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首页> 外文期刊>American Journal of Physiology >Complementary role of extracellular ATP and adenosine in ischemic preconditioning in the rat heart.
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Complementary role of extracellular ATP and adenosine in ischemic preconditioning in the rat heart.

机译:细胞外ATP和腺苷在大鼠心脏缺血预处理中的互补作用。

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摘要

Although adenosine is an important mediator of ischemic preconditioning (IPC), its relative contribution to IPC remains unknown. Because adenosine is formed through the hydrolysis of ATP, the present study investigated the role of ATP and adenosine in IPC. Isolated and buffer-perfused rat hearts underwent IPC by three cycles of 5-min ischemia and 5-min reperfusion before 25 min of global ischemia. The rate-pressure product (RPP) 30 min after reperfusion was taken as an endpoint of functional protection. Interstitial fluid (ISF) adenine nucleotides and adenosine were measured by cardiac microdialysis techniques. Inhibition of IPC-induced recovery of RPP was partial by the adenosine receptor antagonist 8-(p-sulfophenyl)theophylline (SPT; 100 microM) or by the structurally distinct P2Y purinoceptor antagonists suramin (300 microM) or reactive blue (RB; 10 microM) but was additive when SPT was given with suramin or RB. The P2X antagonist pyridoxal-phosphate-6-azophenyl-2',4'-disulfonic acid tetrasodium (50microM) had no effect on functional protection. The improved functional recovery was not significantly affected by an ecto-5'-nucleotidase inhibitor, alpha,beta-methylene adenosine diphosphate (AMP-CP; 100 microM), alone but was inhibited by AMP-CP plus SPT, suramin, or RB. ISF ATP and adenosine increased temporarily by 10-fold during IPC. AMP-CP augmented the increase in ISF ATP associated with the decrease in ISF adenosine. There was a reciprocal correlation between the ISF concentration of ATP and adenosine in preconditioned hearts. In addition, there was a significant correlation between ISF adenosine and ATP and the inhibitory potency of SPT and suramin or RB against functional protection conferred by IPC. These results suggest that extracellular ATP and adenosine play a complementary role in IPC through P2Y purinoceptors and adenosine receptors, respectively.
机译:尽管腺苷是缺血预处理(IPC)的重要介体,但其对IPC的相对贡献仍然未知。由于腺苷是通过ATP的水解形成的,因此本研究调查了ATP和腺苷在IPC中的作用。在局部缺血25分钟之前,通过5分钟局部缺血和5分钟再灌注的三个周期对分离和缓冲液灌注的大鼠心脏进行IPC。再灌注后30分钟的速率-压力乘积(RPP)被视为功能保护的终点。间质液(ISF)腺嘌呤核苷酸和腺苷通过心脏微透析技术进行测量。 IPC诱导的RPP的恢复受到腺苷受体拮抗剂8-(对-磺基苯基)茶碱(SPT; 100 microM)或结构上不同的P2Y嘌呤受体拮抗剂suramin(300 microM)或活性蓝(RB; 10 microM)的部分抑制),但当SPT与苏拉明或RB一起使用时可加和。 P2X拮抗剂吡ido醛-磷酸-6-偶氮苯基-2',4'-二磺酸四钠(50microM)对功能保护没有影响。单独的ecto-5'-核苷酸酶抑制剂α,β-亚甲基腺苷二磷酸(AMP-CP; 100 microM)并未显着影响功能恢复,但被AMP-CP加SPT,苏拉明或RB抑制。在IPC期间,ISF ATP和腺苷暂时增加了10倍。 AMP-CP增加了ISF ATP的增加,而ISF腺苷的减少与之相关。预处理后心脏的ISF ATP浓度与腺苷之间存在相互关系。此外,ISF腺苷和ATP与SPT和苏拉明或RB对IPC的功能保护的抑制能力之间存在显着相关性。这些结果表明,胞外ATP和腺苷分别通过P2Y嘌呤受体和腺苷受体在IPC中起互补作用。

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