同型半胱氨酸调控 FOXO3a 介导线粒体损伤在代谢相关脂肪性肝病中的作用
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1.宁夏医科大学总医院感染科,银川 750004;2.宁夏医科大学总医院医学实验中心,银川 750004;3.国家卫生健康委员会代谢性心血管疾病研究重点实验室,银川 750004;4.湖南省妇幼保健院,长沙 410028

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R575. 5;R34;R363

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Homocysteine regulates FOXO3a to mediate mitochondrial damage in metabolism-associated fatty liver disease
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1. Department of Infection, General Hospital of Ningxia Medical University, Yinchuan 750004, China. 2. Medical Experimental Center, General Hospital of Ningxia Medical University, Yinchuan 750004. 3. NHC Key Laboratory of Metabolic Cardiovascular Diseases Research, Yinchuan 750004. 4. Hunan Maternal and Child Health Hospital, Changsha 410028

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    摘要:

    目的 探讨同型半胱氨酸( Hcy) 调控 FOXO3a 介导线粒体损伤在代谢相关脂肪性肝病(MAFLD)中的影响及其作用机制。 方法 将 6 周龄 Cbs+ / -小鼠(n= 12)随机分为 2 组,普通饲料喂养 12 周设为饮食对照(ND)组,高蛋氨酸饲料喂养 12 周设为高蛋氨酸饮食(HMD)组。 CCK-8 试剂盒检测不同浓度(0、50、100、150 μmol / L)Hcy 处理后肝细胞的抑制率;体外培养 NCTC1469 小鼠正常肝细胞,分为正常对照(Control)组、Hcy 干预(100 μmol / L Hcy,Hcy)组、转染干扰片段对照( si-NC)组、转染 FOXO3a 干扰片段( siFOXO3a)组、Hcy 干预下干扰片段对照(Hcy+si-NC)组和 Hcy 干预下 FOXO3a 干扰片段(Hcy+si-FOXO3a)组。HE 染色观察肝组织损伤;油红 O 染色观察肝细胞内脂滴的分布及蓄积程度;总胆固醇(TC)和甘油三酯(TG)分析细胞内脂质代谢产物的含量;Western blot 检测小鼠肝脏组织(ND 组和 HMD 组)和肝细胞(Control 组和Hcy 组)中 FOXO3a 蛋白表达差异;ROS 观察细胞内氧化应激程度;JC-1 检测线粒体膜电位;Mito-tracker 观察线粒体的形态改变;RT-qPCR 检测各分组 mtDNA 表达变化。 结果 与 ND 组相比,HMD 组肝组织结构紊乱,肝细胞肿大,胞质疏松淡染,细胞内见大量空泡样变及脂滴沉积;与 Control 组相比,Hcy 组肝细胞内油红 O 阳性脂滴数量增多,TC、TG 水平升高(P<0. 001);与 ND 组、Control 组相比,HMD 组、Hcy 组中 FOXO3a 蛋白表达显著增高(P<0. 05);与 Hcy+si-NC 组相比,Hcy+si-FOXO3a 组细胞内 ROS 水平降低,JC-1 单体显著减少(P<0. 01),线粒体碎裂减少,mtDNA 表达水平降低(P<0. 01),细胞内油红 O 阳性脂滴数量减少,TC、TG 水平降低(P<0. 001)。 结论 FOXO3a 通过调控线粒体损伤在 Hcy 引起的 MAFLD 脂质代谢紊乱中起重要促进作用。

    Abstract:

    Objective To investigate the effects and mechanism of homocysteine (Hcy)-regulated FOXO3amediated mitochondrial damage in metabolic dysfunction-associated fatty liver disease (MAFLD). Methods Sixweek-old Cbs + / - mice (n= 12) were divided randomly into two groups and fed a normal diet group (ND group) or a high-methionine diet group (HMD group), respectively, for 12 weeks (n = 6 mice per group). The inhibition rate of hepatocytes after treatment with different concentrations(0、50、100、150 μmol / L) of Hcy was detected by the Cell Counting Kit-8 Kit. NCTC1469 normal mouse hepatocytes were divided into the following groups: Control group, Hcy intervention group (Hcy group, 100 μmol / L Hcy), negative control (NC) small interfering ( si) RNA-transfected group ( si-NC group), FOXO3a siRNA-transfected group ( si-FOXO3a group), NC siRNA-transfected with Hcy intervention group ( Hcy + si-NC group), and FOXO3a siRNA-transfected with Hcy intervention group ( Hcy + siFOXO3a group). Liver tissue injury was observed by HE staining and the distribution and accumulation of lipid droplets in hepatocytes was detected by Oil Red O staining. Total cholesterol ( TC) and triglycerides ( TG) were analyzed to indicate the lipid metabolite contents of the cells. FOXO3a protein expression in liver tissues (ND group and HMD group) and liver cells (Control group and Hcy group) were detected by Western blot. Reactive oxygen species (ROS) were measured to indicate the degree of oxidative stress in cells. Mitochondrial membrane potential was detected using JC-1 and morphological changes in mitochondria were observed using Mito-tracker. Changes in mtDNA expression were detected by quantitative reverse transcription-polymerase chain reaction. Results Liver tissue structure was disordered in the HMD group compared with the ND group, hepatocytes were enlarged, the cytoplasm was loose and lightly stained, and a large number of vacuoles and lipid droplets were observed in the liver cells. The number of Oil Red O-positive lipid droplets was increased in the Hcy group compared with the Control group, and TC and TG levels were increased( P<0. 001). Expression levels of FOXO3a protein were significantly increased in the HMD group and Hcy group compared with the ND group and Control group(P<0. 05). Intracellular ROS levels were decreased in the Hcy+si-FOXO3a group compared with the Hcy+si-NC group, and JC-1 monomer,mitochondrial fragmentation, mtDNA expression level, the number of Oil Red O-positive lipid droplets, and TC level and TG level were also all decreased(P<0. 01, P<0. 001). Conclusions FOXO3a plays an important promoting role in lipid metabolic disorders of MAFLD caused by Hcy by regulating mitochondrial damage.

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焦 运,张 婕,刘惠娟,杨佳琪,王雅菁,刘虹麟,马 芳,李桂忠,张慧萍,姜怡邓.同型半胱氨酸调控 FOXO3a 介导线粒体损伤在代谢相关脂肪性肝病中的作用[J].中国比较医学杂志,2026,36(3):36~45.

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  • 收稿日期:2025-07-01
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  • 在线发布日期: 2026-03-25
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