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首页> 外文期刊>American Journal of Physiology >Glutamatergic inputs to the CVLM independent of the NTS promote tonic inhibition of sympathetic vasomotor tone in rats.
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Glutamatergic inputs to the CVLM independent of the NTS promote tonic inhibition of sympathetic vasomotor tone in rats.

机译:对CVLM的谷氨酸异细胞体输入独立于NTS,促进了大鼠同情血管运动的补品抑制。

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GABAergic neurons in the caudal ventrolateral medulla (CVLM) are driven by baroreceptor inputs relayed via the nucleus tractus solitarius (NTS), and they inhibit neurons in rostral ventrolateral medulla to reduce sympathetic nerve activity (SNA) and arterial pressure (AP). After arterial baroreceptor denervation or lesions of the NTS, inhibition of the CVLM continues to increase AP, suggesting additional inputs also tonically activate the CVLM. This study examined whether the NTS contributes to baroreceptor-independent drive to the CVLM and whether glutamate promotes baroreceptor- and NTS-independent activation of the CVLM to tonically reduce SNA. In addition, we evaluated whether altering central respiratory drive, a baroreceptor-independent regulator of CVLM neurons, influences glutamatergic inputs to the CVLM. Splanchnic SNA and AP were measured in chloralose-anesthetized, ventilated, paralyzed rats. The infusion of nitroprusside decreased AP below threshold for baroreceptor afferent firing (<50 mmHg) and increased SNA to 209+/-22% (P<0.05), but the subsequent inhibition of the NTS by microinjection of the GABA(A) agonist muscimol did not further increase SNA. In contrast, after inhibition of the NTS, blockade of glutamatergic inputs to CVLM by microinjection of kynurenate increased SNA (274+/-54%; P<0.05; n=7). In vagotomized rats with baroreceptors unloaded, inhibition of glutamatergic inputs to CVLM evoked a larger rise in SNA when central respiratory drive was increased (219+/-16% vs. 271+/-17%; n=5; P<0.05). These data suggest that baroreceptor inputs provide the major drive for the NTS-mediated excitation of the CVLM. Furthermore, glutamate tonically activates the CVLM to reduce SNA independent of the NTS, and this excitatory input appears to be affected by the strength of central respiratory drive.
机译:在尾部口腔外髓内(CVLM)中的胃肠杆菌神经元由核心泌尿菌菌(NTS)中继的丧失运动进入驱动,它们抑制rostral ventrolateral medulla中的神经元,以减少交感神经活动(SNA)和动脉压(AP)。在动脉丧风管去除或NTS的病变后,CVLM的抑制继续增加AP,表明另外的输入也调节CVLM。本研究检测了NTS是否有助于对CVLM的丧失运动失控的驱动,并抑制谷氨酸和谷氨酸的反感 - 和NTS-NTS的NTS-NET-NETS-NTS-NETS-NES-NES-IS-NTS-NES-NETS-NTS-STOATION CVLM活化,并在减少SNA中进行CVLM。此外,我们还评估了是否改变了中央呼吸驱动,是CVLM神经元的丧失反冲受体稳压器,影响谷氨酸异构的输入到CVLM。 Splancanc ana和Ap是在氯蔗糖麻醉,通风的瘫痪大鼠中测量的。硝普乳房的输注降低了前低聚荷(<50mmHg)的阈值下降,并增加了SNA至209 +/- 22%(P <0.05),但随后通过显微注射GABA(A)激动剂uscimol对NTS的抑制没有进一步增加sna。相比之下,在抑制NTS后,通过微调蛋尿苷的微调增加SNA(274 +/- 54%; P <0.05; n = 7),阻断对CVLM的谷氨酸谷氨酸输入。在卸载中的压力瘤大鼠中,当中枢呼吸驱动增加(219 +/- 16%Vs.271 + / -17%; n = 5; p <0.05)时,抑制谷氨酸剂的输入对CVLM的抑制诱发SNA较大升高。这些数据表明,呼吸器输入为NTS介导的CVLM激发提供了主要驱动器。此外,谷氨酸通过调节CVLM激活,以减少独立于NTS的SNA,并且这种兴奋输入似乎受到中央呼吸驱动力的强度影响。

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