5.7
H. pylori, the major cause of peptic ulcer disease, PUD, survives the stomach's acidic environment by producing urease.
Urease hydrolyzes urea into ammonia, locally neutralizing gastric acid and creating a protective microenvironment.
The bacterium then uses its flagella and mucolytic enzymes to penetrate the mucus layer and adhere to gastric epithelial cells via outer membrane proteins.
Additionally, it injects virulence factors like CagA through a type IV secretion system, disrupting cellular signaling. Meanwhile, VacA damages mitochondria, causes cell death, and suppresses T-cell responses to aid immune evasion.
H. pylori survives long-term by evading the immune system and keeping inflammation active, which gradually damages the stomach lining.
NSAID-induced PUD inhibits cyclooxygenase-1 enzymes, reducing prostaglandins essential for mucus and bicarbonate secretion and mucosal repair.
This impairs gastric defenses, allowing acid and pepsin to erode the mucosa, leading to ulcer formation.
Peptic ulcer disease develops when protective mechanisms of the gastrointestinal mucosa are overwhelmed by harmful factors, leading to localized erosi…
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