Cocaine abuse is associated with an increased incidence of cerebrovascular accidents including stroke, yet the mechanism(s) by which these effects are produced is unknown. The objective of these studies will be to understand in a comprehensive manner how cocaine affects the cerebral circulation and microvascular function. Studies will be conducted in A) normal adult, B) brain-injured adult and C) neonatal animals. A) With respect to normal adult brain, our pilot data show that cocaine potentiates the cerebral blood flow response induced by systemic administration of norepinephrine. We have also found that the direct effect of cocaine on cerebral arterioles is to cause dilation, which would promote vascular injury during hypertension caused by cocaine. One hypothesis we will test, which is based on our previous studies, is that by direct effects and/or potentiation of exogenous sympathomimetic agents cocaine induces acute hypertension which results in damage to the cerebrovascular wall and subsequent activation of cyclooxygenase metabolism of arachiodonic acid. Further, we hypothesize that this cyclooxygenase activation results in the production of oxygen radicals which alter cerebrovascular reactivity, increase cerebrovascular permeability and cause brain edema. Intrinsic to these studies is that cyclooxygenase inhibitors and oxygen radical scavengers will decrease cerebrovascular injury caused by cocaine. B) With respect to studies in injured animals our preliminary results clearly show that in an experimental model of concussive brain injury the presence of cocaine causes a significantly greater post-traumatic hypotension. This hypotension will increase the likelihood of ischemic brain damage and a negative post-traumatic outcome. We will examine the course of this effect and its mechanism. With respect to occlusive vascular brain injury it is known that stroke may be precipitated by platelet thrombus formation. The literature shows that cocaine increases formation of the platelet pro-aggregatory thromboxane A2. Therefore we will determine whether cocaine promotes in vivo platelet aggregation in the cerebral microcirculation. C) It is known that cocaine enters the fetus and fetal hypertension injures the fetal brain microcirculation. Therefore the effect of cocaine administration to pregnant animals on neonatal cerebrovascular permeability and brain edema will be elucidated. Therapy with free radical scavengers, which we have recently shown to prevent or reverse hypertensive cerebrovascular injury, will also be tested. The achieve our aims we will utilize acute and chronically treated animals. Species to be examined include rabbits, mice and pregnant and non-pregnant rats. We will employ our current methodology, including in vivo microscopy, acute and chronic cranial window techniques, RIA and HPLC analysis of prostaglandin formation, laser-Doppler measurement of microvascular blood flow, radiolabeled proteins, an in vivo method for inducing platelet aggregation, cyclooxygenase inhibitors and oxygen radical scavengers. In summary, the proposed studies will utilize our current technology to increase our understanding of the direct and indirect effects of cocaine on the normal, injured and fetal cerebral microcirculation. Studies with inhibitors and radical scavengers may yield important information concerning potential therapeutic agents for preventing the cerebrovascular consequences of cocaine abuse.

Agency
National Institute of Health (NIH)
Institute
National Institute on Drug Abuse (NIDA)
Type
Specialized Center (P50)
Project #
5P50DA005274-07
Application #
3752979
Study Section
Project Start
Project End
Budget Start
Budget End
Support Year
7
Fiscal Year
1994
Total Cost
Indirect Cost
Name
Virginia Commonwealth University
Department
Type
DUNS #
City
Richmond
State
VA
Country
United States
Zip Code
23298
Bagdas, Deniz; Alkhlaif, Yasmin; Jackson, Asti et al. (2018) New insights on the effects of varenicline on nicotine reward, withdrawal and hyperalgesia in mice. Neuropharmacology 138:72-79
Jackson, Kia J; Muldoon, Pretal P; Walters, Carrie et al. (2016) Neuronal calcium/calmodulin-dependent protein kinase II mediates nicotine reward in the conditioned place preference test in mice. Behav Pharmacol 27:50-6
Nass, Sara R; Long, Jonathan Z; Schlosburg, Joel E et al. (2015) Endocannabinoid Catabolic Enzymes Play Differential Roles in Thermal Homeostasis in Response to Environmental or Immune Challenge. J Neuroimmune Pharmacol 10:364-70
Muldoon, P P; Chen, J; Harenza, J L et al. (2015) Inhibition of monoacylglycerol lipase reduces nicotine withdrawal. Br J Pharmacol 172:869-82
Poklis, Justin L; Devers, Kelly G; Arbefeville, Elise F et al. (2014) Postmortem detection of 25I-NBOMe [2-(4-iodo-2,5-dimethoxyphenyl)-N-[(2-methoxyphenyl)methyl]ethanamine] in fluids and tissues determined by high performance liquid chromatography with tandem mass spectrometry from a traumatic death. Forensic Sci Int 234:e14-20
Poklis, Justin L; Nanco, Carol R; Troendle, Michelle M et al. (2014) Determination of 4-bromo-2,5-dimethoxy-N-[(2-methoxyphenyl)methyl]-benzeneethanamine (25B-NBOMe) in serum and urine by high performance liquid chromatography with tandem mass spectrometry in a case of severe intoxication. Drug Test Anal 6:764-9
Ignatowska-Jankowska, B M; Ghosh, S; Crowe, M S et al. (2014) In vivo characterization of the highly selective monoacylglycerol lipase inhibitor KML29: antinociceptive activity without cannabimimetic side effects. Br J Pharmacol 171:1392-407
Bagdas, Deniz; Muldoon, Pretal P; Zhu, Andy Z X et al. (2014) Effects of methoxsalen, a CYP2A5/6 inhibitor, on nicotine dependence behaviors in mice. Neuropharmacology 85:67-72
Wolf, Carl E; Goldstein, Ashley; Poklis, Justin L et al. (2014) Evaluation of an enzyme immunoassay for the detection of methadone metabolite EDDP [2-ethylidene-1,5-dimethyl-3,3-diphenylpyrrolidine] in urine. J Clin Lab Anal 28:136-40
Burston, James J; Sagar, Devi Rani; Shao, Pin et al. (2013) Cannabinoid CB2 receptors regulate central sensitization and pain responses associated with osteoarthritis of the knee joint. PLoS One 8:e80440

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