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腺苷作为大脑及离体脑组织的一种成分,及其与3':5'-环磷酸腺苷生成的关系。

Adenosine as a constituent of the brain and of isolated cerebral tissues, and its relationship to the generation of adenosine 3':5'-cyclic monophosphate.

作者信息

Newman M, McIlwain H

出版信息

Biochem J. 1977 Apr 15;164(1):131-7. doi: 10.1042/bj1640131.

Abstract
  1. Adenosine was determined in rapidly frozen rat and guinea-pig brain and in guinea-pig cerebral tissues after incubation in vitro. Adenosine concentrations were approx. 2nmol/g wet wt. in frozen tissue, diminished at room temperature, and returned to 2nmol/g on incubation in oxygenated glucose/salines. 2. Superfusion with noradrenaline then increased the tissue's adenosine concentration 2.5-fold, and hypoxia caused an 8-fold increase. 3. Electrical stimulation alone or in the presence of noradrenaline or histamine increased the tissue's adenosine and cyclic AMP, but adenosine concentrations reached their peak later and were maintained for longer than those of cyclic AMP. 4. Superfusion with l-glutamate with and without electrical excitation raised adenosine concentrations to 15-34nmol/g. The increases in cyclic AMP on electrical stimulation, superfusion with glutamate or a combination of these treatments were diminished by addition of adenosine deaminase or theophylline. 5. It is concluded that adenosine can be produced endogenously in cerebral systems, in sufficient concentrations to accelerate an adenosine-activated adenylate cyclase, and by this route can contribute to the cerebral actions of electrical stimulation and of the neurohumoral agents. In certain instances cyclic AMP as substrate contributes to an increase in adenosine.
摘要
  1. 测定了快速冷冻的大鼠和豚鼠脑以及体外孵育后的豚鼠脑组织中的腺苷。冷冻组织中腺苷浓度约为2nmol/g湿重,在室温下降低,在含氧葡萄糖/盐溶液中孵育后恢复至2nmol/g。2. 用去甲肾上腺素灌注可使组织腺苷浓度增加2.5倍,缺氧则使其增加8倍。3. 单独电刺激或在去甲肾上腺素或组胺存在下电刺激可增加组织中的腺苷和环磷酸腺苷(cAMP),但腺苷浓度达到峰值的时间较晚,且维持时间比cAMP长。4. 在有或无电刺激的情况下用L-谷氨酸灌注可使腺苷浓度升至15 - 34nmol/g。添加腺苷脱氨酶或茶碱可减少电刺激、用谷氨酸灌注或这些处理联合作用时cAMP的增加。5. 得出结论:腺苷可在脑系统中内源性产生,其浓度足以加速腺苷激活的腺苷酸环化酶,通过此途径可促进电刺激和神经体液因子的脑内作用。在某些情况下,cAMP作为底物会促使腺苷增加。

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Adenosine kinase of mammalian brain: partial purification and its role for the uptake of adenosine.
J Neurochem. 1972 Mar;19(3):687-98. doi: 10.1111/j.1471-4159.1972.tb01384.x.

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