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Updated: May 31, 2025

Visualization of Neutrophil Extracellular Traps in Mesenteric Venules After Mesenteric Ischemia-Reperfusion Injury via Intravital Microscopy
Published on: September 27, 2024
Single-cell transcriptomics predict novel potential regulators of acute epithelial restitution in the
Elizabeth C Rose1, Jeremy M Simon2,3, Ismael Gomez-Martinez4
1Department of Population Health and Pathobiology, College of Veterinary Medicine, North Carolina State University, Raleigh, North Carolina, United States.
Insights
Neonatal pigs with intestinal injury show impaired barrier repair, but juvenile pig tissue can help. Colony stimulating factor-1 (CSF-1) is identified as a key factor in promoting intestinal restitution and barrier function.
Area of Science:
- Gastroenterology and Hepatology
- Developmental Biology
- Regenerative Medicine
Background:
- Intestinal ischemic injury compromises the epithelial barrier, increasing sepsis risk, particularly in neonates due to age-dependent recovery differences.
- Previous studies show juvenile pig mucosal tissue can rescue intestinal barrier defects in neonatal pigs, but the underlying mechanisms are unclear.
Purpose of the Study:
- To identify restituting enterocytes by their gene expression patterns and predict upstream regulators of age-dependent intestinal restitution.
- To investigate the role of colony stimulating factor-1 (CSF-1) in intestinal barrier repair following ischemic injury.
Main Methods:
- Single-cell transcriptomics of superficial mucosal epithelial cells from recovering ischemic jejunum in juvenile pigs.
- Validation of predicted upstream regulators, specifically CSF-1, in a pig model of intestinal ischemic injury.
- Immunohistochemical co-localization of CSF-1 and CSF1R in epithelial cells and functional assays (in vitro blockade, ex vivo rescue).
Main Results:
- A subcluster of restituting enterocytes showed expression of cell migration pathways, predicting regulation by CSF-1.
- CSF-1 expression was induced by ischemia in an age-dependent manner; CSF-1 and CSF1R co-localized in wound-adjacent cells of juvenile pigs.
- CSF-1 blockade impaired restitution in vitro, while CSF-1 administration improved barrier function in injured neonatal pigs ex vivo.
Conclusions:
- This study validates a novel approach to identify and predict upstream regulators of epithelial restitution in intestinal ischemic injury.
- Colony stimulating factor-1 (CSF-1) emerges as a potential therapeutic target for improving outcomes in neonates with intestinal injury.
Abstract:
Intestinal ischemic injury damages the epithelial barrier and predisposes patients to life-threatening sepsis unless that barrier is rapidly restored. There is an age dependency in intestinal recovery in that neonates are the most susceptible to succumb to disease of the intestinal barrier compared with older patients. We have developed a pig model that demonstrates age-dependent failure of intestinal barrier restitution in neonatal pigs, which can be rescued by the direct application of juvenile pig mucosal tissue, but the mechanisms of rescue remain undefined. We hypothesized that by identifying a subpopulation of restituting enterocytes by their expression of cell migration transcriptional pathways, we can then predict novel upstream regulators of age-dependent restitution response programs. Superficial mucosal epithelial cells from recovering ischemic jejunum of juvenile pigs underwent single-cell transcriptomics and the predicted upstream regulator, colony stimulating factor-1 (CSF-1), was interrogated in our model. A subcluster of absorptive enterocytes expressed several cell migration pathways key to restitution. Differentially expressed genes in this subcluster predicted their upstream regulation by colony stimulating factor-1 (CSF-1). We validated age-dependent induction of CSF-1 by ischemia and documented that CSF-1 and colony-stimulating factor-1 receptor (CSF1R) co-localized in ischemic juvenile, but not neonatal, wound-adjacent epithelial cells and in the restituted epithelium of juveniles and rescued neonates. Furthermore, the CSF-1 blockade reduced restitution in vitro, and CSF-1 improved barrier function in injured neonatal pigs in preliminary ex vivo experiments. These studies validate an approach to inform potential novel therapeutic targets, such as CSF-1, to improve outcomes in neonates with intestinal injury in a unique pig model.NEW & NOTEWORTHY These studies validate an approach to identify and predict upstream regulation of restituting epithelium in a unique pig intestinal ischemic injury model. Identification of potential molecular mediators of restitution, such as CSF-1, will inform the development of targeted therapeutic interventions for the medical management of patients with ischemia-mediated intestinal injury.
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