The role of endothelin-1 in pressure autoregulation of cerebral blood flow in rats

被引:0
作者
L. Mascia
I. R. Piper
P. J. D. Andrews
M. J. Souter
D. J. Webb
机构
[1] Istituto di Anestesiologia e Rianimazione,
[2] Ospedale Policlinico,undefined
[3] Università di Bari,undefined
[4] Piazza G Cesare 11,undefined
[5] I-70 122 Bari,undefined
[6] Italia e-mail: lmascia@teseo.it Tel.: + 39-80-5478794 Fax: + 39-80-5 47 87 94,undefined
[7] Department of Clinical Physics,undefined
[8] Institute of Neurological Sciences,undefined
[9] Glasgow,undefined
[10] UK,undefined
[11] Department of Anaesthetics,undefined
[12] University of Edinburgh,undefined
[13] Western General Hospital,undefined
[14] Edinburgh,undefined
[15] EH4 2XU,undefined
[16] Scotland,undefined
[17] Department of Medicine,undefined
[18] University of Edinburgh,undefined
[19] Western General Hospital,undefined
[20] Edinburgh,undefined
[21] EH4 2XU,undefined
[22] Scotland,undefined
来源
Intensive Care Medicine | 1999年 / 25卷
关键词
Key words Cerebral perfusion pressure; Intracranial pressure; Mean arterial pressure; Endothelium; Pressure autoregulation; Cerebral blood flow;
D O I
暂无
中图分类号
学科分类号
摘要
Objective: To investigate the role of the endothelin system in pressure autoregulation of cerebral blood flow (CBF) in rats.¶Design: We tested pressure autoregulation by increasing cerebral perfusion pressure (CPP; mean arterial pressure–intracranial pressure) with norepinephrine (0.08 μg · kg−1· min−1 for 30 min) twice in ten anesthetized normocapnic rats. The first test was performed without (control test) and the second test after administration of the combined endothelin ETA/B receptor antagonist, bosentan, i. v. (30 mg/kg; drug test). CBF was measured by the hydrogen clearance technique.¶Results: During the control test, norepinephrine infusion increased CPP by 21 ± 2 (23 ± 2 %) mmHg (mean ± SEM; p < 0.001) and CBF by 3.6 ± 3.1 (6 ± 8 %) ml/100 g/min (p = 0.5, Fig. 1); during the drug test, norepinephrine infusion increased CPP by 18 ± 1 (20 ± 2 %) mmHg (p < 0.001) and CBF by 15.8 ± 4.1 (46 ± 13 %) ml/100 g/min (p = 0.004). Mean arterial pressure was not affected by bosentan infusion (p = 0.2). PaC02 levels were stable during the tests (40.2 ± 1.4 mmHg).¶Conclusions: The endothelin system is involved in cerebral pressure autoregulation in a rodent model in vivo. The role of this system under pathophysiologic conditions such as subarachnoid hemorrhage, where basal vascular tone and its regulation may be altered, remains to be defined.
引用
收藏
页码:1282 / 1286
页数:4
相关论文
共 50 条
[41]   Visually evoked blood flow responses and interaction with dynamic cerebral autoregulation: Correction for blood pressure variation [J].
Gommer, Erik D. ;
Bogaarts, Guy ;
Martens, Esther G. H. J. ;
Mess, Werner H. ;
Reulen, Jos P. H. .
MEDICAL ENGINEERING & PHYSICS, 2014, 36 (05) :613-619
[42]   The upper limit of cerebral blood flow autoregulation in acute intracranial hypertension [J].
Hauerberg, J ;
Ma, XD ;
Willumsen, L ;
Pedersen, DB ;
Juhler, M .
JOURNAL OF NEUROSURGICAL ANESTHESIOLOGY, 1998, 10 (02) :106-112
[43]   Intracranial pressure and cerebral blood flow [J].
Partington, Tomas ;
Farmery, Andrew .
ANAESTHESIA AND INTENSIVE CARE MEDICINE, 2014, 15 (04) :189-194
[44]   Cerebral blood flow and intracranial pressure [J].
Shardlow, Emily ;
Jackson, Alan .
ANAESTHESIA AND INTENSIVE CARE MEDICINE, 2008, 9 (05) :222-225
[45]   MODULATION OF VASCULAR TONE BY ENDOTHELIN-1 - ROLE OF PRELOAD, ENDOTHELIAL INTEGRITY AND CONCENTRATION OF ENDOTHELIN-1 [J].
MEHTA, JL ;
LAWSON, DL ;
YANG, BC ;
MEHTA, P ;
NICHOLS, WW .
BRITISH JOURNAL OF PHARMACOLOGY, 1992, 106 (01) :127-132
[46]   Cerebral blood flow and intracranial pressure [J].
Shardlow, Emily ;
Jackson, Alan .
ANAESTHESIA AND INTENSIVE CARE MEDICINE, 2011, 12 (05) :220-223
[47]   The effect of superoxide anion on autoregulation of cerebral blood flow [J].
Zagorac, D ;
Yamaura, K ;
Zhang, C ;
Roman, RJ ;
Harder, DR .
STROKE, 2005, 36 (12) :2589-2594
[48]   Rheoencephalogram reflects cerebral blood flow autoregulation in pigs [J].
Bodo, M. ;
Pearce, F. ;
Van Albert, S. ;
Armonda, R. .
13TH INTERNATIONAL CONFERENCE ON ELECTRICAL BIOIMPEDANCE AND THE 8TH CONFERENCE ON ELECTRICAL IMPEDANCE TOMOGRAPHY 2007, 2007, 17 :695-+
[49]   Cerebral blood flow autoregulation in ischemic heart failure [J].
Caldas, J. R. ;
Panerai, R. B. ;
Haunton, V. J. ;
Almeida, J. P. ;
Ferreira, G. S. R. ;
Camara, L. ;
Nogueira, R. C. ;
Bor-Seng-Shu, E. ;
Oliveira, M. L. ;
Groehs, R. R. V. ;
Ferreira-Santos, L. ;
Teixeira, M. J. ;
Galas, F. R. B. G. ;
Robinson, T. G. ;
Jatene, F. B. ;
Hajjar, L. A. .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2017, 312 (01) :R108-R113
[50]   Effects of intraoperative hyperoxia on cerebral blood flow and dynamic cerebral autoregulation [J].
van den Dool, Rokus E. C. ;
Batelaan, Lariza ;
Veelo, Denise P. ;
Schenk, Jimmy ;
Hollmann, Markus W. ;
Vlaar, Alexander J. P. ;
Weiland, Nicolaas H. Sperna ;
Immink, Rogier V. .
CANADIAN JOURNAL OF ANESTHESIA-JOURNAL CANADIEN D ANESTHESIE, 2025, 72 (03) :511-513