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Induction of Drug-Induced, Autoimmune Hepatitis in BALB/c Mice for the Study of Its Pathogenic Mechanisms
Published on: May 29, 2020
Diclofenac Immune-Mediated Hepatitis: Identification of Innate and Adaptive Immune Responses at Clinically Relevant
Jürgen Borlak1, Reinhard Spanel1
1Hannover Medical School, Centre for Pharmacology and Toxicology, Carl-Neuberg-Str. 1, 30625 Hannover, Germany.
Abstract:
Diclofenac is an effective medication for pain and inflammation. However, its use has been linked to hepatitis. To gain insight into diclofenac's ability to cause hepatitis, we investigated the regulation of major effectors of the immune system following daily treatment of minipigs at 3 and 15 mg/kg for 28 days. Histopathology evidenced lobular inflammation, and through a combination of immunogenomics and immunopathology, we detected marked innate and adaptive immune responses. We identified 109 significantly regulated genes linked to neutrophil, monocyte, Kupffer cell, and lymphocyte responses and 32 code for cytokine- and interferon-γ-signaling. In support of wound repair, immunopathology evidenced manifest upregulation of macrophage migration inhibitory factor and CD74. Furthermore, the strong expression of IgG and IgM underscored humoral immune responses. Diclofenac caused an activation of the complement system, especially the C1 inhibitor of the classical pathway and C3 with critical functions in liver regeneration. The marked expression of complement factor B and H of the alternate pathway modulated B-cell responses. Likely, the upregulation of factor H protected hepatocytes from injury by limiting complement-mediated damage of inflamed cells. Additionally, diclofenac treatment elicited marked hepatic expression of lysozyme and KLF6. The latter earmarks M1-polarized Kupffer cells. We observed an extraordinary induction of calprotectin/S100A9 and of the monocyte/macrophage CD163 scavenger receptor, and therefore, we detected innate immune sensing of damaged cells. Lastly, we noted an unprecedented induction of the acute phase reactant SAA1 and DEC-205, which recognize apoptotic and necrotic cells. Together, our results offer mechanistic insights into immune-mediated liver injury patterns following diclofenac treatment.
Insights
Diclofenac treatment in minipigs induced significant innate and adaptive immune responses, leading to liver inflammation and injury. This study reveals key immune pathways involved in diclofenac-induced hepatitis.
Area of Science:
- Immunology
- Hepatology
- Pharmacology
Background:
- Diclofenac is a widely used nonsteroidal anti-inflammatory drug (NSAID).
- Diclofenac use is associated with a risk of drug-induced liver injury, including hepatitis.
- The precise immune mechanisms underlying diclofenac-induced hepatitis remain incompletely understood.
Purpose of the Study:
- To investigate the immune system's response to diclofenac administration in a preclinical model.
- To elucidate the immunogenomic and immunopathologic changes associated with diclofenac-induced liver injury.
- To identify key immune effectors and pathways involved in diclofenac hepatotoxicity.
Main Methods:
- Minipigs were treated daily with diclofenac (3 and 15 mg/kg) for 28 days.
- Histopathology was performed to assess liver tissue damage.
- Immunogenomic and immunopathologic analyses were employed to evaluate immune responses.
Main Results:
- Diclofenac treatment resulted in lobular inflammation and significant innate and adaptive immune responses.
- Key regulated genes involved neutrophil, monocyte, Kupffer cell, and lymphocyte functions, as well as cytokine and interferon-gamma signaling.
- Activation of the complement system (classical and alternative pathways) and upregulation of markers for M1-polarized Kupffer cells, innate immune sensing, and acute phase reactants were observed.
Conclusions:
- Diclofenac treatment triggers a complex immune response in the liver, contributing to inflammation and injury.
- The study identified specific immune pathways, including complement activation and macrophage polarization, implicated in diclofenac hepatotoxicity.
- These findings provide mechanistic insights into immune-mediated liver injury caused by diclofenac.
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