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Selective inhibition of long isoforms of phosphodiesterase 4D mitigates liver fibrosis in mouse models
Jeonghan Kim, Heeeun Yoon, Seoung Chan Joe, Antoine Smith, Jinsung Park, Geunhye Hong, Ji Myeong Ha, Eun Bae Kim, Ekihiro Seki, Myung K. Kim, Hae-Ock Lee, Ho-Shik Kim, Jay H. Chung
Jeonghan Kim, Heeeun Yoon, Seoung Chan Joe, Antoine Smith, Jinsung Park, Geunhye Hong, Ji Myeong Ha, Eun Bae Kim, Ekihiro Seki, Myung K. Kim, Hae-Ock Lee, Ho-Shik Kim, Jay H. Chung
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Research Article Hepatology Inflammation

Selective inhibition of long isoforms of phosphodiesterase 4D mitigates liver fibrosis in mouse models

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Abstract

Chronic inflammation leads to tissue fibrosis, which can disrupt the function of the parenchyma of the organ and ultimately lead to organ failure. The most prevalent form of this occurs in chronic hepatitis, which leads to liver fibrosis and, ultimately, cirrhosis and hepatic failure. Although there is no specific treatment for fibrosis, the phosphodiesterase 4 (PDE4) competitive inhibitors have been shown to ameliorate fibrosis in rodent models. However, competitive inhibitors of PDE4 have shown significantly reduced effectiveness due to severe gastrointestinal side effects. The PDE4 family is composed of 4 genes (PDE4A–D), with each having up to 9 differentially spliced isoforms. Here, we report that PDE4D expression is specifically elevated during the hepatic fibrosis stage of liver disease progression. Furthermore, the expression of the long isoforms of PDE4D is selectively elevated in activated hepatic stellate cells, leading to the enhanced accumulation of extracellular matrix components. In a mouse model of liver fibrosis, genetic ablation of PDE4D or pharmacological inhibition using D159687, a selective allosteric inhibitor targeting the long isoforms of PDE4D, suppresses the expression of inflammatory and profibrogenic genes. These findings establish the long isoforms of PDE4D as key drivers of liver fibrosis and highlight their potential as therapeutic targets to ameliorate liver fibrosis.

Authors

Jeonghan Kim, Heeeun Yoon, Seoung Chan Joe, Antoine Smith, Jinsung Park, Geunhye Hong, Ji Myeong Ha, Eun Bae Kim, Ekihiro Seki, Myung K. Kim, Hae-Ock Lee, Ho-Shik Kim, Jay H. Chung

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Figure 3

Pharmacological inhibition of PDE4D downregulates TGFb-induced HSC migration.

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Pharmacological inhibition of PDE4D downregulates TGFb-induced HSC migra...
(A and B) LX-2 transmigration assay was performed for 18 hours after treatment with 2 ng/ml TGFb with or without 10 μM D159687. (C) Quantification of relative cell migration in PDE4D-knockdown HSCs. (D) LX-2 cells stably expressing Flag-PDE4D5 (long isoform) were treated with 2 ng/ml TGFb for 24 hours in the presence of 10 μM D159687. PDE4D5 was immunoprecipitated with Flag magnetic beads and immunoblotted with anti-integrin a5. (E) Phosphorylated FAK was visualized using antibodies specific for Tyr397 and Tyr 925, and total FAK was used for quantitative comparison. (F and G) The levels of RAC1-GTP and RHO-GTP in LX-2 cells treated with 10 ng/ml TGFb in the presence of 10 μM D159687 for 1 hour. (H and I) Actin polymerization was visualized by staining F-actin with Alexa-Fluor-488-conjugated-phalloidin. (J and K) Representative phase contrast images of collagen-based cell contraction in LX-2 cells. All values are presented as the mean ± SEM of at least 3 independent experiments. 1-way ANOVA with Tukey’s post hoc test for multiple comparisons was used for statistical analysis in C and K; A 2-tailed unpaired Student’s t test was used to evaluate the statistical significance in I. *P < 0.05; **P < 0.01; ***P < 0.001. Scale bars: 150 μl (A); 20 μl (H).

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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