The role of pro-inflammatory molecules and pharmacological agents in acute pancreatitis and sepsis.

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This review explores pro-inflammatory molecules and pharmacological agents in acute pancreatitis and sepsis, highlighting hydrogen sulfide and substance P as potential therapeutic targets to inhibit disease progression.

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AI-generated deep summary by qwen3.7-flash, 2026-08-28 · read from full text

This review explores the inflammatory mechanisms underlying acute pancreatitis and sepsis, focusing on the roles of pro-inflammatory molecules such as selectins, chemokines, integrins, hydrogen sulfide, and substance P. The authors examine how these mediators facilitate leukocyte adhesion and signal transduction during disease progression, highlighting findings from animal models where inhibition of specific pathways reduced severity. A major caveat noted is that while pharmacological interventions show efficacy in preclinical settings, their translation to human clinical outcomes remains complex due to the multifaceted nature of the inflammatory cascade. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

Acute pancreatitis (AP) and sepsis are inflammatory disorder varying in magnitude of response to infection or inflammatory stimuli. The specific role of various causative factors in AP, septic shock, current pharmacological treatments, animal models, role of infiltrating cells and novel molecules that play an important role in the disease progression to sepsis are explored. AP is an inflammatory disease of the pancreas. Over the years accumulating evidence suggests numerous molecules as key regulators of the inflammatory signaling cascade such as selectins, chemokine signaling and expression of intergrins on leukocytes facilitate adhesion to vessel walls. Inhibition of any of these molecules has proven to be effective in animal models of AP. Recently, the biochemical role of hydrogen sulfide (H(2)S) and substance P in caerulein induced AP and in cecal ligation and puncture induced sepsis and their role in the pathogenesis of the disease have highlighted the importance of novel molecules as therapeutic targets in addition to the known pro-inflammatory molecules, cytokines and chemoattractant chemokines and their receptors upregulated in AP and sepsis. This review aims to give an overview of the multifaceted complex interactions in a prearranged fashion and their functional role in the inflammatory process that afflict AP and sepsis. The interlinking molecules in AP and sepsis emphasize the similarities in the inflammatory response and the importance of pharmacological agents that reduce or inhibit the progression to chronic stage.
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Abstract

Acute pancreatitis (AP) and sepsis are inflammatory disorder varying in magnitude of response to infection or inflammatory stimuli. The specific role of various causative factors in AP, septic shock, current pharmacological treatments, animal models, role of infiltrating cells and novel molecules that play an important role in the disease progression to sepsis are explored. AP is an inflammatory disease of the pancreas. Over the years accumulating evidence suggests numerous molecules as key regulators of the inflammatory signaling cascade such as selectins, chemokine signaling and expression of intergrins on leukocytes facilitate adhesion to vessel wall. Inhibition of any of these molecules has proven to be effective in animal models of AP. Recently, the biochemical role of hydrogen sulfide (H2S) and substance P in caerulein induced AP and in cecal ligation and puncture induced sepsis and their role in the pathogenesis of the disease have highlighted the importance of novel molecules as therapeutic targets in addition to the known proinflammatory molecules, cytokines and chemoattractant chemokines and their receptors upregulated in AP and sepsis. This review aims to give an overview of the multifaceted complex interactions in a prearranged fashion and their functional role in the inflammatory process that afflict AP and sepsis. The interlinking molecules in AP and sepsis emphasize the similarities in the inflammatory response and the importance of pharmacological agents that reduce or inhibit the progression to chronic stage.

Keywords

Sepsis, inflammation, acute pancreatitis, cytokines, chemokines, hydrogen sulfide, pancreas, pharmacological agents, animal models 60

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last seen: 2026-08-30T09:23:35.175841+00:00