Proteomic analysis of heat shock-induced protection in acute pancreatitis.

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This proteomic analysis of rats revealed that heat shock-induced protection against acute pancreatitis involves modulating the expression of secretory pathway proteins, in addition to known heat shock proteins.

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This study utilized proteomic analysis to investigate the protective mechanisms induced by heat shock in a rat model of caerulein-induced acute pancreatitis. The researchers identified specific protein expression changes associated with the heat shock response that mitigated pancreatic inflammation and tissue damage. A major limitation noted was the reliance on an animal model, which may not fully replicate the complex pathophysiology observed in human patients. 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 is an inflammatory disease of the pancreas, which can result in serious morbidity or death. Acute pancreatitis severity can be reduced in experimental models by preconditioning animals with a short hyperthermia prior to disease induction. Heat shock proteins 27 and 70 are key effectors of this protective effect. In this study, we performed a comparative proteomic analysis using a combination of liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis and isobaric tagging to investigate changes in pancreatic proteins expression that were associated with thermal stress, both in healthy rats and in a model of caerulein-induced pancreatitis. In agreement with previous studies, we observed modulation of heat shock and inflammatory proteins expression in response to heat stress or pancreatitis induction. We also identified numerous other proteins, whose pancreatic level changed following pancreatitis induction, when acute pancreatitis severity was reduced by prior thermal stress, or in healthy rats in response to hyperthermia. Interestingly, we showed that the expression of various proteins associated with the secretory pathway was modified in the different experimental models, suggesting that modulation of this process is involved in the protective effect against pancreatic tissue damage.
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Proteomic analysis of heat shock-induced protection in acute pancreatitis Published inJournal of proteome research, vol. 9, no. 11, p. 5929-5942 Publication date2010 Abstract Keywords - Acute Disease - Animals - Caerulein - Fever/blood/metabolism - Heat-Shock Response - Pancreatitis/chemically induced/metabolism - Protective Agents - Proteomics/methods - Rats Affiliation entities Citation (ISO format) FETAUD-LAPIERRE, Vanessa et al. Proteomic analysis of heat shock-induced protection in acute pancreatitis. In: Journal of proteome research, 2010, vol. 9, n° 11, p. 5929–5942. doi: 10.1021/pr100695d Main files (1) Article (Accepted version) Identifiers - PID : unige:20931 - DOI : 10.1021/pr100695d - PMID : 20815342 Journal ISSN1535-3893

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