CENTRAL AND PERIPHERAL CARDIORESPIRATORY EFFECTS OF SAXITOXIN (STX) IN URETHANE-ANESTHETIZED GUINEA-PIGS

被引:19
作者
CHANG, FCT
BENTON, BJ
LENZ, RA
CAPACIO, BR
机构
[1] Pathophysiology Division, U.S. Army Medical Research Institute of Chemical Defense, Aberdeen Proving Ground
关键词
D O I
10.1016/0041-0101(93)90119-4
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Effects of saxitoxin (STX; 10 mug/kg; i.p.) on cardio-respiratory activities were evaluated in urethane-anesthetized guinea-pigs. Concurrent recordings were made of electrocorticogram (ECoG), bulbar respiratory-related unit activities, diaphragmatic electromyogram (DEMG), electrocardiogram (Lead II ECG), blood pressure, heart rate, end-tidal CO2, arterial O2/CO2 tensions, and arterial pH. The average time to STX-induced respiratory failure was about 10 min. The most striking effect prior to apnea was a state of progressive bradypnea which emerged 5-7 min after the toxin administration. Other noteworthy responses included (i) a time-dependent decrease in ECoG amplitudes which typically began before the development of a bradypneic profile; (ii) an increasing degree of diaphragm neuromuscular blockade; (iii) a state of combined hypercapnia and uncompensated acidemia; (iv) a declining blood pressure; (v) an incrementally dysfunctional myocardial performance; and (vi) an increasingly degenerative central respiratory activity profile which ultimately culminated in a complete loss of central respiratory drive. The therapeutic effect of intratracheally administered oxygen was equivocal in that the cardio-respiratory activities, be they of central of peripheral nature, remained conspicuously dysfunctional and precarious despite 100% oxygen ventilation. What can be inferred from this study is two-fold. First, STX-induced ventilatory insufficiency can be attributed to a loss of functional integrity of both central and peripheral respiratory system components. That is, although diaphragm blockade contributes significantly to STX-induced respiratory failure, analyses of single respiratory unit activity data revealed that the central respiratory rhythmogenic mechanism also appeared to play a pivotal role in the development of a bradypneic profile which promotes, and directly causes, a complete loss of respiratory drive. Second, a state of unabating depression of central respiratory activities, which seemed to be refractory to the effect of O2, suggests STX has a direct and persistent action on medullary rhythmogenic mechanisms. In conclusion, these findings indicate that both central and peripheral cardio-respiratory components are critically involved in STX-induced apnea, dysfunctional cardiovascular performance, and lethality.
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页码:645 / 664
页数:20
相关论文
共 48 条
  • [11] RESPIRATORY AND CARDIOVASCULAR EFFECTS OF TETRODOTOXIN IN URETHANE-ANESTHETIZED GUINEA-PIGS
    CHANG, FCT
    BENTON, BJ
    SALYER, JL
    FOSTER, RE
    FRANZ, DR
    [J]. BRAIN RESEARCH, 1990, 528 (02) : 259 - 268
  • [12] CHANG FCT, 1989, BRAIN RES BULL, V22, P561
  • [13] CHANG FCT, 1988, BRAIN RES BULL, V21, P749
  • [14] CLEMEDSON C.-J., 1958, ACTA PATHOL ET MICROBIOL SCAND, V42, P137
  • [15] EFFECT OF HYPERCAPNIA ON BRAIN PERMEABILITY TO PROTEIN
    CUTLER, RWP
    BARLOW, CF
    [J]. ARCHIVES OF NEUROLOGY, 1966, 14 (01) : 54 - &
  • [16] NEUTRALIZATION OF SAXITOXIN BY ANTI-SAXITOXIN RABBIT SERUM
    DAVIO, SR
    [J]. TOXICON, 1985, 23 (04) : 669 - 675
  • [17] EFFECT OF HYPERCAPNIA ON A BLOOD-BRAIN-BARRIER MECHANISM IN FETAL AND NEWBORN SHEEP
    EVANS, CAN
    REYNOLDS, JM
    REYNOLDS, ML
    SAUNDERS, NR
    [J]. JOURNAL OF PHYSIOLOGY-LONDON, 1976, 255 (03): : 701 - 714
  • [18] Evans M H, 1972, Int Rev Neurobiol, V15, P83
  • [20] MECHANISM OF SAXITOXIN AND TETRODOTOXIN POISONING
    EVANS, MH
    [J]. BRITISH MEDICAL BULLETIN, 1969, 25 (03) : 263 - &