NA+-CA2+ EXCHANGER MEDIATES CA2+ INFLUX DURING ANOXIA IN MAMMALIAN CENTRAL-NERVOUS-SYSTEM WHITE MATTER

被引:182
作者
STYS, PK [1 ]
WAXMAN, SG [1 ]
RANSOM, BR [1 ]
机构
[1] VET ADM MED CTR,NEUROSCI RES CTR 127A,W HAVEN,CT 06516
关键词
D O I
10.1002/ana.410300309
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
White matter of the mammalian central nervous system suffers irreversible injury after prolonged anoxia, which can result in severe neurological impairment. This type of injury is critically dependent on Ca2+ influx into cells. We present evidence that the Na+,Ca2+ exchanger mediates the majority of the damaging Ca2+ influx into cells during anoxia in white matter. Anoxic injury was studied in the isolated rat optic nerve, and functional recovery was monitored using the compound action potential. Blockers of voltage-gated Na+ channels (tetrodotoxin and saxitoxin) significantly improved recovery, as did perfusion with zero-Na+ solution; both maneuvers would prevent intracellular {Na+} from rising and thus prevent Ca2+ influx by inhibiting reverse operation of the Na+,Ca2+ exchanger. Direct pharmacological blockade of the Na+,Ca2+ exchanger during anoxia with bepridil or benzamil also significantly improved recovery. These findings suggest that reverse operation of the Na+,Ca2+ exchanger during anoxia is a critical mechanism of Ca2+ influx and subsequent white matter injury.
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页码:375 / 380
页数:6
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共 39 条
[1]  
ALLEN TJA, 1989, SODIUM CALCIUM EXCHA
[2]   INFLUENCE OF CALCIUM ON SODIUM EFFLUX IN SQUID AXONS [J].
BAKER, PF ;
BLAUSTEIN, MP ;
HODGKIN, AL ;
STEINHARDT, RA .
JOURNAL OF PHYSIOLOGY-LONDON, 1969, 200 (02) :431-+
[3]   CALCIUM ACCUMULATION BY GLUTAMATE RECEPTOR ACTIVATION IS INVOLVED IN HIPPOCAMPAL CELL-DAMAGE AFTER ISCHEMIA [J].
BENVENISTE, H ;
JORGENSEN, MB ;
DIEMER, NH ;
HANSEN, AJ .
ACTA NEUROLOGICA SCANDINAVICA, 1988, 78 (06) :529-536
[4]   INACTIVATION OF SODIUM CHANNEL .1. SODIUM CURRENT EXPERIMENTS [J].
BEZANILLA, F ;
ARMSTRONG, CM .
JOURNAL OF GENERAL PHYSIOLOGY, 1977, 70 (05) :549-566
[5]   EFFECT OF CYANIDE ON EFFLUX OF CALCIUM FROM SQUID AXONS [J].
BLAUSTEI.MP ;
HODGKIN, AL .
JOURNAL OF PHYSIOLOGY-LONDON, 1969, 200 (02) :497-&
[6]  
Buchthal F., 1966, BRAIN RES, V3, pv
[7]   EVIDENCE FOR 2 TYPES OF SODIUM CONDUCTANCE IN AXONS PERFUSED WITH SODIUM FLUORIDE SOLUTION [J].
CHANDLER, WK ;
MEVES, H .
JOURNAL OF PHYSIOLOGY-LONDON, 1970, 211 (03) :653-&
[8]   GLUTAMATE NEUROTOXICITY IN CORTICAL CELL-CULTURE IS CALCIUM DEPENDENT [J].
CHOI, DW .
NEUROSCIENCE LETTERS, 1985, 58 (03) :293-297
[9]   NERVE-FIBER CONDUCTION-VELOCITY DISTRIBUTIONS .1. ESTIMATION BASED ON THE SINGLE-FIBER AND COMPOUND ACTION POTENTIALS [J].
CUMMINS, KL ;
PERKEL, DH ;
DORFMAN, LJ .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1979, 46 (06) :634-646
[10]   CHARACTERIZATION OF THE REVERSE NA/CA EXCHANGE IN SQUID AXONS AND ITS MODULATION BY CAI AND ATP - CAI-DEPENDENT NAI/CAO AND NAI/NAO EXCHANGE MODES [J].
DIPOLO, R ;
BEAUGE, L .
JOURNAL OF GENERAL PHYSIOLOGY, 1987, 90 (04) :505-525