PDGF-α stimulates intestinal epithelial cell turnover after massive small bowel resection in a rat

Author:

Sukhotnik Igor12,Mogilner Jorge G.2,Pollak Yulia1,Blumenfeld Shiri1,Bejar Jacob3,Coran Arnold G.4

Affiliation:

1. Technion-Israel Institute of Technology, the Ruth and Bruce Rappaport Faculty of Medicine, Laboratory of Intestinal Adaptation and Recovery, Bnai Zion Medical Center, Haifa, Israel;

2. Department of Pediatric Surgery, Bnai Zion Medical Center, Haifa, Israel;

3. Department of Pathology, Bnai Zion Medical Center, Haifa, Israel; and

4. Section of Pediatric Surgery C. S. Mott Children's Hospital and University of Michigan Medical School, Ann Arbor, Michigan

Abstract

Numerous cytokines have been shown to affect epithelial cell differentiation and proliferation through epithelial-mesenchymal interaction. Growing evidence suggests that platelet-derived growth factor (PDGF) signaling is an important mediator of these interactions. The purpose of this study was to evaluate the effect of PDGF-α on enterocyte turnover in a rat model of short bowel syndrome (SBS). Male rats were divided into four groups: Sham rats underwent bowel transection, Sham-PDGF-α rats underwent bowel transection and were treated with PDGF-α, SBS rats underwent a 75% bowel resection, and SBS-PDGF-α rats underwent bowel resection and were treated with PDGF-α. Parameters of intestinal adaptation, enterocyte proliferation and apoptosis were determined at euthanasia. Illumina's Digital Gene Expression analysis was used to determine PDGF-related gene expression profiling. PDGF-α and PDGF-α receptor (PDGFR-α) expression was determined by real-time PCR. Western blotting was used to determine p-ERK, Akt1/2/3, bax, and bcl-2 protein levels. SBS rats demonstrated a significant increase in PDGF-α and PDGFR-α expression in jejunum and ileum compared with sham animals. SBS-PDGF-α rats demonstrated a significant increase in bowel and mucosal weight, villus height, and crypt depth in jejunum and ileum compared with SBS animals. PDGF-α receptor expression in crypts increased in SBS rats (vs. sham) and was accompanied by an increased cell proliferation following PDGF-α administration. A significant decrease in cell apoptosis in this group was correlated with lower bax protein levels. In conclusion, in a rat model of SBS, PDGF-α stimulates enterocyte turnover, which is correlated with upregulated PDGF-α receptor expression in the remaining small intestine.

Publisher

American Physiological Society

Subject

Physiology (medical),Gastroenterology,Hepatology,Physiology

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