Kuwana S, Okada Y, Sugawara Y, Tsunekawa N, Obata K
Department of Physiology, Teikyo University School of Medicine, Kaga 2-11-1, Itabashi-ku, Tokyo 173-8605, Japan.
Neuroscience. 2003;120(3):861-70. doi: 10.1016/s0306-4522(03)00338-5.
To examine the role of GABA in the respiratory rhythm and pattern generation in neonatal mice, we analyzed the function of the respiratory control system of 67-kDa isoform of glutamic acid decarboxylase (GAD67)-deficient neonatal mice. In these mutant (GAD67-/-) mice, GABA levels in the brainstem were reduced to about 30% of those in wild-type (GAD67+/+) mice. In in vivo preparations, ventilatory parameters were analyzed by whole body plethysmography and electromyography of intercostal muscles. GAD67-/- mice exhibited abnormal respiratory patterns, i.e. irregular respiratory rhythm, and periodic gasp-like respiration followed by shallow breathing with short inspiratory duration and apnea. In in vitro GAD67-/- brainstem-spinal cord preparations, inspiratory C4 burst duration was shorter than that in GAD67+/+ preparations. Whole cell recordings revealed that activities of inspiratory neurons in the ventral medulla of GAD67-/- mice were characterized by a short depolarization period and a paucity of firing during the inspiratory phase. Superfusion of the in vitro GAD67-/- preparation with 10 microM GABA prolonged C4 burst duration and partly restored a normal pattern of inspiration, although the restoration was limited. These results indicate that reduced GABA levels during the perinatal period induce malfunction in the respiratory control system. We suggest that GABAergic transmission is not essential for basic respiratory rhythm generation but plays an important role in the maintenance of regular respiratory rhythm and normal inspiratory pattern in neonatal mice.
为研究γ-氨基丁酸(GABA)在新生小鼠呼吸节律和模式产生中的作用,我们分析了谷氨酸脱羧酶67-kDa亚型(GAD67)缺陷型新生小鼠呼吸控制系统的功能。在这些突变(GAD67-/-)小鼠中,脑干中的GABA水平降至野生型(GAD67+/+)小鼠的约30%。在体内实验中,通过全身体积描记法和肋间肌肌电图分析通气参数。GAD67-/-小鼠表现出异常的呼吸模式,即呼吸节律不规则,以及周期性喘息样呼吸,随后是吸气持续时间短且伴有呼吸暂停的浅呼吸。在体外GAD67-/-脑干-脊髓标本中,吸气C4爆发持续时间比GAD67+/+标本短。全细胞记录显示,GAD67-/-小鼠延髓腹侧吸气神经元的活动特征为去极化期短且吸气期放电稀少。用10微摩尔/升GABA对体外GAD67-/-标本进行灌流可延长C4爆发持续时间,并部分恢复正常的吸气模式,尽管恢复有限。这些结果表明围产期GABA水平降低会导致呼吸控制系统功能障碍。我们认为GABA能传递对于基本呼吸节律的产生并非必不可少,但在维持新生小鼠的规则呼吸节律和正常吸气模式中起重要作用。