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"Hui Chen"

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"Hui Chen"

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Cholestatic liver disease

Both liver parenchymal and non-parenchymal cells express JCAD protein under various circumstances
Li Xie, Li Zhang, Hui Chen, Yong-Yu Yang, Jian Wu
Clin Mol Hepatol 2024;30(2):279-280.
Published online March 20, 2024
DOI: https://doi.org/10.3350/cmh.2024.0191

Citations

Citations to this article as recorded by  Crossref logo
  • Correspondence on Letter regarding “Both liver parenchymal and non-parenchymal cells express JCAD proteins under various circumstances”
    Byoung Kuk Jang
    Clinical and Molecular Hepatology.2024; 30(2): 297.     CrossRef
  • 6,648 View
  • 73 Download
  • 1 Web of Science
  • Crossref
Original Article

Cholestatic liver disease

JCAD deficiency attenuates activation of hepatic stellate cells and cholestatic fibrosis
Li Xie, Hui Chen, Li Zhang, Yue Ma, Yuan Zhou, Yong-Yu Yang, Chang Liu, Yu-Li Wang, Ya-Jun Yan, Jia Ding, Xiao Teng, Qiang Yang, Xiu-Ping Liu, Jian Wu
Clin Mol Hepatol 2024;30(2):206-224.
Published online January 8, 2024
DOI: https://doi.org/10.3350/cmh.2023.0506
Background/Aims
Cholestatic liver diseases including primary biliary cholangitis (PBC) are associated with active hepatic fibrogenesis, which ultimately progresses to cirrhosis. Activated hepatic stellate cells (HSCs) are the main fibrogenic effectors in response to cholangiocyte damage. JCAD regulates cell proliferation and malignant transformation in nonalcoholic steatoheaptitis-associated hepatocellular carcinoma (NASH-HCC). However, its participation in cholestatic fibrosis has not been explored yet.
Methods
Serial sections of liver tissue of PBC patients were stained with immunofluorescence. Hepatic fibrosis was induced by bile duct ligation (BDL) in wild-type (WT), global JCAD knockout mice (JCAD-KO) and HSC-specific JCAD knockout mice (HSC-JCAD-KO), and evaluated by histopathology and biochemical tests. In situ-activated HSCs isolated from BDL mice were used to determine effects of JCAD on HSC activation.
Result
s: In consistence with staining of liver sections from PBC patients, immunofluorescent staining revealed that JCAD expression was identified in smooth muscle α-actin (α-SMA)-positive fibroblast-like cells and was significantly up-regulated in WT mice with BDL. JCAD deficiency remarkably ameliorated BDL-induced hepatic injury and fibrosis, as documented by liver hydroxyproline content, when compared to WT mice with BDL. Histopathologically, collagen deposition was dramatically reduced in both JCAD-KO and HSC-JCAD-KO mice compared to WT mice, as visualized by Trichrome staining and semi-quantitative scores. Moreover, JCAD deprivation significantly attenuated in situ HSC activation and reduced expression of fibrotic genes after BDL.
Conclusions
JCAD deficiency effectively suppressed hepatic fibrosis induced by BDL in mice, and the underlying mechanisms are largely through suppressed Hippo-YAP signaling activity in HSCs.

Citations

Citations to this article as recorded by  Crossref logo
  • Features and functional mechanisms of super-enhancers in cardiovascular disorders, cancer, autoimmune diseases and neurodegenerative disorders
    Zi-Rong Li, Yong-Yan Wang, Chao Zhang, Jin-Sha Shi, Xiao Yu, Ni-Tong Ying, Xiao-Ke Xu, Juan-Juan Li, Tao Guo
    Cellular Signalling.2026; 138: 112252.     CrossRef
  • Transient receptor potential channel 6 knockout ameliorates hepatic fibrosis by inhibiting the activation and proliferation of hepatic stellate cells
    Xixi Zeng, Yanhong Liao, Weiyi Cheng
    Journal of Gastroenterology and Hepatology.2025; 40(1): 294.     CrossRef
  • Hepatic Stellate Cell TM4SF1 Accelerates Hepatic Fibrosis Progression via Interacting With the Tyrosine Kinase c-Src
    Shenglu Liu, Peng Tan, Jiatong Chen, Zhiwei Huang, Bingyu Ren, Zhonghao Jiang, Boyuan Gu, Wenhao Yu, Lei Sun, Yingjun Chen, Jian Ruan, Wenguang Fu
    Cellular and Molecular Gastroenterology and Hepatology.2025; 19(10): 101559.     CrossRef
  • Biliary YB-1/GLI2 axis facilitates ductular reaction and promotes HSC activation via SPP1/integrin αvβ1 signaling during liver fibrogenesis
    Yuecheng Guo, Qingqing Zhang, Binghang Li, Weiming Dai, Bo Shen, Zhenyang Shen, Junjun Wang, Qichao Ge, Hanjing Zhangdi, Guangwen Chen, Qidi Zhang, Xiaobo Cai, Hui Dong, Guangjian Fan, Lungen Lu, Fei Li
    Hepatology.2025;[Epub]     CrossRef
  • JCAD deficiency delayed liver regenerative repair through the Hippo–YAP signalling pathway
    Li Zhang, Yong‐Yu Yang, Li Xie, Yuan Zhou, Zhenxing Zhong, Jia Ding, Zhong‐Hua Wang, Yu‐Li Wang, Xiu‐Ping Liu, Fa‐Xing Yu, Jian Wu
    Clinical and Translational Medicine.2024;[Epub]     CrossRef
  • JCAD, a new potential therapeutic target in cholestatic liver disease
    Byoung Kuk Jang
    Clinical and Molecular Hepatology.2024; 30(2): 166.     CrossRef
  • Correspondence on Letter regarding “Both liver parenchymal and non-parenchymal cells express JCAD proteins under various circumstances”
    Byoung Kuk Jang
    Clinical and Molecular Hepatology.2024; 30(2): 297.     CrossRef
  • Both liver parenchymal and non-parenchymal cells express JCAD protein under various circumstances
    Li Xie, Li Zhang, Hui Chen, Yong-Yu Yang, Jian Wu
    Clinical and Molecular Hepatology.2024; 30(2): 279.     CrossRef
  • 11,580 View
  • 283 Download
  • 8 Web of Science
  • Crossref