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缺氧时腺苷A1和A3受体激活对离体大鼠心肌细胞的心脏保护作用。

Cardioprotective effects of adenosine A1 and A3 receptor activation during hypoxia in isolated rat cardiac myocytes.

作者信息

Safran N, Shneyvays V, Balas N, Jacobson K A, Nawrath H, Shainberg A

机构信息

Gonda (Goldschmied) Medical Diagnostic Research Center, Faculty of Life Sciences, Bar-Ilan University, Ramat-Gan, Israel.

出版信息

Mol Cell Biochem. 2001 Jan;217(1-2):143-52. doi: 10.1023/a:1007209321969.

Abstract

Adenosine (ADO) is a well-known regulator of a variety of physiological functions in the heart. In stress conditions, like hypoxia or ischemia, the concentration of adenosine in the extracellular fluid rises dramatically, mainly through the breakdown of ATP. The degradation of adenosine in the ischemic myocytes induced damage in these cells, but it may simultaneously exert protective effects in the heart by activation of the adenosine receptors. The contribution of ADO to stimulation of protective effects was reported in human and animal hearts, but not in rat hearts. The aim of this study was to evaluate the role of adenosine A1 and A3 receptors (A1R and A3R), in protection of isolated cardiac myocytes of newborn rats from ischemic injury. The hypoxic conditions were simulated by exposure of cultured rat cardiomyocytes (4-5 days in vitro), to an atmosphere of a N2 (95%) and CO2 (5%) mixture, in glucose-free medium for 90 min. The cardiotoxic and cardioprotective effects of ADO ligands were measured by the release of lactate dehydrogenase (LDH) into the medium. Morphological investigation includes immunohistochemistry, image analysis of living and fixed cells and electron microscopy were executed. Pretreatment with the adenosine deaminase considerably increased the hypoxic damage in the cardiomyocytes indicating the importance of extracellular adenosine. Blocking adenosine receptors with selective A1 and A3 receptor antagonists abolished the protective effects of adenosine. A1R and A3R activation during the hypoxic insult delays onset of irreversible cell injury and collapse of mitochondrial membrane potential as assessed using DASPMI fluorochrom. Cardioprotection induced by the A1R agonist, CCPA, was abolished by an A1R antagonist, DPCPX, and was not affected by an A3R antagonist, MRS 1523. Cardioprotection caused by the A3R agonist, Cl-IB-MECA, was antagonized completely by MRS 1523 and only partially by DPCPX. Activation of both A1R and A3R together was more efficient in protection against hypoxia than by each one alone. Our study indicates that activation of either A1 or A3 adenosine receptors in the rat can attenuate myocyte injury during hypoxia. Highly selective A1R and A3R agonists may have potential as cardioprotective agents against ischemia or heart surgery.

摘要

腺苷(ADO)是心脏多种生理功能的著名调节因子。在应激条件下,如缺氧或缺血时,细胞外液中腺苷的浓度会急剧上升,主要是通过ATP的分解。缺血心肌细胞中腺苷的降解会导致这些细胞受损,但它可能同时通过激活腺苷受体对心脏发挥保护作用。在人和动物心脏中报道了ADO对刺激保护作用的贡献,但在大鼠心脏中尚未见报道。本研究的目的是评估腺苷A1和A3受体(A1R和A3R)在保护新生大鼠离体心肌细胞免受缺血损伤中的作用。通过将培养的大鼠心肌细胞(体外培养4 - 5天)暴露于N2(95%)和CO2(5%)混合气体的气氛中,在无葡萄糖培养基中培养90分钟来模拟缺氧条件。通过测定乳酸脱氢酶(LDH)释放到培养基中的量来检测ADO配体的心脏毒性和心脏保护作用。进行了形态学研究,包括免疫组织化学、活细胞和固定细胞的图像分析以及电子显微镜检查。用腺苷脱氨酶预处理显著增加了心肌细胞的缺氧损伤,表明细胞外腺苷的重要性。用选择性A1和A3受体拮抗剂阻断腺苷受体消除了腺苷的保护作用。使用DASPMI荧光染料评估,缺氧损伤期间A1R和A3R的激活延迟了不可逆细胞损伤的发生和线粒体膜电位的崩溃。A1R激动剂CCPA诱导的心脏保护作用被A1R拮抗剂DPCPX消除,且不受A3R拮抗剂MRS 1523的影响。A3R激动剂Cl-IB-MECA引起的心脏保护作用被MRS 1523完全拮抗,仅被DPCPX部分拮抗。A1R和A3R共同激活在抗缺氧保护方面比单独激活任何一种受体更有效。我们的研究表明,大鼠中A1或A3腺苷受体的激活可减轻缺氧期间的心肌细胞损伤。高度选择性的A1R和A3R激动剂可能具有作为抗缺血或心脏手术心脏保护剂的潜力。

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