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Pathophysiology of Chronic Pancreatitis

2 of 6~1 min readReviewed

Chronic Pancreatitis

Chronic pancreatitis is driven mainly by activation of pancreatic stellate cells (PSCs). PSCs are myofibroblast-like cells of the pancreatic parenchyma, similar to the stellate cells of the liver, and they are the cells that build scar tissue in the gland.

When a noxious stimulus reaches the pancreas, PSCs become activated and begin to do two things at once. They release large amounts of pro-inflammatory cytokines, including IL-1, IL-6 and TNF-α, and they lay down fibrous tissue, mainly collagen, which is deposited in place of the normal parenchymal cells. Pathological causes such as alcohol also act through metalloproteinase-dependent destruction of the normal collagen of the parenchyma, and this breakdown of the existing framework is what allows the gland to be remodelled into scar.

Once activated, PSCs can keep remodelling even after the original stimulus is removed. The reason is that PSCs carry TGF-β receptors, which drive further collagen production and further activation. This probably explains why the fibrosis of chronic pancreatitis continues to progress after a patient stops drinking.

A widely accepted hypothesis for how the chronic disease develops from acute attacks is the necrosis-fibrosis sequence: each episode of acute pancreatitis destroys some parenchymal cells and leaves a little fibrosis, and the damage accumulates over repeated episodes until the gland is chronically scarred. Repeated acute pancreatitis is therefore a route into chronic pancreatitis rather than a separate illness.