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水蛭节段神经节伤害性神经元的特性

Properties of the nociceptive neurons of the leech segmental ganglion.

作者信息

Pastor J, Soria B, Belmonte C

机构信息

Departmento de Fisiología, Universidad de Alicante, Spain.

出版信息

J Neurophysiol. 1996 Jun;75(6):2268-79. doi: 10.1152/jn.1996.75.6.2268.

Abstract
  1. The electrical responses of nociceptive (N) lateral and N medial neurons of the leech segmental ganglion to mechanical, chemical, and thermal stimulation of the skin were studied in a superfused ganglion-body wall preparation. 2. Mechanical indentation of the skin > 10 mN evoked in both types of cells a sustained discharge of impulses; afterdischarge was often observed with suprathreshold stimulations. 3. Application to the cutaneous receptive area of 10-100 mM acetic acid or of NaCI crystals and solutions also elicited a firing response in N medial and N lateral cells. In contrast, capsaicin applied to the skin (3.3 x 10(-5) to 3.3 x 10(-2) M) excited N lateral but not N medial neurons. Likewise, impulse discharges were obtained when capsaicin was applied to the cell bodies of N lateral but not of N medial neurons. 4. In both types of N neurons, heating of the skin above 39 degrees C evoked a discharge of impulses whose frequency was roughly proportional to temperature values. 5. Application of repeated suprathreshold heating cycles at 10-min intervals enhanced the impulse frequency of the response (sensitization). Shorter time intervals between heating cycles depressed the response to heat. Sensitization could not be obtained by equivalent soma depolarizations obtained by intracellular current injection. 6. Impulse discharges evoked by irritant agents were also augmented by previous application of noxious heat. 7. N lateral neurons fired in response to low-pH solutions and capsaicin directly applied onto the ganglion. N medial neurons responded inconsistently to acid and were insensitive to capsaicin. Action potentials evoked in N lateral cells by capsaicin had a slow rise, a prominent hump, and a prolonged afterhyperpolarization. 8. It is concluded that N neurons of the leech segmental ganglion respond to different modalities of noxious stimuli applied to their peripheral receptive fields and develop sensitization after repeated noxious stimulation. These properties are typical of mammalian polymodal nociceptors; thus N neurons may be a simple model for analysis of membrane mechanisms associated with polymodality of nociceptive neurons.
摘要
  1. 在灌流的神经节 - 体壁标本中,研究了水蛭节段神经节中伤害性(N)外侧和内侧神经元对皮肤的机械、化学和热刺激的电反应。2. 皮肤机械压痕大于10 mN时,两种类型的细胞均会诱发持续的冲动发放;阈上刺激时经常观察到后放电。3. 将10 - 100 mM乙酸或氯化钠晶体及溶液施加于皮肤感受区域,也会在N内侧和外侧细胞中引发放电反应。相比之下,将辣椒素施加于皮肤(3.3×10⁻⁵至3.3×10⁻² M)会兴奋N外侧神经元,但不会兴奋N内侧神经元。同样,当将辣椒素施加于N外侧神经元的细胞体而非N内侧神经元的细胞体时,可获得冲动发放。4. 在两种类型的N神经元中,皮肤温度加热至39℃以上会诱发冲动发放,其频率大致与温度值成正比。5. 以10分钟的间隔重复施加阈上加热周期可增强反应的冲动频率(致敏作用)。加热周期之间较短的时间间隔会抑制对热的反应。通过细胞内电流注入获得的等效体细胞去极化无法产生致敏作用。6. 刺激性物质诱发的冲动发放也会因先前施加的有害热而增强。7. N外侧神经元会对低pH溶液和直接施加于神经节的辣椒素产生反应而发放冲动。N内侧神经元对酸的反应不一致,且对辣椒素不敏感。辣椒素在N外侧细胞中诱发的动作电位上升缓慢,有一个明显的峰值,且后超极化持续时间延长。8. 得出的结论是,水蛭节段神经节的N神经元对施加于其外周感受野的不同形式的有害刺激产生反应,并在反复的有害刺激后产生致敏作用。这些特性是哺乳动物多模式伤害感受器的典型特征;因此,N神经元可能是用于分析与伤害性神经元多模式相关的膜机制的一个简单模型。

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