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Pirfenidone increases IL-10 and improves acute pancreatitis in multiple clinically relevant murine models
Ejas Palathingal Bava, John George, Mohammad Tarique, Srikanth Iyer, Preeti Sahay, Beatriz Gomez Aguilar, Dujon B. Edwards, Bhuwan Giri, Vrishketan Sethi, Tejeshwar Jain, Prateek Sharma, Utpreksha Vaish, Harrys K. C. Jacob, Anthony Ferrantella, Craig L. Maynard, Ashok K. Saluja, Rajinder K. Dawra, Vikas Dudeja
Ejas Palathingal Bava, John George, Mohammad Tarique, Srikanth Iyer, Preeti Sahay, Beatriz Gomez Aguilar, Dujon B. Edwards, Bhuwan Giri, Vrishketan Sethi, Tejeshwar Jain, Prateek Sharma, Utpreksha Vaish, Harrys K. C. Jacob, Anthony Ferrantella, Craig L. Maynard, Ashok K. Saluja, Rajinder K. Dawra, Vikas Dudeja
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Research Article Gastroenterology Inflammation

Pirfenidone increases IL-10 and improves acute pancreatitis in multiple clinically relevant murine models

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Abstract

Despite decades of research, there is no specific therapy for acute pancreatitis (AP). In the current study, we have evaluated the efficacy of pirfenidone, an antiinflammatory and antifibrotic agent that is approved by the FDA for treatment of idiopathic pulmonary fibrosis (IPF), in ameliorating local and systemic injury in AP. Our results suggest that treatment with pirfenidone in therapeutic settings (e.g., after initiation of injury), even when administered at the peak of injury, reduces severity of local and systemic injury and inflammation in multiple models of AP. In vitro evaluation suggests that pirfenidone decreases cytokine release from acini and macrophages and disrupts acinar-macrophage crosstalk. Therapeutic pirfenidone treatment increases IL-10 secretion from macrophages preceding changes in histology and modulates the immune phenotype of inflammatory cells with decreased levels of inflammatory cytokines. Antibody-mediated IL-10 depletion, use of IL-10–KO mice, and macrophage depletion experiments confirmed the role of IL-10 and macrophages in its mechanism of action, as pirfenidone was unable to reduce severity of AP in these scenarios. Since pirfenidone is FDA approved for IPF, a trial evaluating the efficacy of pirfenidone in patients with moderate to severe AP can be initiated expeditiously.

Authors

Ejas Palathingal Bava, John George, Mohammad Tarique, Srikanth Iyer, Preeti Sahay, Beatriz Gomez Aguilar, Dujon B. Edwards, Bhuwan Giri, Vrishketan Sethi, Tejeshwar Jain, Prateek Sharma, Utpreksha Vaish, Harrys K. C. Jacob, Anthony Ferrantella, Craig L. Maynard, Ashok K. Saluja, Rajinder K. Dawra, Vikas Dudeja

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Figure 11

Depletion of macrophages with clodronate liposomes abrogates the beneficial effects of therapeutic pirfenidone in L-arginine AP.

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Depletion of macrophages with clodronate liposomes abrogates the benefic...
(A) Schematic of pirfenidone administration in a therapeutic manner in well-established L-arginine model of acute pancreatitis with clodronate liposomes (i.p., 200 μL) administration at 96 and 120 hours. (B and C) Confirmation of macrophage depletion using clodronate in pancreas (B) and spleen (C). (D) Histological analysis of representative H&E sections (200×) of pancreas from AP-only group and pirfenidone-treated AP group. There is no decrease in pancreatic edema, necrosis, and inflammatory infiltrate with pirfenidone treatment with depletion of macrophages. (E) Lung H&E (200×) does not show a reduction in injury with pirfenidone treatment with depletion of macrophages. (F–I) Histologic quantification of edema, inflammation, and necrosis in pancreas is shown, which concurs with our findings. (J–O) mRNA levels of proinflammatory markers TNF-α, IL-6, IFN-γ, IL-23, IL-12α,and NLRP3 did not show a significant change with pirfenidone treatment with depletion of macrophages. (P) Serum HMGB1 levels are not significantly different at 144 hours with macrophage depletion. Pirf., pirfenidone; Clod., liposomal clodronate. n =7 in each group. Data represent mean ± SEM. *P < 0.05 by Mann-Whitney U test.

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