Extracellular Vesicles from miR-148a-5p-Enriched Bone Marrow Mesenchymal Stem Cells Relieve Hepatic Fibrosis by Targeting Smad4

被引:0
作者
Ji Xuan
Huabin Xu
Hui Li
Desheng Chen
Yuping Qiu
Xi Chen
Mei Shao
Xianming Xia
机构
[1] Jinling Hospital,Department of Gastroenterology
[2] Nanjing University,Department of Gastroenterology, Affiliated Hospital of Integrated Traditional Chinese and Western Medicine
[3] School of Medicine,Department of Blood Transfusion Medicine
[4] Nanjing University of Chinese Medicine,Department of Digestive Medicine Center and General Practice
[5] Jinling Hospital,undefined
[6] Nanjing University,undefined
[7] School of Medicine,undefined
[8] The Seventh Affiliated Hospital of Sun Yat-sen University,undefined
来源
Molecular Biotechnology | 2022年 / 64卷
关键词
miR-148a-5p; Smad4; Extracellular vesicle; Liver fibrosis;
D O I
暂无
中图分类号
学科分类号
摘要
Liver fibrosis is a hallmark feature of many chronic liver diseases, which is the leading cause of morbidity and mortality worldwide. Bone marrow mesenchymal stem cells (BMSCs)-derived extracellular vesicles have been applied in many diseases. In this study, we aimed to explore the specific mechanism of extracellular vesicles from BMSCs in liver fibrosis. Bioinformatics analysis was employed to screen miRNA and its target mRNA. Sirius Red staining was carried out to examine fibrosis in liver tissues. Extracellular vesicle morphology was assessed using Transmission Electron Microscopy. Quantitative real-time PCR (qRT-PCR) and western blotting analysis were performed to detect the expressions of miR-148a-5p, Smad4, transforming growth factor-β1 (TGF-β1), tissue inhibitor of metalloproteinase 1 (TIMP-1), Collagen I, α-smooth muscle actin (α-SMA), and extracellular vesicle markers CD9, TSG101, CD63, and calnexin. Dual-luciferase report gene assay was used for the luciferase activity analysis. Bioinformatics analysis revealed miR-148a-5p as a regulator in liver fibrosis. QRT-PCR results indicated that miR-148a-5p was lowly expressed in both thioacetamide (TAA)-induced mice and TGF-β1-activated hepatic stellate cells. Extracellular vesicles from miR-148a-5p enriched BMSCs downregulated the mRNA and protein levels of TGF-β1, TIMP-1, Collagen I, and α-SMA. Further bioinformatics analysis indicated that Smad4 was related to liver fibrosis. Furthermore, the dual-luciferase report gene assay confirmed the binding relationship between miR-148a-5p and Smad4. Extracellular vesicles from miR-148a-5p enriched BMSCs attenuated hepatic fibrosis in liver fibrosis by targeting Smad4.
引用
收藏
页码:535 / 545
页数:10
相关论文
共 276 条
  • [1] Bataller R(2005)Liver fibrosis The Journal of Clinical Investigation 115 209-218
  • [2] Brenner DA(2011)Pathogenesis of liver fibrosis Annual Review of Pathology: Mechanisms of Disease 6 425-456
  • [3] Hernandez-Gea V(2019)Vitamin D and liver fibrosis: Molecular mechanisms and clinical studies Biomedicine & Pharmacotherapy 109 1351-1360
  • [4] Friedman SL(2021)Vitamin D alleviates liver fibrosis by inhibiting histidine-rich calcium binding protein (HRC) Chemico-Biological Interactions 334 109355-1008
  • [5] Udomsinprasert W(2020)On-treatment changes in FIB-4 and 1-Year FIB-4 values help identify patients with chronic hepatitis B receiving entecavir therapy who have the lowest risk of hepatocellular carcinoma Cancers (Basel) 12 1177-59
  • [6] Jittikoon J(2016)α-fetoprotein levels after interferon therapy predict regression of liver fibrosis in patients with sustained virological response Journal of Gastroenterology and Hepatology 31 1001-596
  • [7] Lu W(2015)Liver fibrosis: Common mechanisms and antifibrotic therapies Clinics and Research in Hepatology and Gastroenterology 39 S51-1402
  • [8] Li X(2016)New developments on the treatment of liver fibrosis Digestive Diseases 34 589-2030
  • [9] Liu N(2017)Bone marrow mesenchymal stem cells inhibit dendritic cells differentiation and maturation by microRNA-23b Bioscience Reports 37 BSR20160436-d93
  • [10] Zhang Y(2018)H3K36 trimethylation mediated by SETD2 regulates the fate of bone marrow mesenchymal stem cells PLoS Biology 16 e2006522-11523