首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Differential maturation of GABA action and anion reversal potential in spinal lamina I neurons: impact of chloride extrusion capacity.
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Differential maturation of GABA action and anion reversal potential in spinal lamina I neurons: impact of chloride extrusion capacity.

机译:脊髓板层I神经元中GABA作用和阴离子反转电位的差异性成熟:氯化物挤出能力的影响。

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A deficit in inhibition in the spinal dorsal horn has been proposed to be an underlying cause of the exaggerated cutaneous sensory reflexes observed in newborn rats. However, the developmental shift in transmembrane anion gradient, potentially affecting the outcome of GABAA transmission, was shown to be completed within 1 week after birth in the spinal cord, an apparent disparity with the observation that reflex hypersensitivity persists throughout the first 2-3 postnatal weeks. To further investigate this issue, we used several approaches to assess the action of GABA throughout development in spinal lamina I (LI) neurons. GABA induced an entry of extracellular calcium in LI neurons from postnatal day 0 (P0) to P21 rats, which involved T- and N-type voltage-gated calcium channels. Gramicidin perforated-patch recordings revealed that the shift in anion gradient was completed by P7 in LI neurons. However, high chloride pipette recordings demonstrated that these neurons had not reached their adult chloride extrusion capacity by P10-P11. Simultaneous patch-clamp recordings and calcium imaging revealed that biphasic responses to GABA, consisting of a primary hyperpolarization followed by a rebound depolarization, produced a rise in [Ca2+]i. Thus, even if Eanion predicts GABAA-induced hyperpolarization from rest, a low chloride extrusion capacity can cause a rebound depolarization and an ensuing rise in [Ca2+]i. We demonstrate that GABA action in LI neurons matures throughout the first 3 postnatal weeks, therefore matching the time course of maturation of withdrawal reflexes. Immature spinal GABA signaling may thus contribute to the nociceptive hypersensitivity in infant rats.
机译:脊髓背角的抑制缺陷被认为是新生大鼠皮肤感觉反射过度的根本原因。然而,跨膜阴离子梯度的发展变化可能会影响GABAA传递的结果,已显示在出生后1周内在脊髓中完成,这与在出生后的前2-3天反射超敏反应持续存在的观察结果存在明显差异。周。为了进一步研究这个问题,我们使用了几种方法来评估GABA在整个椎板I(LI)神经元发育过程中的作用。从出生后第0天(P0)到P21大鼠,GABA诱导LI神经元细胞内钙进入,其中涉及T型和N型电压门控钙通道。 Gramicidin穿孔膜片记录显示,LI神经元中的P7完成了阴离子梯度的转变。但是,高氯化物移液器记录表明,这些神经元尚未达到P10-P11的成人氯化物挤出能力。同时的膜片钳记录和钙成像显示,对GABA的双相反应(由最初的超极化和反弹性去极化组成)导致[Ca2 +] i升高。因此,即使Eanion预测静止状态下GABAA引起的超极化,低的氯化物挤出能力也可能导致回弹去极化和随之而来的[Ca2 +] i升高。我们证明,LI神经元中的GABA作用在整个出生后的前3周内成熟,因此与戒断反射的成熟时间相匹配。因此,未成熟的脊髓GABA信号传导可能会导致婴儿大鼠的伤害性超敏反应。

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