Persistent sodium and calcium currents cause plateau potentials in motoneurons of chronic spinal rats

被引:252
作者
Li, YR [1 ]
Bennett, DJ [1 ]
机构
[1] Univ Alberta, Ctr Neurosci, Heritage Med Res Ctr 513, Edmonton, AB T6G 2S2, Canada
关键词
D O I
10.1152/jn.00236.2003
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
After chronic spinal cord injury motoneurons exhibit large plateau potentials (sustained depolarizations triggered by brief inputs) that play a primary role in the development of muscle spasms and spasticity (Bennett et al. 2001a,b). The present study examined the voltage-gated persistent inward currents (PICs) underlying these plateaus. Adult rats were spinalized at the S-2 sacral spinal level and after 2 mo, when spasticity developed, intracellular recordings were made from motoneurons below the injury. For recording, the whole sacrocaudal spinal cord was removed and maintained in vitro in normal artificial cerebral spinal fluid (nACSF), without application of neuromodulators. During a slow triangular voltage-clamp command (ramp) a PIC was activated with a threshold of -54.2 +/- 4.8 mV (similar to plateau threshold), with a peak current of 2.88 +/- 0.95 nA and produced a pronounced negative-slope region in the V-I relation. This PIC was in part mediated by Cav1.3 L-type calcium channels because it was low threshold and significantly reduced by 10 to 20 muM nimodipine or 400 muM Cd2+. The PIC that remained during a calcium channel blockade (in Cd2+) was completely and rapidly blocked by tetrodotoxin (TTX; 0.5 to 2 muM), and thus was a TTX-sensitive persistent sodium current. This persistent sodium current was activated rapidly about 7 mV below the spike threshold ( spike threshold -46.1 +/- 4.5 mV), contributed approximately 1/2 of the initial peak of the total PIC, inactivated partly to contribute only approximately 1/3 of the sustained PIC (at 5 to 10 s), and deactivated rapidly with hyperpolarization (< 50 ms). When TTX was added to the bath first, the nimodipine-sensitive persistent calcium current (L-type) was seen in isolation; it was slowly activated (> 250 ms), had a low but variable threshold (either slightly above or below the spike threshold), contributed the other approximately 1/2 of the initial peak of the total PIC (before TTX), did not usually inactivate with time (contributed approximately two-thirds of the sustained PIC), and deactivated slowly with hyperpolarization to rest (in > 300 ms). In summary, low-threshold persistent calcium (Cav1.3) and sodium currents spontaneously develop in motoneurons of chronic spinal rats and these enable large, rapidly activated plateaus that ultimately lead to spasticity.
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页码:857 / 869
页数:13
相关论文
共 76 条
[61]   Burst-generating neurones in the dorsal horn in an in vitro preparation of the turtle spinal cord [J].
Russo, RE ;
Hounsgaard, J .
JOURNAL OF PHYSIOLOGY-LONDON, 1996, 493 (01) :55-66
[62]   Intrinsic response properties of bursting neurons in the nucleus principalis trigemini of the gerbil [J].
Sandler, VM ;
Puil, E ;
Schwarz, DWF .
NEUROSCIENCE, 1998, 83 (03) :891-904
[63]   FACTORS INFLUENCING MOTO-NEURON RHYTHMIC FIRING - RESULTS FROM A VOLTAGE-CLAMP STUDY [J].
SCHWINDT, PC ;
CRILL, WE .
JOURNAL OF NEUROPHYSIOLOGY, 1982, 48 (04) :875-890
[64]   AMPLIFICATION OF SYNAPTIC CURRENT BY PERSISTENT SODIUM CONDUCTANCE IN APICAL DENDRITE OF NEOCORTICAL NEURONS [J].
SCHWINDT, PC ;
CRILL, WE .
JOURNAL OF NEUROPHYSIOLOGY, 1995, 74 (05) :2220-2224
[65]   Neurotransmission by neurons that use serotonin, noradrenaline, glutamate, glycine, and gamma-aminobutyric acid in the normal and injured spinal cord [J].
Shapiro, S .
NEUROSURGERY, 1997, 40 (01) :168-176
[66]  
SHAPIRO S, 1997, NEUROSURGERY, V40, P177
[67]   NEGATIVE SLOPE CONDUCTANCE DUE TO A PERSISTENT SUBTHRESHOLD SODIUM CURRENT IN CAT NEOCORTICAL NEURONS INVITRO [J].
STAFSTROM, CE ;
SCHWINDT, PC ;
CRILL, WE .
BRAIN RESEARCH, 1982, 236 (01) :221-226
[68]   PROPERTIES OF PERSISTENT SODIUM CONDUCTANCE AND CALCIUM CONDUCTANCE OF LAYER-V NEURONS FROM CAT SENSORIMOTOR CORTEX INVITRO [J].
STAFSTROM, CE ;
SCHWINDT, PC ;
CHUBB, MC ;
CRILL, WE .
JOURNAL OF NEUROPHYSIOLOGY, 1985, 53 (01) :153-170
[69]   Transmitter regulation of plateau properties in turtle motoneurons [J].
Svirskis, G ;
Hounsgaard, J .
JOURNAL OF NEUROPHYSIOLOGY, 1998, 79 (01) :45-50
[70]   PLASTICITY IN SPINAL OPIOID CONTROL OF LOWER URINARY-TRACT FUNCTION IN PARAPLEGIC CATS [J].
THOR, KB ;
ROPPOLO, JR ;
KAWATANI, M ;
ERDMAN, S ;
DEGROAT, WC .
NEUROREPORT, 1994, 5 (13) :1673-1678