Lazaroid and pentoxifylline suppress sepsis-induced increases in renal vascular resistance via altered arachidonic acid metabolism

被引:21
作者
Krysztopik, RJ
Matheson, PJ
Spain, DA
Garrison, RN
Wilson, MA
机构
[1] Univ Louisville, Ctr Excellence Appl Microcirculatory Res, Louisville, KY 40206 USA
[2] Univ Louisville, Dept Surg, Louisville, KY 40206 USA
[3] Vet Affairs Med Ctr, Louisville, KY USA
关键词
septic shock; lipid peroxidation; cell membrane; renal vascular resistance; pentoxifylline; lazaroid; U74389G; peptido-leukotrienes; prostaglandin F-1 alpha; thromboxane B-2; 8-isoprostane; blood flow;
D O I
10.1006/jsre.2000.5947
中图分类号
R61 [外科手术学];
学科分类号
摘要
Early sepsis leads to renal hypoperfusion, despite a hyperdynamic systemic circulation. It is thought that failure of local control of the renal microcirculation leads to hypoperfusion and organ dysfunction, Of the many mediators implicated in the pathogenesis of microvascular vasoconstriction, arachidonic acid metabolites are thought to be important. Vasoconstriction may be due to excess production of vasoconstrictors or loss of vasodilators, Using the isolated perfused kidney model, we describe a sepsis-induced rise in renal vascular resistance and increased production of key arachidonic acid metabolites, both vasoconstrictors and vasodilators, suggesting excessive production of vasoconstrictors as a cause for microcirculatory hypoperfusion. There is evidence of increased enzymatic production of arachidonic acid metabolites as well as nonenzymatic, free radical, catalyzed conversion of arachidonic acid. Pentoxifylline (a phosphodiesterase inhibitor) and U74389G (an antioxidant) both have a protective effect on the renal microcirculation during sepsis, Both drugs appear to alter the renal microvascular response to sepsis by altering renal arachidonic acid metabolism, This study demonstrates that sepsis leads to increased renal vascular resistance. This response is in part mediated by metabolites produced by metabolism of arachidonic acid within the kidney. The ability of drugs to modulate arachidonic acid metabolism and so alter the renal response to sepsis suggests a possible role for these agents in protecting the renal microcirculation during sepsis, (C) 2000 Academic Press.
引用
收藏
页码:75 / 81
页数:7
相关论文
共 27 条
[11]   INTERACTION BETWEEN ADENOSINE AND ANGIOTENSIN-II IN RENAL MICROCIRCULATION [J].
DIETRICH, MS ;
ENDLICH, K ;
PAREKH, N ;
STEINHAUSEN, M .
MICROVASCULAR RESEARCH, 1991, 41 (03) :275-288
[12]  
EGAN RW, 1979, J BIOL CHEM, V254, P3295
[13]   IMPROVED FUNCTION WITH AMINO-ACIDS IN THE ISOLATED PERFUSED KIDNEY [J].
EPSTEIN, FH ;
BROSNAN, JT ;
TANGE, JD ;
ROSS, BD .
AMERICAN JOURNAL OF PHYSIOLOGY, 1982, 243 (03) :F284-F292
[14]  
Fischer D B, 1993, Curr Opin Nephrol Hypertens, V2, P61, DOI 10.1097/00041552-199301000-00009
[15]   MEDIATOR-INDUCED ACTIVATION OF XANTHINE-OXIDASE IN ENDOTHELIAL-CELLS [J].
FRIEDL, HP ;
TILL, GO ;
RYAN, US ;
WARD, PA .
FASEB JOURNAL, 1989, 3 (13) :2512-2518
[16]   THE EFFECTS OF AMINOPHYLLINE AND PENTOXIFYLLINE ON MULTIPLE ORGAN DAMAGE AFTER ESCHERICHIA-COLI SEPSIS [J].
HARADA, H ;
ISHIZAKA, A ;
YONEMARU, M ;
MALLICK, AA ;
HATHERILL, JR ;
ZHENG, H ;
LILLY, CM ;
OHANLEY, PT ;
RAFFIN, TA .
AMERICAN REVIEW OF RESPIRATORY DISEASE, 1989, 140 (04) :974-980
[17]  
KLAHR S, 1994, NEPHROL DIAL TRANSPL, V9, P52
[18]   OXYGEN-METABOLISM AND THE TOXIC PROPERTIES OF PHAGOCYTES [J].
KLEBANOFF, SJ .
ANNALS OF INTERNAL MEDICINE, 1980, 93 (03) :480-489
[19]   Free radical scavenging by lazaroids improves renal blood flow during sepsis [J].
Krysztopik, RJ ;
Bentley, FR ;
Spain, DA ;
Wilson, MA ;
Garrison, RN .
SURGERY, 1996, 120 (04) :657-662
[20]   Vasomotor response to pentoxifylline mediates improved renal blood flow in bacteremia [J].
Krysztopik, RJ ;
Bentley, FR ;
Spain, DA ;
Garrison, RN .
JOURNAL OF SURGICAL RESEARCH, 1996, 63 (01) :17-22