Department of Physiology, Southern Medical University, Guangzhou 510515, People's Republic of China.
Cell Mol Neurobiol. 2010 Jul;30(5):667-70. doi: 10.1007/s10571-010-9500-5. Epub 2010 Feb 7.
This study tested whether the glial cells are involved in the exciting effects of doxapram on brainstem slice in vitro. Experiments were performed in brainstem slice preparations from neonatal rats. The medial area of nucleus retrofacialis (mNRF) and the hypoglossal nerve (XII nerve) were contained in the preparations. The slices were perfused with modified Kreb's solution (MKS), and the rhythmical respiratory discharge activity (RRDA) was simultaneously recorded from the XII nerve by using suction electrodes, including the discharge time course of inspiratory (Ti), expiratory (Te), respiratory cycle (RC), and integrity amplitude of inspiratory discharge (IA). After applying of doxapram (5 microM) to the MKS for 10 min, Ti and IA increased significantly (85.0 +/- 25.0%, 13.2 +/- 2.5%, respectively, P < 0.05), the Te and the RC decreased significantly (19.0 +/- 1.4%, 12.8 +/- 1.4%, respectively, P < 0.05) when compared with control group. When the methionine sulfoximine (MS, 10 microM), a blockage of glutamine synthetase, was applied, all the exciting effects of doxapram on RRDA were reversed. After the glutamine (20 microM) was applied to the MKS for 10 min, the exciting effects were revealed again. Our results suggest that the normal metabolism of glial cells takes a key role in the modification of the RRDA in the slices. In conclusion, glial cells are involved in the exciting effects of doxapram on brainstem slice in vitro.
本研究旨在探讨神经胶质细胞是否参与了地佐辛对体外脑片的兴奋作用。实验采用新生大鼠脑片制备方法,脑片中包含面神经膝状核(mNRF)和舌下神经(XII 神经)。脑片用改良 Krebs 溶液(MKS)灌流,通过吸液电极同步记录 XII 神经的节律性呼吸放电活动(RRDA),包括吸气(Ti)、呼气(Te)、呼吸周期(RC)和吸气放电的完整性幅度(IA)的放电时间过程。地佐辛(5μM)作用于 MKS 10 分钟后,Ti 和 IA 显著增加(分别为 85.0%±25.0%和 13.2%±2.5%,P<0.05),Te 和 RC 显著降低(分别为 19.0%±1.4%和 12.8%±1.4%,P<0.05),与对照组相比。当应用甲硫氨酸亚砜(MS,10μM)抑制谷氨酰胺合成酶时,地佐辛对 RRDA 的所有兴奋作用均被逆转。将谷氨酰胺(20μM)加入 MKS 10 分钟后,兴奋作用再次显现。研究结果表明,神经胶质细胞的正常代谢在脑片中 RRDA 的修饰中起着关键作用。总之,胶质细胞参与了地佐辛对体外脑片的兴奋作用。