Altered hepatocellular Ca2+ regulation during hemorrhagic shock and resuscitation

被引:1
|
作者
Rose, S [1 ]
Pizanis, A [1 ]
Silomon, M [1 ]
机构
[1] UNIV SAARLAND,DEPT TRAUMA HAND & RECONSTRUCT SURG,D-66421 HOMBURG,GERMANY
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中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
The present study evaluated the effect of the benzothiazepine Ca2+ channel blocker diltiazem (DZ) on altered hepatocellular Ca2+ regulation and oxidant injury during hemorrhagic shock/resuscitation. In anesthetized, male Sprague-Dawley rats, hemorrhagic shock was induced by rapid blood withdrawal and maintaining the mean arterial blood pressure at 40 mm Hg over 60 minutes, Rats were then resuscitated with 60% of shed blood and threefold the shed blood volume of Ringer's lactate. At the end of ischemia, and 60 or 300 minutes after resuscitation, hepatocytes were isolated by liver collagenase perfusion, Hepatocellular Ca2+ exchange (Ca-ex(2+)), rate of cellular Ca2+ influx (Ca-in(2+)), and Ca2+ membrane flux (Ca-flux(2+),) were determined using Ca-45 incubation techniques, Hepatocyte oxidant injury was evaluated by fluorometrically measuring thiobarbituric acid reactive substances and oxidized/reduced glutathione, Both hemorrhage and hemorrhage/resuscitation increased hepatocellular Ca-in(2+), Ca-ex(2+), and Ca-flux(2+). In contrast to control and sham-operated rats, in vitro stimulation by the Ca2+ agonist epinephrine (100 nmol/L) of hepatocytes from either hemorrhaged or resuscitated rats did not further increase Ca-in(2+), Administration of DZ (.8 mg/kg) with resuscitation significantly decreased cellular Ca-ex(2+) and Ca-flux(2+), but did not restore impaired epinephrine-induced Ca-in(2+). DZ prevented hepatocyte Lipid peroxidation and glutathione oxidation, These findings suggest hepatocellular Ca2+ overload and impaired Ca2+ signaling during hemorrhage/resuscitation. Increased Ca2+ uptake could be because of a receptor-gated Ca2+ influx and/or oxygen-free radical induced membrane Ca2+ leaks.
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页码:379 / 384
页数:6
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