staining, PAS staining, Masson staining, Sirius red staining, and TUNEL assay were used to assess kidney function and apoptosis. Real-time quantitative PCR (qPCR), Western blotting and immunohistochemistry (IHC) were performed to measure mRNA and protein expression levels respectively. PTECs viability was assessed by CCK-8 assay. Bulk mRNA sequencing was used for transcriptomic analysis of cellular metabolism. FITC-phalloidin fluorescence staining was used to detect the cytoskeleton. Fluorescent co-staining was used to detect the interactions between lipid droplets (LDs) and mitochondria.
Pharmacological stabilization of the cytoskeleton alleviated tubulointerstitial injury, functional changes and TEC damage in UUO mouse models. Stabilization of cytoskeleton restored FAO and enhanced FAO-associated respiration impaired by UUO injury. Here, we demonstrate that cytoskeleton rearrangement is a critical regulator of mitochondrial FAO in TECs both in vitro and in vivo. We further show that this cytoskeleton-dependent regulation of FAO occurs through altered interactions between LDs and mitochondria.
These findings indicate that cytoskeleton stabilization is required to maintain TECs metabolism and that therapeutic manipulation of cytoskeleton remodeling could protect the kidney from fibrogenesis conditions.
上皮-间质转化(EMT)在肾纤维化中起重要作用。脂肪酸氧化(FAO)缺陷是损伤的肾小管上皮细胞(TECs)中的代谢特征,有助于肾纤维化的发生。细胞骨架失调被认为是肾损伤的重要因素,其功能与细胞代谢有关,但关于细胞骨架对TECs中FAO的影响知之甚少。在此,我们旨在研究药理学稳定细胞骨架对单侧输尿管梗阻(UUO)诱导的肾小管间质纤维化的保护作用及分子机制。
用转化生长因子-β1(TGF-β1)处理的原代肾小管上皮细胞(PTECs)和UUO小鼠作为肾间质纤维化(RIF)模型,使用或不使用Bis-T-23(TargetMol,T30479;体内腹腔注射20mg/kg/天;体外5μM)进行药理学细胞骨架稳定处理。使用生物标志物、苏木精-伊红(HE)染色、过碘酸-雪夫(PAS)染色、Masson染色、天狼星红染色和TUNEL检测来评估肾功能和细胞凋亡。分别进行实时定量聚合酶链反应(qPCR)、蛋白质免疫印迹法和免疫组织化学(IHC)检测mRNA和蛋白质表达水平。通过细胞计数试剂盒-8(CCK-8)检测评估PTECs活力。使用批量mRNA测序对细胞代谢进行转录组分析。使用异硫氰酸荧光素-鬼笔环肽荧光染色检测细胞骨架。使用荧光共染色检测脂滴(LDs)与线粒体之间的相互作用。
药理学稳定细胞骨架减轻了UUO小鼠模型中的肾小管间质损伤、功能变化和TEC损伤。细胞骨架稳定恢复了FAO,并增强了因UUO损伤而受损的FAO相关呼吸。在此,我们证明细胞骨架重排在体外和体内都是TECs中线粒体FAO的关键调节因子。我们进一步表明,这种细胞骨架依赖性的FAO调节是通过改变LDs与线粒体之间的相互作用而发生的。
这些发现表明,需要稳定细胞骨架来维持TECs的代谢,并且对细胞骨架重塑的治疗性操作可以保护肾脏免受纤维化状态的影响。