Marchenko Vitaliy, Ghali Michael G Z, Rogers Robert F
Department of Neurobiology and Anatomy, Drexel University College of Medicine, Philadelphia, Pennsylvania
Department of Neurobiology and Anatomy, Drexel University College of Medicine, Philadelphia, Pennsylvania.
Am J Physiol Regul Integr Comp Physiol. 2015 Jun 1;308(11):R916-26. doi: 10.1152/ajpregu.00244.2014. Epub 2015 Apr 1.
While supraspinal mechanisms underlying respiratory pattern formation are well characterized, the contribution of spinal circuitry to the same remains poorly understood. In this study, we tested the hypothesis that intraspinal GABAergic circuits are involved in shaping phrenic motor output. To this end, we performed bilateral phrenic nerve recordings in anesthetized adult rats and observed neurogram changes in response to knocking down expression of both isoforms (65 and 67 kDa) of glutamate decarboxylase (GAD65/67) using microinjections of anti-GAD65/67 short-interference RNA (siRNA) in the phrenic nucleus. The number of GAD65/67-positive cells was drastically reduced on the side of siRNA microinjections, especially in the lateral aspects of Rexed's laminae VII and IX in the ventral horn of cervical segment C4, but not contralateral to microinjections. We hypothesize that intraspinal GABAergic control of phrenic output is primarily phasic, but also plays an important role in tonic regulation of phrenic discharge. Also, we identified respiration-modulated GABAergic interneurons (both inspiratory and expiratory) located slightly dorsal to the phrenic nucleus. Our data provide the first direct evidence for the existence of intraspinal GABAergic circuits contributing to the formation of phrenic output. The physiological role of local intraspinal inhibition, independent of descending direct bulbospinal control, is discussed.
虽然呼吸模式形成的脊髓上机制已得到充分表征,但脊髓回路对其的贡献仍知之甚少。在本研究中,我们测试了脊髓内GABA能回路参与塑造膈神经运动输出的假说。为此,我们在麻醉的成年大鼠中进行双侧膈神经记录,并通过向膈神经核内微量注射抗GAD65/67短干扰RNA(siRNA)来敲低谷氨酸脱羧酶(GAD65/67)两种同工型(65和67 kDa)的表达,观察神经电图变化。在siRNA微量注射侧,GAD65/67阳性细胞数量大幅减少,尤其是在颈段C4腹角Rexed板层VII和IX的外侧,但在微量注射对侧则未减少。我们推测脊髓内对膈神经输出的GABA能控制主要是阶段性的,但在膈神经放电的紧张性调节中也起重要作用。此外,我们还鉴定出位于膈神经核稍背侧的呼吸调制GABA能中间神经元(吸气和呼气的)。我们的数据为脊髓内存在有助于膈神经输出形成的GABA能回路提供了首个直接证据。讨论了独立于下行直接延髓脊髓控制的脊髓内局部抑制的生理作用。