PRESERVATION OF CEREBRAL BLOOD-FLOW RESPONSES TO HYPOXIA AND ARTERIAL-PRESSURE ALTERATIONS IN HYPERAMMONEMIC RATS

被引:14
作者
HIRATA, T [1 ]
KOEHLER, RC [1 ]
BRUSILOW, SW [1 ]
TRAYSTMAN, RJ [1 ]
机构
[1] JOHNS HOPKINS MED INST,DEPT ANESTHESIOL CRIT CARE MED & PEDIAT,BALTIMORE,MD 21287
关键词
AMMONIA; AUTOREGULATION; GLUTAMINE; HYPOXIA; RATS;
D O I
10.1038/jcbfm.1995.104
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Acute hyperammonemia causes cerebral edema, elevated intracranial pressure and loss of cerebral blood flow (CBF) responsivity to CO2. Inhibition of glutamine synthetase prevents these abnormalities. If the loss of CO2 responsivity is secondary to the mechanical effects of edema, one would anticipate loss of responsivity to other physiological stimuli, such as hypoxia and changes in mean arterial blood pressure (MABP). To test this possibility, pentobarbital-anesthetized rats were subjected to either hypoxic hypoxia (PaO2 approximate to 30 mm Hg), hemorrhagic hypotension (MABP approximate to 70 and 50 mm Hg), or phenylephrine-induced hypertension (MABP approximate to 125 and 145 mm Hg). CBF was measured with radiolabeled microsphere. Experimental groups received intravenous ammonium acetate (approximate to 50 mu mol min(-1) kg(-1)) for 6 h to increase plasma ammonia to 50-600 mu M. Control groups received sodium acetate plus HCl to prevent metabolic alkalosis. The increase in CBF during 10 min of hypoxia after 6 h of ammonium acetate infusion (84 +/- 19 to 259 +/- 52 ml min(-1) 100 g(-1)) was similar to that after sodium acetate infusion (105 +/- 20 to 265 +/- 76 mi min(-1) 100 g(-1)). Cortical glutamine concentration was elevated equivalently in hyperammonemic rats subjected to normoxia only or to 10 min of hypoxia. With severe hypotension, CBF was unchanged in both the ammonium (80 +/- 20 to 76 +/- 24 ml min(-1) 100 g(-1)) and the sodium (80 +/- 14 to 73 +/- 16 mi min(-1) 100 g(-1)) acetate groups, With moderate hypertension, CBF was unchanged. With the most severe hypertension, significant increases in CBF occurred in both groups, but there was no difference between groups. We conclude that hypoxic and autoregulatory responses are intact during acute hyperammonemia. The previously observed loss of CO2 responsivity is not the result of a generalized vasoparalysis to al physiological stimuli.
引用
收藏
页码:835 / 844
页数:10
相关论文
共 35 条
[11]   HYPERAMMONEMIA DEPRESSES GLUCOSE CONSUMPTION THROUGHOUT THE BRAIN [J].
JESSY, J ;
DEJOSEPH, MR ;
HAWKINS, RA .
BIOCHEMICAL JOURNAL, 1991, 277 :693-696
[12]  
Kindt G W, 1978, Adv Neurol, V20, P315
[13]  
KINDT GW, 1977, LANCET, V1, P201
[14]   CEREBRAL VESSELS AND GLIAL-CELLS IN LIVER-DISEASE - A MORPHOMETRIC AND ELECTRON-MICROSCOPIC INVESTIGATION [J].
LAURSEN, H .
ACTA NEUROLOGICA SCANDINAVICA, 1982, 65 (05) :381-412
[15]   REGULATION OF GAMMA-AMINOBUTYRIC-ACID SYNTHESIS IN THE BRAIN [J].
MARTIN, DL ;
RIMVALL, K .
JOURNAL OF NEUROCHEMISTRY, 1993, 60 (02) :395-407
[16]   AMMONIA AND BRAIN GLUTAMINE - INHIBITION OF GLUTAMINE DEGRADATION BY AMMONIA [J].
MATHESON, DF ;
VANDENBERG, CJ .
BIOCHEMICAL SOCIETY TRANSACTIONS, 1975, 3 (04) :525-528
[17]   EFFECT OF NITRIC-OXIDE SYNTHASE INHIBITION ON THE CEREBRAL VASCULAR-RESPONSE TO HYPERCAPNIA IN PRIMATES [J].
MCPHERSON, RW ;
KIRSCH, JR ;
GHALY, RF ;
TRAYSTMAN, RJ .
STROKE, 1995, 26 (04) :682-687
[18]   VOLUME REGULATION IN ASTROCYTES - A ROLE FOR TAURINE AS AN OSMOEFFECTOR [J].
MORALES, HP ;
SCHOUSBOE, A .
JOURNAL OF NEUROSCIENCE RESEARCH, 1988, 20 (04) :505-509
[19]   FINE-STRUCTURAL LOCALIZATION OF GLUTAMINE-SYNTHETASE IN ASTROCYTES OF RAT-BRAIN [J].
NORENBERG, MD ;
MARTINEZHERNANDEZ, A .
BRAIN RESEARCH, 1979, 161 (02) :303-310
[20]   NITRIC-OXIDE SYNTHESIS AND REGIONAL CEREBRAL BLOOD-FLOW RESPONSES TO HYPERCAPNIA AND HYPOXIA IN THE RAT [J].
PELLIGRINO, DA ;
KOENIG, HM ;
ALBRECHT, RF .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 1993, 13 (01) :80-87