Parabrachial area: Electrophysiological evidence for an involvement in cold nociception

被引:49
作者
Menendez, L
Bester, H
Besson, JM
Bernard, JF
机构
[1] INSERM, U161, UNITE RECH PHYSIOPHARMACOL SYST NERVEUX, F-75014 PARIS, FRANCE
[2] ECOLE PRAT HAUTES ETUD, F-75014 PARIS, FRANCE
关键词
D O I
10.1152/jn.1996.75.5.2099
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
1. Thirty-five percent of 120 neurons recorded extracellularly in the parabrachial (PB) area of anesthetized rats responded to a peripheral cold stimulus (0 degrees C). The cold-sensitive neurons were located in the lateral PB area, and most of those exhibiting a strong response to cold stimuli were inside or in close vicinity to the area receiving a high density of projections from superficial neurons of the dorsal horn. 2. The receptive fields for cold stimulation often were restricted to one or two parts of the body with a contralateral predominance for the limbs. No side predominance was observed for the face. 3. From a low spontaneous activity (10th percentile < median < 90th percentile: 0.1 < 1.5 < 5 Hz), the PB neurons responded to cold noxious stimuli (0 degrees C water bath or waterjet, 20 s), without observable delay, with a sustained discharge. The mean maximal response to the stimulus was 16.1 +/- 1.2 Hz (mean +/- SE; n = 42). 4. About one-half (45%) of these cold-sensitive neurons were activated specifically by cold stimulation and did not respond or were inhibited by noxious heat and/or pinch. The remaining (55%) cold-sensitive neurons were also driven by heat and/or pinch. 5. The cold-sensitive neurons exhibited a clear capacity to encode cold stimuli in the noxious range: the stimulus-response function was always positive and monotonic from 30 to 0 degrees C; the mean curve was linear between 20 and 0 degrees C before plateauing between 0 to -10 degrees C; the mean threshold to cold stimulation was 17.1 +/- 1 degrees C (n = 21) and the mean t(50) was 10.7 +/- 1.1 degrees C (n = 13). 6. The cold-sensitive neurons responded to intense transcutaneous electrical stimulation with an early and/or a late peak of activation, the latencies of which were in the 15-50 ms and 80-170 ms ranges (n = 8), respectively, i.e., compatible with the activation of A delta and C fibers. Interestingly, the cold-specific neurons predominantly responded with a late peak, suggesting these neurons were primarily driven by peripheral C fibers. 7. The intravenous injection of morphine depressed the responses of PB neurons to cold noxious stimuli in a dose-related (1, 3, and 9 mg/kg) and naloxone reversible fashion. The ED(50) value was estimated similar to 2 mg/kg. Furthermore, two populations of neurons could be separated according to their morphine sensitivity. 8. It is concluded that PB cold-nonspecific neurons could be involved in affective-emotional, autonomic and neuroendocrine reactions in response to noxious cold events. The PB cold-specific neurons could be, in addition, involved in some thermoregulatory processes.
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收藏
页码:2099 / 2116
页数:18
相关论文
共 118 条
[51]   CONNECTIONS OF THE PARABRACHIAL NUCLEUS WITH THE NUCLEUS OF THE SOLITARY TRACT AND THE MEDULLARY RETICULAR-FORMATION IN THE RAT [J].
HERBERT, H ;
MOGA, MM ;
SAPER, CB .
JOURNAL OF COMPARATIVE NEUROLOGY, 1990, 293 (04) :540-580
[52]   The central gustatory paths in the brains of bony fishes. [J].
Herrick, CJ .
JOURNAL OF COMPARATIVE NEUROLOGY AND PSYCHOLOGY, 1905, 15 (05) :375-456
[53]   MORPHINE DEPRESSES THE TRANSMISSION OF NOXIOUS MESSAGES IN THE SPINO(TRIGEMINO)-PONTO-AMYGDALOID PATHWAY [J].
HUANG, GF ;
BESSON, JM ;
BERNARD, JF .
EUROPEAN JOURNAL OF PHARMACOLOGY, 1993, 230 (03) :279-284
[54]   PHYSIOLOGY AND MORPHOLOGY OF THE LAMINA-I SPINOMESENCEPHALIC PROJECTION [J].
HYLDEN, JLK ;
HAYASHI, H ;
DUBNER, R ;
BENNETT, GJ .
JOURNAL OF COMPARATIVE NEUROLOGY, 1986, 247 (04) :505-515
[55]   SPINAL LAMINA-I NEURONS PROJECTING TO THE PARABRACHIAL AREA OF THE CAT MIDBRAIN [J].
HYLDEN, JLK ;
HAYASHI, H ;
BENNETT, GJ ;
DUBNER, R .
BRAIN RESEARCH, 1985, 336 (01) :195-198
[56]   CARDIOVASCULAR INFLUENCES ON RAT PARABRACHIAL NUCLEUS - AN ELECTROPHYSIOLOGICAL STUDY [J].
JHAMANDAS, JH ;
AIPPERSBACH, SE ;
HARRIS, KH .
AMERICAN JOURNAL OF PHYSIOLOGY, 1991, 260 (01) :R225-R231
[57]  
Kajander K. C., 1994, Society for Neuroscience Abstracts, V20, P1571
[58]   BRAIN-STEM PROJECTIONS OF SENSORY AND MOTOR COMPONENTS OF THE VAGUS NERVE IN THE RAT [J].
KALIA, M ;
SULLIVAN, JM .
JOURNAL OF COMPARATIVE NEUROLOGY, 1982, 211 (03) :248-264
[59]   FACILITATION OF THE RESPONSES OF PRIMATE SPINOTHALAMIC CELLS TO COLD AND TO TACTILE STIMULI BY NOXIOUS HEATING OF THE SKIN [J].
KENSHALO, DR ;
LEONARD, RB ;
CHUNG, JM ;
WILLIS, WD .
PAIN, 1982, 12 (02) :141-152
[60]   CELLS OF ORIGIN OF THE SPINOPARABRACHIAL FIBERS IN THE RAT - A STUDY WITH FAST BLUE AND WGA-HRP [J].
KITAMURA, T ;
YAMADA, J ;
SATO, H ;
YAMASHITA, K .
JOURNAL OF COMPARATIVE NEUROLOGY, 1993, 328 (03) :449-461