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Interaction between adenosine A1 and A2 receptor-mediated responses in the rat hippocampus in vitro.大鼠海马体中腺苷A1和A2受体介导反应的体外相互作用
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Temporal correlation between adenosine outflow and synaptic potential inhibition in rat hippocampal slices during ischemia-like conditions.
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Activation of hippocampal adenosine A3 receptors produces a desensitization of A1 receptor-mediated responses in rat hippocampus.海马腺苷A3受体的激活会导致大鼠海马中A1受体介导的反应脱敏。
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Adenosine by activating A1 receptors prevents GABAA-mediated actions during hypoxia in the rat hippocampus.腺苷通过激活A1受体在大鼠海马体缺氧期间阻止GABAA介导的作用。
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Block by N6-L-phenylisopropyl-adenosine of the electrophysiological and morphological correlates of hippocampal ischaemic injury in the gerbil.N6-L-苯基异丙基腺苷对沙鼠海马缺血性损伤的电生理和形态学相关指标的阻断作用
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Tissue distribution of adenosine receptor mRNAs in the rat.大鼠体内腺苷受体mRNA的组织分布
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Modulation of excitatory synaptic transmission by adenosine released from single hippocampal pyramidal neurons.单个海马锥体神经元释放的腺苷对兴奋性突触传递的调节作用。
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The non-xanthine heterocyclic compound SCH 58261 is a new potent and selective A2a adenosine receptor antagonist.非黄嘌呤类杂环化合物SCH 58261是一种新型强效选择性A2a腺苷受体拮抗剂。
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Investigations into the adenosine outflow from hippocampal slices evoked by ischemia-like conditions.对缺血样条件诱发的海马切片中腺苷流出的研究。
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大鼠海马切片体外缺血期间的细胞外腺苷浓度

Extracellular adenosine concentrations during in vitro ischaemia in rat hippocampal slices.

作者信息

Latini S, Bordoni F, Pedata F, Corradetti R

机构信息

Department of Preclinical and Clinical Pharmacology, University of Florence, Italy.

出版信息

Br J Pharmacol. 1999 Jun;127(3):729-39. doi: 10.1038/sj.bjp.0702591.

DOI:10.1038/sj.bjp.0702591
PMID:10401564
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1566061/
Abstract
  1. The application of an ischaemic insult in hippocampal slices results in the depression of synaptic transmission, mainly attributed to the activation of A1 adenosine receptors by adenosine released in the extracellular space. 2. To estimate the concentration of endogenous adenosine acting at the receptor level during an ischaemic episode, we recorded field e.p.s.ps (fe.p.s.ps) from hippocampal slices, and evaluated the ability of the selective A1 receptor antagonist, 8-cyclopentyl-1,3-dipropylxanthine (DPCPX), to reverse the fe.p.s.p. depression induced by in vitro ischaemia. A relationship between the IC50 of an antagonist and the endogenous concentration of a neurotransmitter has been used for pharmacological analysis. 3. The complete and reversible depression of fe.p.s.p. in the CA1 region induced by 5 min ischaemia was decreased in the presence of DPCPX (50-500 nM). 8-Phenyltheophylline (10 microM) abolished the depression of fe.p.s.ps during the ischaemic period, while a small (peak effect 12 +/- 4%) decrease in fe.p.s.ps was observed during the initial phase of reperfusion. 4. In the time-interval of maximal depression of fe.p.s.ps., IC50 and adenosine concentration changed as function of time with a good degree of correlation. The maximal value of adenosine concentration was 30 microM. 5. Our data provide an estimation of the adenosine concentration reached at the receptor level during an ischaemic episode, with a higher time discrimination (15 s) than that achieved with any biochemical approach. This estimation may be useful in order to establish appropriate concentrations of purinergic compounds to be tested for their pharmacological effects during an ischaemic episode.
摘要
  1. 对海马切片施加缺血性损伤会导致突触传递抑制,这主要归因于细胞外空间释放的腺苷激活了A1腺苷受体。2. 为了估计缺血发作期间作用于受体水平的内源性腺苷浓度,我们记录了海马切片的场兴奋性突触后电位(fe.p.s.ps),并评估了选择性A1受体拮抗剂8-环戊基-1,3-二丙基黄嘌呤(DPCPX)逆转体外缺血诱导的fe.p.s.p抑制的能力。拮抗剂的半数抑制浓度(IC50)与神经递质内源性浓度之间的关系已用于药理学分析。3. 在存在DPCPX(50 - 500 nM)的情况下,由5分钟缺血诱导的CA1区fe.p.s.p的完全可逆性抑制有所降低。8-苯基茶碱(10 microM)消除了缺血期间fe.p.s.ps的抑制,而在再灌注初始阶段观察到fe.p.s.ps有小幅下降(峰值效应为12±4%)。4. 在fe.p.s.ps最大抑制的时间间隔内,IC50和腺苷浓度随时间变化,相关性良好。腺苷浓度的最大值为30 microM。5. 我们的数据提供了缺血发作期间受体水平达到的腺苷浓度的估计值,其时间分辨力(15秒)高于任何生化方法所达到的。这种估计可能有助于确定在缺血发作期间测试其药理作用的嘌呤能化合物的合适浓度。