E J Tanhehco, K Yasojima, P L McGeer, R A Washington, K S Kilgore, J W Homeister, B R Lucchesi
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引用次数: 17
摘要
预处理和抑制补体活化均可改善心肌缺血再灌注损伤。最近心肌组织表达补体成分的研究表明,预处理是否会影响离体心脏的补体表达。将新西兰大白兔的心脏分别暴露于两轮5分钟全脑缺血后10分钟再灌注(缺血预处理)或10 μ m atp依赖性K+ (KATP)通道开启剂pinacidil中30分钟(化学预处理),然后诱导30分钟全脑缺血后60分钟再灌注。缺血预处理和化学预处理均显著降低心肌C1q、C1r、C3、C8和C9 mRNA水平(P < 0.05)。Western blot和免疫组织化学显示C3和膜攻击复合物蛋白表达的类似减少。K(ATP)通道阻滞剂格列本脲(10微米)逆转了在松酸处理心脏中观察到的C1q、C1r、C3、C8和C9 mRNA表达的抑制。结果表明,减少局部组织补体的产生可能是预处理保护缺血心肌的一种手段。
Preconditioning reduces tissue complement gene expression in the rabbit isolated heart.
Both preconditioning and inhibition of complement activation have been shown to ameliorate myocardial ischemia-reperfusion injury. The recent demonstration that myocardial tissue expresses complement components led us to investigate whether preconditioning affects complement expression in the isolated heart. Hearts from New Zealand White rabbits were exposed to either two rounds of 5 min global ischemia followed by 10 min reperfusion (ischemic preconditioning) or 10 microM of the ATP-dependent K+ (KATP) channel opener pinacidil for 30 min (chemical preconditioning) before induction of 30 min global ischemia followed by 60 min of reperfusion. Both ischemic and chemical preconditioning significantly (P < 0.05) reduced myocardial C1q, C1r, C3, C8, and C9 mRNA levels. Western blot and immunohistochemistry demonstrated a similar reduction in C3 and membrane attack complex protein expression. The K(ATP) channel blocker glyburide (10 microM) reversed the depression of C1q, C1r, C3, C8, and C9 mRNA expression observed in the pinacidil-treated hearts. The results suggest that reduction of local tissue complement production may be one means by which preconditioning protects the ischemic myocardium.