Lu Yan, Perl Edward R
Department of Cell and Molecular Physiology, University of North Carolina at Chapel Hill, 5133 NRB - CB 7545, Chapel Hill, NC 27599, USA.
J Physiol. 2007 Jul 1;582(Pt 1):127-36. doi: 10.1113/jphysiol.2007.131565. Epub 2007 Apr 26.
The superficial dorsal horn of the spinal cord (SDH; laminae I and II) receives strong input from thin primary afferent fibres and is involved in nociception, pain, temperature sensing and other experiences. The SDH also is the target of serotonergic and adrenergic projections from the brain stem. The interaction between descending pathways that utilize particular mediators and the neurone population of the SDH is poorly understood. To explore this issue, in rat spinal cord slices during whole-cell recordings from identified SDH neurones, noradrenaline (NA) or serotonin (5HT) were briefly applied in the superfusing artificial cerebrospinal fluid. The action of these agents proved specifically related to the type of SDH neurone and its dorsal-root afferent input. Vertical, radial and tonic central lamina II cells consistently expressed outward current to both NA and 5HT, but transient central and Substance P (SP)-insensitive lamina I cells were unaffected directly by either NA or 5HT. Extended islet cells responded with outward current to NA and inward current to 5HT. Lamina I SP-sensitive cells expressed an outward current regularly to NA. 5HT had inhibitory effects on Adelta and C fibre input to all types of SDH neurones. NA inhibited C fibre input to transient central neurones. The present results support the idea that descending systems may have multiple functions, including but not limited to nociceptive modulation.
脊髓背角浅层(SDH;I层和II层)接收来自细的初级传入纤维的强烈输入,并参与痛觉感受、疼痛、温度感知及其他感觉。SDH也是脑干5-羟色胺能和肾上腺素能投射的靶点。利用特定介质的下行通路与SDH神经元群体之间的相互作用尚不清楚。为探讨这个问题,在大鼠脊髓切片上,对已鉴定的SDH神经元进行全细胞记录时,在灌注的人工脑脊液中短暂施加去甲肾上腺素(NA)或5-羟色胺(5HT)。这些药物的作用证明与SDH神经元的类型及其背根传入输入有关。垂直、放射状和紧张性中央II层细胞对NA和5HT均持续表现出外向电流,但短暂性中央和P物质(SP)不敏感的I层细胞不受NA或5HT的直接影响。延伸的胰岛细胞对NA表现出外向电流,对5HT表现出内向电流。I层SP敏感细胞对NA规律性地表现出外向电流。5HT对所有类型的SDH神经元的Aδ和C纤维输入均有抑制作用。NA抑制对短暂性中央神经元的C纤维输入。目前的结果支持这样一种观点,即下行系统可能具有多种功能,包括但不限于伤害性调制。