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Influence of the Central Benzodiazepinergic System on Peripheral Cardiovascular Regulation
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  • Influence of the Central Benzodiazepinergic System on Peripheral Cardiovascular Regulation
저자명
Jeong-TaeKoh,Jeong-MinJu,Dong-HoShin,Han-HoCho,Bong-KyuChoi,Jae-HaKim
간행물명
The Korean Journal of Physiology & PharmacologyKCI,SCI,SCOPUS
권/호정보
1998년|2권 3호(통권9호)|pp.287-295 (9 pages)
발행정보
대한생리학회-대한약리학회|한국
파일정보
정기간행물|ENG|
PDF텍스트(0.77MB)
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영문초록

Diazepam is known to have cardiovascular depressive effects through a combined action on benzodiazepinergic receptor and the GABA receptor-chloride ion channel complex. Moreover, it is known that barbiturates also have some cardiovascular regulatory effects mediated by the central GABAergic system. Therefore, this study was undertaken to delineate the regulatory actions and interactions of these systems by measuring the responses of the cardiovascular system and renal nerve activity to muscimol, diazepam and pentobarbital, administered intracerebroventricularly in rabbits. When muscimol (0.03∼0.3 ㄍg/kg), diazepam (10∼100 ㄍg/kg) and pentobarbital (1∼10 ㄍg/kg) were injected into the lateral ventricle of the rabbit brain, there were similar dose-dependent decreases in blood pressure (BP) and renal nerve activity (RNA). The relative potency of the three drugs in decreasing BP and RNA was muscimol > pentobarbital > diazepam. Muscimol and pentobarbital also decreased the heart rate in a dose-dependent manner; however, diazepam produced a trivial, dose-independent decrease in heart rate. Diazepam (30 ㄍg/kg) augmented the effect of muscimol (0.1 ㄍg/kg) in decreasing blood pressure and renal nerve activity, but pentobarbital (3 ㄍg/kg) did not. Bicuculline (0.5 ㄍg/kg), a GABAergic receptor blocker, significantly attenuated the effect of muscimol in decreasing BP and RNA, either alone or with diazepam, and that of pentobarbital in decreasing BP and RNA, either alone or with muscimol. We inferred that the central benzodiazepinergic and barbiturate systems help regulate peripheral cardiovascular function by modulating the GABAergic system, which adjusts the output of the vasomotor center and hence controls peripheral sympathetic tone. Benzodiazepines more readily modulate the GABAergic system than barbiturates.

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