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Hoffmann, R. A wiki for the life sciences where authorship matters. Nature Genetics (2008)
 
 
 
 
 

Role of platelet-activating factor in hemodynamic derangements in an acute rodent pancreatic model.

Systemic hemodynamics were assessed in a model of experimental pancreatitis induced in rats by the retrograde injection of sodium deoxycholate, 40%, 1 mL/kg, in the pancreatic duct, using the radioactive microsphere technique before and 25 minutes after pancreatitis induction while blood pressure was stable (n = 10). A 55% decrease in cardiac out-put, a 14% decrease in heart rate, and a 3.3-fold increase in total peripheral resistances, without significant changes in blood pressure, were observed. Renal blood flow decreased by 68%. When rats were given BN-52021, a blocker of platelet-activating factor receptors (5 mg/h, IV; n = 13) coinciding with pancreatitis induction, no significant hemodynamic changes were observed. Animals treated with BN-52021 survived 89 +/- 10 minutes, whereas death occurred 67 +/- 5 minutes after pancreatitis induction in untreated rats (P less than 0.001). A different group of rats with pancreatitis showed higher blood levels of platelet-activating factor (0.28 +/- 0.06 ng/mL; n = 11) than control rats (0.16 +/- 0.03; n = 15; P less than 0.05). Very high levels of platelet-activating factor were found in peritoneal exudate from rats with pancreatitis. These data show an effective protective effect of BN-52021 on the hemodynamic impairment that follows pancreatitis induction, as well as a role of platelet-activating factor in these alterations.[1]

References

  1. Role of platelet-activating factor in hemodynamic derangements in an acute rodent pancreatic model. Ais, G., López-Farre, A., Gomez-Garre, D.N., Novo, C., Romeo, J.M., Braquet, P., López-Novoa, J.M. Gastroenterology (1992) [Pubmed]
 
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