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Updated: Feb 11, 2026

The Dimethylnitrosamine Induced Liver Fibrosis Model in the Rat
Published on: June 17, 2016
Liver fibrosis: Direct antifibrotic agents and targeted therapies
Detlef Schuppan1, Muhammad Ashfaq-Khan2, Ai Ting Yang2
1Institute of Translational Immunology and Research Center for Immunotherapy, University of Mainz Medical Center, Mainz, Germany; Division of Gastroenterology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, USA.
Abstract:
Liver fibrosis and in particular cirrhosis are the major causes of morbidity and mortality of patients with chronic liver disease. Their prevention or reversal have become major endpoints in clinical trials with novel liver specific drugs. Remarkable progress has been made with therapies that efficiently address the cause of the underlying liver disease, as in chronic hepatitis B and C. Highly effective antiviral therapy can prevent progression or even induce reversal in the majority of patients, but such treatment remains elusive for the majority of liver patients with advanced alcoholic or nonalcoholic steatohepatitis, genetic or autoimmune liver diseases. Moreover, drugs that would speed up fibrosis reversal are needed for patients with cirrhosis, since even with effective causal therapy reversal is slow or the disease may further progress. Therefore, highly efficient and specific antifibrotic agents are needed that can address advanced fibrosis, i.e., the detrimental downstream result of all chronic liver diseases. This review discusses targeted antifibrotic therapies that address molecules and mechanisms that are central to fibrogenesis or fibrolysis, including strategies that allow targeting of activated hepatic stellate cells and myofibroblasts and other fibrogenic effector cells. Focus is on collagen synthesis, integrins and cells and mechanisms specific including specific downregulation of TGFbeta signaling, major extracellular matrix (ECM) components, ECM-crosslinking, and ECM-receptors such as integrins and discoidin domain receptors, ECM-crosslinking and methods for targeted delivery of small interfering RNA, antisense oligonucleotides and small molecules to increase potency and reduce side effects. With an increased understanding of the biology of the ECM and liver fibrosis and an improved preclinical validation, the translation of these approaches to the clinic is currently ongoing. Application to patients with liver fibrosis and a personalized treatment is tightly linked to the development of noninvasive biomarkers of fibrosis, fibrogenesis and fibrolysis.
Insights
New antifibrotic therapies target key fibrogenesis molecules and cells to reverse liver fibrosis. These targeted approaches aim to improve outcomes for patients with advanced liver disease, including cirrhosis, where causal treatments are insufficient.
Area of Science:
- Hepatology and Fibrosis Research
- Drug Discovery and Development
Background:
- Liver fibrosis and cirrhosis are leading causes of death from chronic liver disease.
- Current therapies effectively treat some causes like hepatitis B/C but not advanced alcoholic or nonalcoholic steatohepatitis, genetic, or autoimmune liver diseases.
- Antifibrotic drugs are needed to accelerate fibrosis reversal in cirrhosis and manage downstream effects.
Purpose of the Study:
- To review targeted antifibrotic therapies for liver fibrosis.
- To discuss strategies targeting fibrogenesis and fibrolysis mechanisms.
- To explore the translation of these therapies to clinical application.
Main Methods:
- Focus on targeting activated hepatic stellate cells and myofibroblasts.
- Discussing strategies for collagen synthesis, TGF-beta signaling, and extracellular matrix (ECM) components.
- Reviewing methods for targeted delivery of small interfering RNA, antisense oligonucleotides, and small molecules.
Main Results:
- Targeted antifibrotic therapies show promise by addressing central fibrogenesis/fibrolysis molecules.
- Strategies include modulating ECM components, cross-linking, and receptor interactions.
- Preclinical validation is improving, with ongoing translation to clinical settings.
Conclusions:
- Targeted antifibrotic agents are crucial for advanced liver fibrosis.
- Developing noninvasive biomarkers is essential for personalized treatment of liver fibrosis.
- Ongoing research and preclinical validation pave the way for clinical application of novel antifibrotic therapies.
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