EXTRACELLULAR ALKALINE-ACID-ALKALINE TRANSIENTS IN THE RAT SPINAL-CORD EVOKED BY PERIPHERAL STIMULATION

被引:55
作者
SYKOVA, E
SVOBODA, J
机构
[1] Institute of Physiological Regulations, Czechoslovak Academy of Sciences, Prague
关键词
Extracellular pH; Extracellular potassium; Ion-sensitive microelectrode; Pain; Rat; Spinal cord;
D O I
10.1016/0006-8993(90)90625-L
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Regional differences in extracellular pH (pHe) were found in unstimulated rat spinal cord using double-barrel pH-sensitive microelectrodes. The pHe in the lower dorsal horn (laminae III-VII) was about 7.15, i.e. by about 0.2 pH units lower than the measured in the cerebrospinal fluid. Transient acid shifts in pHe by 0.01-0.05 pH units were found when acute nociceptive stimuli (pinch, press, heat) were applied to the hind paw. Chemical or thermal injury evoked by subcutaneous injection of turpentine or by application of 1-3 ml of hot oil onto the hindpaw produced a long-term decrease in pHe base line in the lower dorsal horn by about 0.05-0.1 pH units. The decrease in pHe began 2-10 min after injury and persisted for more than 2 h. Electrical nerve stimulation (10-100 Hz, 20-60 s) elicited biphasic (acid-alkaline) or triphasic (alkaline-acid-alkaline) changes in pHe which have a similar depth profile as the concomitantly recorded increase in [K+]e. An initial alkaline shift by about 0.005 pH units was found to be significantly decreased by La3+, an H+ channel blocker. The dominating acid shift by about 0.1-0.2 pH units was accelerated and increased by acetazolamide (carbonic anhydrase inhibitor) showing that the high buffering capacity of the extracellular fluid may hamper the resolution of acid perturbations. Stimulation-evoked acid shifts were blocked by amiloride, SITS, DIDS and La3+ and therefore have a complex mechanism which includes Na+/H+ exchange, Cl-/HCO3- cotransport and/or Na+/Cl-/H+/HCO3- antiport and H+ efflux through voltage-sensitive H+ channels. The poststimulation alkaline shift (alkaline undershoot) was blocked by ouabain and reflects coupled clearance of K+ and H+ by active transport processes. © 1990 Elsevier Science Publishers B. V. (Biomedical Division).
引用
收藏
页码:181 / 189
页数:9
相关论文
共 50 条
[1]   NEUTRAL CARRIER BASED HYDROGEN-ION SELECTIVE MICROELECTRODE FOR EXTRACELLULAR AND INTRACELLULAR STUDIES [J].
AMMANN, D ;
LANTER, F ;
STEINER, RA ;
SCHULTHESS, P ;
SHIJO, Y ;
SIMON, W .
ANALYTICAL CHEMISTRY, 1981, 53 (14) :2267-2269
[2]   EFFECTS OF BICARBONATE ON GLIAL-CELL MEMBRANE-POTENTIAL IN NECTURUS OPTIC-NERVE [J].
ASTION, ML ;
COLES, JA ;
ORKAND, RK .
NEUROSCIENCE LETTERS, 1987, 76 (01) :47-52
[3]   ELECTROGENIC NA+/HCO3- COTRANSPORT IN NEUROGLIA [J].
ASTION, ML ;
ORKAND, RK .
GLIA, 1988, 1 (05) :355-357
[4]   CONCENTRATION OF CARBON-DIOXIDE, INTERSTITIAL PH AND SYNAPTIC TRANSMISSION IN HIPPOCAMPAL-FORMATION OF THE RAT [J].
BALESTRINO, M ;
SOMJEN, GG .
JOURNAL OF PHYSIOLOGY-LONDON, 1988, 396 :247-266
[5]   REGULATION OF INTRACELLULAR PH IN VERTEBRATE CENTRAL NEURONS [J].
CHESLER, M ;
NICHOLSON, C .
BRAIN RESEARCH, 1985, 325 (1-2) :313-316
[6]   INTRACELLULAR PH OF ASTROCYTES INCREASES RAPIDLY WITH CORTICAL STIMULATION [J].
CHESLER, M ;
KRAIG, RP .
AMERICAN JOURNAL OF PHYSIOLOGY, 1987, 253 (04) :R666-R670
[7]   STIMULUS-INDUCED EXTRACELLULAR PH TRANSIENTS IN THE INVITRO TURTLE CEREBELLUM [J].
CHESLER, M ;
CHAN, CY .
NEUROSCIENCE, 1988, 27 (03) :941-948
[8]  
CHVATAL A, 1988, PHYSIOL BOHEMOSLOV, V37, P203
[9]   PH OF BRAIN EXTRACELLULAR FLUID IN CAT [J].
CRAGG, P ;
PATTERSON, L ;
PURVES, MJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1977, 272 (01) :137-166
[10]   THE REGULATION OF INTRACELLULAR PH BY IDENTIFIED GLIAL-CELLS AND NEURONS IN THE CENTRAL-NERVOUS-SYSTEM OF THE LEECH [J].
DEITMER, JW ;
SCHLUE, WR .
JOURNAL OF PHYSIOLOGY-LONDON, 1987, 388 :261-283