Acute Lymphoid and Gastrointestinal Toxicity Induced by Selective p38α Map Kinase and Map Kinase–Activated Protein Kinase-2 (MK2) Inhibitors in the Dog

Author:

Morris Dale L.1,O’Neil Shawn P.1,Devraj Rajesh V.1,Portanova Joseph P.1,Gilles Richard W.1,Gross Cindy J.1,Curtiss Sandra W.1,Komocsar Wendy J.2,Garner Debra S.1,Happa Fernando A.1,Kraus Lori J.1,Nikula Kristen J.3,Monahan Joseph B.1,Selness Shaun R.1,Galluppi Gerald R.4,Shevlin Kimberly M.1,Kramer Jeffrey A.5,Walker John K.1,Messing Dean M.1,Anderson David R.1,Mourey Robert J.1,Whiteley Laurence O.1,Daniels John S.1,Yang Jerry Z.1,Rowlands Philip C.1,Alden Carl L.6,Davis John W.1,Sagartz John E.3

Affiliation:

1. Pfizer Inc., Drug Safety R&D, Research, Pharmacokinetics, Dynamics & Metabolism, and Pharmaceutical Sciences, St. Louis, Missouri, USA

2. Eli Lilly & Co., Investigative Toxicology, Greenfield, Indiana, USA

3. Seventh Wave Laboratories, Chesterfield, Missouri, USA

4. Biogen Idec, San Diego, California, USA

5. Lexicon Pharmaceuticals, Inc., The Woodlands, Texas, USA

6. Millennium Pharmaceuticals Inc., Cambridge, Massachusetts, USA

Abstract

Exposure to moderately selective p38α mitogen-activated protein kinase (MAPK) inhibitors in the Beagle dog results in an acute toxicity consisting of mild clinical signs (decreased activity, diarrhea, and fever), lymphoid necrosis and depletion in the gut-associated lymphoid tissue (GALT), mesenteric lymph nodes and spleen, and linear colonic and cecal mucosal hemorrhages. Lymphocyte apoptosis and necrosis in the GALT is the earliest and most prominent histopathologic change observed, followed temporally by neutrophilic infiltration and acute inflammation of the lymph nodes and spleen and multifocal mucosal epithelial necrosis and linear hemorrhages in the colon and cecum. These effects are not observed in the mouse, rat, or cynomolgus monkey. To further characterize the acute toxicity in the dog, a series of in vivo, in vitro, and immunohistochemical studies were conducted to determine the relationship between the lymphoid and gastrointestinal (GI) toxicity and p38 MAPK inhibition. Results of these studies demonstrate a direct correlation between p38α MAPK inhibition and the acute lymphoid and gastrointestinal toxicity in the dog. Similar effects were observed following exposure to inhibitors of MAPK-activated protein kinase-2 (MK2), further implicating the role of p38α MAPK signaling pathway inhibition in these effects. Based on these findings, the authors conclude that p38α MAPK inhibition results in acute lymphoid and GI toxicity in the dog and is unique among the species evaluated in these studies.

Publisher

SAGE Publications

Subject

Cell Biology,Toxicology,Molecular Biology,Pathology and Forensic Medicine

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