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Acute pancreatitis begins with injury to pancreatic acinar cells, most often caused by gallstones or alcohol. This triggers the premature activation of trypsinogen to trypsin within the pancreas.
Trypsin activates other digestive enzymes, breaking down pancreatic tissue and causing local inflammation, swelling, hemorrhage, and fat necrosis.
Injured cells absorb excess calcium, leading to mitochondrial dysfunction, reduced ATP production, and stressed endoplasmic reticulum, which impairs protein processing.
As cell injury progresses, these disturbances lead to the release of inflammatory signals.
Inflammatory signals, including interleukin-1 and tumor necrosis factor, attract immune cells, increase vessel permeability, and amplify inflammation.
Lipase-driven fat breakdown releases free fatty acids, which bind calcium, contributing to hypocalcemia.
If inflammation extends beyond the pancreas, it can trigger systemic effects, leading to vascular leakage and immune activation that can lead to lung, kidney, or heart dysfunction.
The pathophysiology of acute pancreatitis centers on injury to pancreatic acinar cells, which initiates a cascade of harmful intracellular events.
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