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In Vitro Canine Neutrophil Extracellular Trap Formation: Dynamic and Quantitative Analysis by Fluorescence Microscopy
Published on: August 24, 2018
Esomeprazole induces structural changes and apoptosis and alters function of in vitro canine neoplastic mast cells
Emily N Gould1, Joseph A Szule2, Heather Wilson-Robles3
1Gastrointestinal Laboratory, Department of Small Animal Clinical Sciences, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, 4474 TAMU, College Station, TX 77843, USA.
Abstract:
Histamine-2 receptor antagonists such as famotidine and proton pump inhibitors such as esomeprazole are commonly used in canine MCT disease, but direct effects on dog MCs have not been evaluated. Omeprazole is a proton pump inhibitor which has been demonstrated to cause structural and functional changes to in vitro murine mast cells (MCs). It has not yet been determined if esomeprazole, the commercially available and commonly prescribed S-isomer of omeprazole, has similar effects. Our primary study objective was to evaluate and compare the effects of acid suppressants (esomeprazole and famotidine) on MC ultrastructure, viability, and function in vitro using both healthy and neoplastic MCs. Murine bone marrow derived mast cells (BMMC), human LAD2, and canine C2 and BR cells, were used for these studies, representing a single healthy (i.e., BMMCs) MC model and multiple neoplastic MC models (i.e., LAD2, C2, BR), respectively. The rat basophilic leukemic (RBL-2H3) and canine B cell lymphoma 17-71 cell lines served as granulocytic and agranulocytic control lines for experiments, respectively. The treatment effect of acid suppressants on MC ultrastructure was assessed via both light and transmission electron microscopy. Differences in MC viability was assessed between groups via MTS-based, colorimetric assays and flow cytometry. Degranulation was assessed by quantification of β-hexosaminidase (i.e., LAD2 and RBL-2H3). Esomeprazole-treated MCs of all lines exhibited dramatic time and concentration-dependent alterations in ultrastructure (i.e., increased vacuolization, compromise of cell membrane), increased apoptosis, and altered degranulation responses in comparison to famotidine and vehicle-treated cells. The canine B cell lymphoma cells consistently exhibited either no significant (i.e., cytotoxicity assays) or greatly diminished treatment responses (i.e., apoptosis) compared to MCs. Esomeprazole, but not famotidine, induces significant cytotoxicity, as well as alterations to cell structure and function to multiple lines of in vitro neoplastic MCs. Continued in vitro work investigating the specific mechanisms by which proton pump inhibitors induce these effects, as well as prospective, in vivo work comparing the treatment effects of acid suppressants on canine MCTs, are warranted.
Insights
Esomeprazole, a proton pump inhibitor, significantly alters mast cell (MC) structure and function in vitro, unlike famotidine. This study highlights potential cytotoxic effects of esomeprazole on neoplastic mast cells, warranting further investigation.
Area of Science:
- Oncology
- Pharmacology
- Cell Biology
Background:
- Histamine-2 receptor antagonists (famotidine) and proton pump inhibitors (esomeprazole) are used for canine MCT disease.
- Omeprazole affects murine mast cells (MCs); esomeprazole's effects on canine MCs are unknown.
- Direct effects of acid suppressants on canine mast cells (MCs) require evaluation.
Purpose of the Study:
- To compare the effects of esomeprazole and famotidine on MC ultrastructure, viability, and function in vitro.
- To evaluate these effects on both healthy and neoplastic MC models.
Main Methods:
- Utilized murine BMMCs (healthy), human LAD2, and canine C2/BR cells (neoplastic MCs).
- Assessed MC ultrastructure via light and transmission electron microscopy.
- Measured MC viability using MTS assays and flow cytometry; degranulation via beta-hexosaminidase quantification.
Main Results:
- Esomeprazole induced time- and concentration-dependent ultrastructural changes (vacuolization, membrane compromise), increased apoptosis, and altered degranulation in all MC lines.
- Famotidine and vehicle treatments showed significantly fewer effects compared to esomeprazole.
- Esomeprazole demonstrated significant cytotoxicity and functional alterations in neoplastic MCs, unlike famotidine.
Conclusions:
- Esomeprazole, but not famotidine, significantly impacts the structure and function of neoplastic mast cells in vitro.
- The findings suggest potential cytotoxic mechanisms of proton pump inhibitors on mast cells.
- Further in vitro and in vivo studies are warranted to elucidate mechanisms and compare acid suppressant efficacy in canine MCT disease.

