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中国精品科技期刊2020
娄丽芳,张耀磊,李龙腾. 基于TGF-β1/Smads轴探讨菊苣根多糖治疗糖尿病小鼠肾病作用及机制[J]. 食品工业科技,2025,46(20):400−408. doi: 10.13386/j.issn1002-0306.2024110157.
引用本文: 娄丽芳,张耀磊,李龙腾. 基于TGF-β1/Smads轴探讨菊苣根多糖治疗糖尿病小鼠肾病作用及机制[J]. 食品工业科技,2025,46(20):400−408. doi: 10.13386/j.issn1002-0306.2024110157.
LOU Lifang, ZHANG Yaolei, LI Longteng. Study on the Mechanism of Chicory Root Polysaccharides in Treating Diabetic Nephropathy in Mice Based on TGF-β1/Smads Axis[J]. Science and Technology of Food Industry, 2025, 46(20): 400−408. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024110157.
Citation: LOU Lifang, ZHANG Yaolei, LI Longteng. Study on the Mechanism of Chicory Root Polysaccharides in Treating Diabetic Nephropathy in Mice Based on TGF-β1/Smads Axis[J]. Science and Technology of Food Industry, 2025, 46(20): 400−408. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024110157.

基于TGF-β1/Smads轴探讨菊苣根多糖治疗糖尿病小鼠肾病作用及机制

Study on the Mechanism of Chicory Root Polysaccharides in Treating Diabetic Nephropathy in Mice Based on TGF-β1/Smads Axis

  • 摘要: 本研究探讨菊苣根多糖(chicory root polysaccharides,CPS)对糖尿病肾病(iabetic nephropathy,DN)的治疗效果及其分子机制。采用db/db小鼠构建DN模型,将小鼠随机分为正常对照组、模型组、CPS高中低剂量组(800、400、200 mg/kg)和阳性对照组(厄贝沙坦),灌胃给药8周。8周后,收集尿液样本用于尿蛋白和尿肌酐测定;血清样本用于测定血清肌酐(Serum creatinine,Scr)、血尿素氮(Blood urea nitrogen,BUN)、半胱氨酸蛋白酶C(Cystatin C,Cys-C)、β2-微球蛋白(β2-Microglobulin,β2-MG)、总胆固醇(Total cholesterol,TC)、甘油三酯(Triglyceride,TG)、低密度脂蛋白胆固醇(Low-density lipoprotein cholesterol,LDL-C)和高密度脂蛋白胆固醇(High-density lipoprotein cholesterol,HDL-C);采用酶联免疫吸附测定法检测血清和肾脏中炎症因子TNF-α、IL-1β和IL-6的含量;HE染色分析肾脏组织病理改变;免疫组织化学检测TGF-β1、Smad2/3、α-SMA和Collagen-I的阳性表达。结果显示,CPS对各项指标的改善呈现明显的剂量依赖性,显著(P<0.01或P<0.05)改善DN小鼠肾功能指标,包括血清肌酐、尿素氮、胱抑素C和β2-微球蛋白水平。组织病理学检查表明,CPS能够改善肾小球肥大、系膜区增生及足突融合等超微结构病理改变。CPS还显著(P<0.01或P<0.05)降低血脂水平和炎症因子表达,改善脂质代谢紊乱。免疫组织化学分析发现,CPS通过抑制TGF-β1/Smads信号通路的激活,显著(P<0.01或P<0.05)降低α-SMA和Collagen-I等纤维化效应分子的表达。研究证实CPS具有保护肾小球滤过功能、维持肾小管上皮细胞完整性和抗纤维化的多重作用,为菊苣根功能性食品原料的开发和利用提供了重要的科学依据。

     

    Abstract: This study investigated the therapeutic effects and molecular mechanisms of chicory root polysaccharides (CPS) on diabetic nephropathy (DN). Using db/db mice to establish a DN model, mice were randomly divided into normal control group, model group, CPS high-, medium-, and low-dose groups (800, 400, 200 mg/kg), and positive control group (irbesartan), with administration via gavage for 8 weeks. After 8 weeks, urine samples were collected for protein and creatinine determination. Serum samples were used to measure serum creatinine (Scr), blood urea nitrogen (BUN), cystatin C (Cys-C), β2-microglobulin (β2-MG), total cholesterol (TC), triglycerides (TG), low-density lipoprotein cholesterol (LDL-C), and high-density lipoprotein cholesterol (HDL-C). Enzyme-linked immunosorbent assay (ELISA) was employed to detect inflammatory factors TNF-α, IL-1β, and IL-6 in serum and kidney tissues. HE staining was performed to analyze kidney tissue pathological changes. Immunohistochemistry was used to detect positive expressions of TGF-β1, Smad2/3, α-SMA, and Collagen-I. Results showed that CPS exhibited a significant dose-dependent improvement in various indicators, significantly (P<0.01 or P<0.05) ameliorating DN mice's kidney function parameters, including serum creatinine, urea nitrogen, cystatin C, and β2-microglobulin levels. Histopathological examination revealed that CPS could improve pathological ultrastructural changes such as glomerular hypertrophy, mesangial proliferation, and foot process fusion. CPS also significantly (P<0.01 or P<0.05) reduced blood lipid levels and inflammatory factor expressions, improving lipid metabolism disorders. Immunohistochemical analysis discovered that CPS inhibited the activation of TGF-β1/Smads signaling pathway, significantly (P<0.01 or P<0.05) reducing the expression of fibrosis effector molecules like α-SMA and Collagen-I. The study confirmed that CPS possesses multiple protective effects, including preserving glomerular filtration function, maintaining renal tubular epithelial cell integrity, and exhibiting anti-fibrotic properties, thereby providing crucial scientific evidence for the development and utilization of chicory root as a functional food ingredient.

     

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