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Preparing a Mice Model of Severe Acute Pancreatitis via a Combination of Caerulein and Lipopolysaccharide Intraperitoneal Injection
Published on: May 10, 2024
Pancreatic digestive enzyme blockade in the intestine increases survival after experimental shock
Frank A DeLano1, David B Hoyt, Geert W Schmid-Schönbein
1Department of Bioengineering, The Institute of Engineering in Medicine, University of California, San Diego, La Jolla, CA 92093, USA.
Abstract:
Shock, sepsis, and multiorgan failure are associated with inflammation, morbidity, and high mortality. The underlying pathophysiological mechanism is unknown, but evidence suggests that pancreatic enzymes in the intestinal lumen autodigest the intestine and generate systemic inflammation. Blocking these enzymes in the intestine reduces inflammation and multiorgan dysfunction. We investigated whether enzymatic blockade also reduces mortality after shock. Three rat shock models were used here: hemorrhagic shock, peritonitis shock induced by placement of cecal material into the peritoneum, and endotoxin shock. One hour after initiation of hemorrhagic, peritonitis, or endotoxin shock, animals were administered one of three different pancreatic enzyme inhibitors--6-amidino-2-naphtyl p-guanidinobenzoate dimethanesulfate, tranexamic acid, or aprotinin--into the lumen of the small intestine. In all forms of shock, blockade of digestive proteases with protease inhibitor attenuated entry of digestive enzymes into the wall of the intestine and subsequent autodigestion and morphological damage to the intestine, lung, and heart. Animals treated with protease inhibitors also survived in larger numbers than untreated controls over a period of 12 weeks. Surviving animals recovered completely and returned to normal weight within 14 days after shock. The results suggest that the active and concentrated digestive enzymes in the lumen of the intestine play a central role in shock and multiorgan failure, which can be treated with protease inhibitors that are currently available for use in the clinic.
Insights
Blocking pancreatic enzymes in the gut reduces mortality from shock and multiorgan failure. Intestinal protease inhibitors protected rats across multiple shock models, suggesting a new therapeutic approach.
Area of Science:
- Gastroenterology
- Critical Care Medicine
- Pathophysiology
Background:
- Shock, sepsis, and multiorgan failure are critical conditions with high mortality.
- The exact mechanism is unknown, but pancreatic enzymes in the gut may cause inflammation and damage.
Purpose of the Study:
- To investigate if blocking intestinal pancreatic enzymes reduces mortality in shock models.
- To determine if protease inhibitors can mitigate shock-induced organ damage and improve survival.
Main Methods:
- Three rat shock models were used: hemorrhagic, peritonitis, and endotoxin shock.
- Pancreatic enzyme inhibitors (6-amidino-2-naphtyl p-guanidinobenzoate dimethanesulfate, tranexamic acid, aprotinin) were administered intraluminally.
Main Results:
- Protease inhibitors reduced digestive enzyme entry into the intestinal wall, preventing autodigestion and damage in the intestine, lung, and heart.
- Animals treated with inhibitors showed significantly higher survival rates (12 weeks) and complete recovery compared to controls.
Conclusions:
- Active digestive enzymes in the intestine play a key role in shock and multiorgan failure.
- Intestinal protease inhibitors represent a potential therapeutic strategy for treating shock and its complications.
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