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首页> 外文期刊>Hypertension research: Official journal of the Japanese Society of Hypertension >Baro-excited neurons in the caudal ventrolateral medulla (CVLM) recorded using the whole-cell patch-clamp technique
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Baro-excited neurons in the caudal ventrolateral medulla (CVLM) recorded using the whole-cell patch-clamp technique

机译:使用全细胞膜片钳技术记录尾侧腹外侧延髓(CVLM)中的正压激发神经元

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Caudal ventrolateral medulla (CVLM) neurons have important roles in the regulation of sympathetic nerve activity and blood pressure through their tonic inhibition of rostral ventrolateral medulla neurons. As few reports have demonstrated CVLM neuronal activity using the whole-cell patch-clamp technique, we attempted to find neurons in the CVLM that are depolarized by the stimulation of baroreceptors. To record the membrane potentials of the neurons in the CVLM, we developed a modified brainstem-spinal cord preparation that enabled us to change the pressure exerted on the aortic arch and carotid sinuses. We were able to identify neurons in the CVLM in which they were depolarized and the action potential (AP) frequency was increased upon baroreceptor stimulation. We referred to these neurons as baro-excited CVLM neurons. When these preparations were superfused with an angiotensin-ll (Ang-ll) solution, the frequency of the APs increased in 10 of the 14 baro-excited CVLM neurons. Superfusion with a Iow-Ca~(2+), high-Mg(2+) solution abolished the APs in all seven baro-excited CVLM neurons, suggesting that the baro-excited CVLM neurons did not fire spontaneously. When the preparation was superfused with a Iow-Ca(2+) solution, 6 of the 7 baro-excited CVLM neurons did not respond to Ang-ll superfusion. We for the first time found the baro-excited CVLM neurons, which depolarized pressure dependently but may not fire spontaneously. As Ang-ll did not change the activity of the CVLM neurons during superfusion with a Iow-Ca(2+), high-Mg(2+) solution, the presynaptic neurons may be mandatory for the Ang-ll-induced activation of postsynaptic baro-excited CVLM neurons.
机译:尾侧腹外侧延髓(CVLM)神经元通过补强抑制眼侧腹外侧延髓神经元,在交感神经活动和血压的调节中起重要作用。由于很少有报道使用全细胞膜片钳技术证明CVLM神经元的活性,我们试图在CVLM中找到由于压力感受器刺激而去极化的神经元。为了记录CVLM中神经元的膜电位,我们开发了一种改良的脑干-脊髓制备,使我们能够改变施加在主动脉弓和颈动脉窦上的压力。我们能够识别CVLM中的神经元,在这些神经元中它们已被去极化,并且在压力感受器刺激后动作电位(AP)频率增加。我们将这些神经元称为气压激发的CVLM神经元。当这些制剂与血管紧张素II(Ang-II)溶液融合时,AP的频率在14个气压激发的CVLM神经元中的10个中增加。用Iow-Ca〜(2+),高Mg(2+)溶液进行的灌注消除了所有七个气压激发的CVLM神经元的AP,这表明气压激发的CVLM神经元没有自发激发。当用Iow-Ca(2+)解决方案对制剂进行融合时,7个气压激发的CVLM神经元中有6个对Ang-II融合无反应。我们首次发现了气压激发的CVLM神经元,该神经元可以使压力去极化,但可能不会自发放电。由于在Iow-Ca(2+),高Mg(2+)溶液的灌注过程中Ang-II不会改变CVLM神经元的活性,因此突触前神经元可能是Ang-II诱导的突触后激活所必需的气压激发的CVLM神经元。

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