基础医学与临床 ›› 2026, Vol. 46 ›› Issue (10): 1329-1335.doi: 10.16352/j.issn.1001-6325.2026.10.1329

• 研究论文 • 上一篇    下一篇

铁死亡相关基因Slc4a1在年龄相关肌少症小鼠中的作用

侯静雯1, 刘蓓蓓1, 努尔古力·阿不来提2, 朱新华1*   

  1. 新疆医科大学第五附属医院 1.老年病科;2.肾病科,新疆 乌鲁木齐 830011
  • 收稿日期:2025-08-18 修回日期:2025-11-26 出版日期:2026-10-05 发布日期:2026-09-18
  • 通讯作者: *zxh20140831@163.com
  • 基金资助:
    新疆医科大学第五临床医学院(第五附属医院)青年科研启航项目(XYDWFY-ZR-202311)

Role of ferroptosis-related gene Slc4a1 in age-related sarcopenic mice

HOU Jingwen1, LIU Beibei1, Nuerguli·ABULAITI2, ZHU Xinhua1*   

  1. 1. Department of Geriatrics; 2. Department of Nephrology, the Fifth Affiliated Hospital of Xinjiang Medical University, Urumqi 830011, China
  • Received:2025-08-18 Revised:2025-11-26 Online:2026-10-05 Published:2026-09-18
  • Contact: *zxh20140831@163.com

摘要: 目的 通过基因表达数据分析和动物模型实验,探索与铁死亡相关基因及其在年龄相关肌少症中的作用机制。方法 从公开数据库GSE226117和GSE175562中收集年龄相关肌少症小鼠及健康对照小鼠的骨骼肌基因表达数据。通过差异表达分析和加权基因共表达网络分析(WGCNA),筛选与肌少症相关的关键基因,并通过功能富集分析进一步探讨其与铁死亡的关系。建立老年肌少症小鼠模型,并以青年小鼠为对照,收集骨骼肌组织和血清样本。HE染色观察组织病理变化,免疫组化检测关键基因溶质载体家族40成员a1 (Slc4a1)的表达;通过ELISA检测GSH、MDA和ROS水平;采用RT-qPCR和Western blot检测Slc4a1、Fth1、Gpx4、Slc7a11、Tfrc mRNA及相应蛋白的表达水平。结果 差异表达分析鉴定出GSE226117和GSE175562数据集中共有1 326个差异表达基因,并通过WGCNA聚类为5个共表达模块,其中brown模块与年龄相关性最高。富集分析显示,brown模块中Slc4a1、Slc39a8和Tfrc显著参与铁死亡调控(P<0.05)。Slc4a1在两数据集中均显著低表达(P<0.05),进一步被鉴定为肌少症的关键基因。与青年对照组相比,在老年肌少症小鼠模型中,HE染色显示骨骼肌组织结构稀疏,Slc4a1表达显著降低,抗氧化标志物GSH水平显著降低,脂质过氧化产物MDA和氧化应激标志物ROS水平显著升高(P<0.05),铁死亡相关基因Slc4a1、Fth1、Gpx4、Slc7a11和Tfrc的表达均显著下调(P<0.05)。结论 Slc4a1可能通过参与铁死亡调控在肌少症的病理机制中发挥作用,为肌少症的诊断和治疗提供了潜在靶点。

关键词: 年龄相关肌少症, 铁死亡, 溶质载体家族40成员A, 氧化应激

Abstract: Objective To systematically explore the key genes related to ferroptosis and their potential mechanisms in age-related sarcopenia through gene expression data analysis and animal model experiments. Methods The skeletal muscle gene expression data of age-related sarcopenia mice and healthy control mice were collected from public databases GSE226117 and GSE175562. Through differential expression analysis and weighted gene co-expression network analysis (WGCNA), key genes related to sarcopenia were screened, and their relationship with ferroptosis was further explored by functional enrichment analysis. An aged sarcopenia mouse model was established, and young mice were used as the control. Skeletal muscle tissues and serum samples were collected. HE staining was used to observe the histopathological changes, and immunohistochemistry was employed to detect the expression of the key gene Slc4a1. The levels of GSH, MDA and ROS were detected by ELISA. The expression levels of Slc4a1, Fth1, Gpx4, Slc7a11 and Tfrc were detected by RT-qPCR and Western blot. Results Differential expression analysis identified a total of 1 326 differentially expressed genes in the GSE226117 and GSE175562 datasets, and these genes were clustered into 5 co-expression modules through WGCNA. Among them, the brown module had the highest correlation with age(P<0.05). Enrichment analysis revealed that Slc4a1, Slc39a8 and Tfrc in the brown module were significantly involved in the regulation of ferroptosis. Slc4a1 was significantly downregulated in both datasets and was further identified as a key gene for sarcopenia(P<0.05). Compared with the young control group, in the aged sarcopenia mouse model, HE staining showed that the skeletal muscle tissue structure was sparse, and the expression of Slc4a1 was significantly decreased. The level of the antioxidant marker GSH was significantly reduced, while the levels of the lipid peroxidation product MDA and the oxidative stress marker ROS were significantly increased (P<0.05). The expressions of ferroptosis-related genes including Slc4a1, Fth1, Gpx4, Slc7a11 and Tfrc were all significantly downregulated (P<0.05). Conclusions Slc4a1 may play a role in the pathological mechanism of sarcopenia by participating in the regulation of ferroptosis, providing a potential target for the diagnosis and treatment of sarcopenia.

Key words: age-related sarcopenia, ferroptosis, solute carrier family 40 member a1, oxidative stress

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