COMPARATIVE PET STUDIES OF THE KINETICS AND DISTRIBUTION OF COCAINE AND COCAETHYLENE IN BABOON BRAIN

被引:33
作者
FOWLER, JS [1 ]
VOLKOW, ND [1 ]
MACGREGOR, RR [1 ]
LOGAN, J [1 ]
DEWEY, SL [1 ]
GATLEY, SJ [1 ]
WOLF, AP [1 ]
机构
[1] BROOKHAVEN NATL LAB, DEPT MED, UPTON, NY 11973 USA
关键词
ALCOHOL; COCAINE; COCAETHYLENE; DEBENZOYLATION; BUTYRYLCHOLINESTERASE; PET;
D O I
10.1002/syn.890120307
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Recent studies have suggested that cocaethylene, an active metabolite of cocaine found in blood and postmortem brain of individuals self-administering cocaine and alcohol, may play a role in the increased toxicity seen when coadministering these 2 drugs. We have used positron emission tomography (PET) and carbon-11 (t1/2: 20.4 min) labeled cocaine and cocaethylene to compare the short-term kinetics of cocaine and cocaethylene in baboon brain. The regional uptake of [C-11]cocaine ([C-11]COC) and [C-11]cocaethylene ([C-11]CE), 5-8 mCi and 4-6 mug, in baboon brain (n = 7) were similar but clearance from whole brain (global, GL) and from striatum (SR), thalamus (TH), and cerebellum (CB) was slower for cocaethylene. Steady-state distribution volumes (DV) were not significantly different in the striatum but were greater for cocaethylene in the thalamus, cerebellum, and whole brain. Debenzoylation of cocaethylene proceeded at about one-third the rate of cocaine, as determined by in vitro incubation of labeled cocaethylene and labeled cocaine with baboon plasma and with purified horse butyryl-cholinesterase (EC 3.1.1.8). Even though the slower clearance of cocaethylene could lead to longer tissue exposures and potentially accentuated or different physiological effects relative to cocaine, the difference between the 2 drugs is not large. Thus it is more likely that the direct actions of cocaine and alcohol on some organs, rather than cocaethylene, account for this enhanced toxicity.
引用
收藏
页码:220 / 227
页数:8
相关论文
共 33 条
[1]  
AMBRE JJ, 1989, COCAINE MARIJUANA DE, P53
[2]   ONE EXPERIENCE WITH LOWER OR HIGHER INTENSITY STRESSORS, RESPECTIVELY ENHANCES OR DIMINISHES RESPONSIVENESS TO HALOPERIDOL WEEKS LATER - IMPLICATIONS FOR UNDERSTANDING DRUG VARIABILITY [J].
ANTELMAN, SM ;
CAGGIULA, AR ;
KOCAN, D ;
KNOPF, S ;
MEYER, D ;
EDWARDS, DJ ;
BARRY, H .
BRAIN RESEARCH, 1991, 566 (1-2) :276-283
[3]   A SINGLE EXPOSURE TO COCAINE OR IMMOBILIZATION STRESS PROVIDES EXTREMELY LONG-LASTING, SELECTIVE PROTECTION AGAINST SUDDEN CARDIAC DEATH FROM TETRACAINE [J].
ANTELMAN, SM ;
DEGIOVANNI, LA ;
KOCAN, D .
LIFE SCIENCES, 1989, 44 (03) :201-207
[4]  
BOYER CS, 1992, J PHARMACOL EXP THER, V260, P939
[5]   HUMAN LIVER COCAINE ESTERASES - ETHANOL-MEDIATED FORMATION OF ETHYLCOCAINE [J].
DEAN, RA ;
CHRISTIAN, CD ;
SAMPLE, RHB ;
BOSRON, WF .
FASEB JOURNAL, 1991, 5 (12) :2735-2739
[6]   THE RELEVANCE OF URINARY COCAETHYLENE FOLLOWING THE SIMULTANEOUS ADMINISTRATION OF ALCOHOL AND COCAINE [J].
DELATORRE, R ;
FARRE, M ;
ORTUNO, J ;
CAMI, J ;
SEGURA, J .
JOURNAL OF ANALYTICAL TOXICOLOGY, 1991, 15 (04) :223-223
[7]   MAPPING MUSCARINIC RECEPTORS IN HUMAN AND BABOON BRAIN USING [N-C-11-METHYL]-BENZTROPINE [J].
DEWEY, SL ;
MACGREGOR, RR ;
BRODIE, JD ;
BENDRIEM, B ;
KING, PT ;
VOLKOW, ND ;
SCHLYER, DJ ;
FOWLER, JS ;
WOLF, AP ;
GATLEY, SJ ;
HITZEMANN, R .
SYNAPSE, 1990, 5 (03) :213-223
[8]   MAPPING COCAINE BINDING-SITES IN HUMAN AND BABOON BRAIN INVIVO [J].
FOWLER, JS ;
VOLKOW, ND ;
WOLF, AP ;
DEWEY, SL ;
SCHLYER, DJ ;
MACGREGOR, RR ;
HITZEMANN, R ;
LOGAN, J ;
BENDRIEM, B ;
GATLEY, SJ ;
CHRISTMAN, D .
SYNAPSE, 1989, 4 (04) :371-377
[9]   ALCOHOL-INTOXICATION DOES NOT CHANGE [C-11] COCAINE PHARMACOKINETICS IN HUMAN BRAIN AND HEART [J].
FOWLER, JS ;
VOLKOW, ND ;
LOGAN, J ;
MACGREGOR, RR ;
WANG, GJ ;
WOLF, AP .
SYNAPSE, 1992, 12 (03) :228-235
[10]  
FOWLER JS, 1990, ANNU REP MED CHEM, V25, P261