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首页> 外文期刊>The Journal of Physiology >Presynaptic GABAB and adenosine A1 receptors regulate synaptic transmission to rat substantia nigra reticulata neurones.
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Presynaptic GABAB and adenosine A1 receptors regulate synaptic transmission to rat substantia nigra reticulata neurones.

机译:突触前GABA B和腺苷A1受体调节突触向大鼠黑质网状神经元的突触传递。

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摘要

1. Patch pipettes were used to record whole-cell currents under voltage clamp in substantia nigra zona reticulata (SNR) neurones in the rat midbrain slice. Bipolar electrodes evoked synaptic currents mediated by glutamate (EPSCs) and GABAA receptors (IPSCs). 2. Baclofen reduced the amplitude of IPSCs by 48% at its IC50 value of 0.60 microM. The GABAB antagonist CGP 35348 blocked this effect with a Kd value estimated by Schild analysis of 5 microM. 3. Adenosine reduced IPSCs by 48% at its IC50 value of 56 microM. Adenosine agonists reduced IPSCs with the following rank order of potency: CPA (N6-cyclopentyladenosine) > R-PIA (R(-)N6-(2-phenylisopropyl)adenosine) > CHA (N6-cyclohexyladenosine) = NECA (5'-N-ethylcarboxamidoadenosine) > 2-CADO (2-chloroadenosine) > adenosine. Schild analysis yielded a Kd value of 0.4 nM for antagonism of CPA by the adenosine A1 receptor antagonist DPCPX (8-cyclopentyl-1,3-dipropylxanthine). 4. Both baclofen and adenosine reduced the magnitude of paired-pulse depression of IPSCs, and neither blocked currents evoked by GABA, which was pressure-ejected from micropipettes. 5. Glutamate EPSCs were reduced by baclofen (IC50 = 0.78 microM) and adenosine (IC50 = 57 microM). Schild analysis yielded a Kd value of 11 microM for antagonism of baclofen-induced inhibition of EPSCs by CGP 35348. DPCPX (1 microM) completely blocked the inhibitory effects of adenosine (100 microM) and CPA (100 nM) on EPSCs. Neither adenosine nor baclofen reduced inward currents evoked by glutamate which was pressure-ejected from micropipettes. 6. These results show that presynaptic GABAB and A1 receptors reduce glutamate and GABA release from nerve terminals in the SNR.
机译:1.用移液吸管在电压钳制下记录大鼠中脑切片中黑质网状(SNR)神经元的全细胞电流。双极电极诱发由谷氨酸(EPSC)和GABAA受体(IPSC)介导的突触电流。 2. Baclofen在IC50值为0.60 microM时将IPSC的幅度降低了48%。 GABA B拮抗剂CGP 35348通过Schild分析(5 microM)估计的Kd值阻断了该作用。 3.腺苷的IC50值为56 microM时,可使IPSC降低48%。腺苷激动剂以下列效价等级降低IPSC:CPA(N6-环戊基腺苷)> R-PIA(R(-)N6-(2-苯基异丙基)腺苷)> CHA(N6-环己基腺苷)= NECA(5'-N -乙基羧酰胺基腺苷)> 2-CADO(2-氯腺苷)>腺苷Schild分析显示,腺苷A1受体拮抗剂DPCPX(8-环戊基-1,3-二丙基黄嘌呤)对CPA的拮抗作用的Kd值为0.4 nM。 4.巴氯芬和腺苷都降低了IPSC的成对脉冲抑制幅度,并且都没有阻止GABA引起的阻塞电流,而GABA是从微量移液器中压出的。 5.谷氨酰胺EPSC被巴氯芬(IC50 =0.78μM)和腺苷(IC50 =57μM)降低。 Schild分析显示,CGP 35348拮抗巴氯芬诱导的EPSC抑制作用的Kd值为11microM。DPCPX(1 microM)完全阻断了腺苷(100 microM)和CPA(100 nM)对EPSC的抑制作用。腺苷和巴氯芬均不能减少由微量移液器压出的谷氨酸引起的内向电流。 6.这些结果表明,突触前GABAB和A1受体减少了SNR中神经末梢的谷氨酸和GABA释放。

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