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R W Keller

Publications and source records attributed to R W Keller.

16 recordsLinked to original sources

Interactions of ibogaine and D-amphetamine: in vivo microdialysis and motor behavior in rats.

Ibogaine, an indolalkylamine, has been proposed for use in treating stimulant addiction. In the present study we sought to determine if ibogaine had any effects on the neurochemical and motor changes induced by D-amphetamine that would substantiate the anti-addictive claim. Ibogaine (40 mg/kg, i.p.) injected 19 h prior to a D-amphetamine challenge (1.25 mg/kg, i.p.) potentiated the expected rise in extracellular dopamine levels in the striatum and in the nucleus accumbens, as measured by microdialysis in freely moving rats. Using photocell activity cages, the same ibogaine pretreatment enhanced the stimulatory motor effects induced by a wide range of D-amphetamine doses (0.625, 1.25, 2.5 or 5 mg/kg, i.p.). These findings suggest that ibogaine might increase the reinforcing efficacy of D-amphetamine. However, since high doses of D-amphetamine can be aversive, the potentiation of D-amphetamine's effects by ibogaine might also lead to a decrease in the reinforcing efficacy of D-amphetamine.

Animals

Neurochemical predisposition to self-administer morphine in rats.

Using in vivo microdialysis, this study attempted to determine whether a neurochemical predisposition to self-administer morphine could be identified. Extracellular levels of dopamine and its metabolites were measured bilaterally in the mesocorticolimbic and nigrostriatal systems of naive rats that were subsequently trained to self-administer morphine intravenously. There were several significant relationships between dopamine metabolite 3,4-dihydroxyphenylacetic acid (DOPAC) and homovanillic acid (HVA) levels and rates of morphine self-administration during both acquisition and asymptotic phases of testing. DOPAC and HVA levels in the striatum were inversely correlated with self-administration rates during the asymptotic phase whereas hemispheric asymmetries in striatal metabolite levels were inversely correlated with self-administration during the acquisition phase. DOPAC and HVA levels in in the right but not in the left side of the medial prefrontal cortex were positively correlated with self-administration rates during the acquisition phase; right/left asymmetries in cortical metabolite levels were also correlated with acquisition rates. There were no significant relationships between neurochemical indices and rates of bar-pressing for water. These results suggest that the normal variability in drug seeking behavior is at least in part attributable to individual differences in the organization and activity of brain dopamine systems. Furthermore, different mechanisms appear to be responsible for the initiation and maintenance of morphine intake: DA release in the nucleus accumbens appears to be a critical component of both mechanisms; DA release in the striatum appears to modulate maintenance and, in relationship to striatal lateralization, modulate initiation; DA release in the right but not in the left medial prefrontal cortex appears to be an important predictor of initiation.

3,4-Dihydroxyphenylacetic Acid

Acute and prolonged effects of ibogaine on brain dopamine metabolism and morphine-induced locomotor activity in rats.

Ibogaine, an indolalkylamine, proposed for use in treating opiate and stimulant addiction, has been shown to modulate the dopaminergic system acutely and one day later. In the present study we sought to systematically determine the effects of ibogaine on the levels of dopamine (DA) and the dopamine metabolites 3,4 dihydroxyphenylacetic acid (DOPAC) and homovanillic acid (HVA) in tissue at several time points, between 1 h and 1 month post-injection. One hour after ibogaine-administration (40 mg/kg i.p.) a 50% decrease in DA along with a 37-100% increase in HVA were observed in all 3 brain regions studied: striatum, nucleus accumbens and prefrontal cortex. Nineteen hours after ibogaine-administration a decrease in DOPAC was seen in the nucleus accumbens and in the striatum. A week after administration of ibogaine striatal DOPAC levels were still reduced. A month after ibogaine injection there were no significant neurochemical changes in any region. We also investigated the effects of ibogaine pretreatment on morphine-induced locomotor activity, which is thought to depend on DA release. Using photocell activity cages we found that ibogaine pretreatment decreased the stimulatory motor effects induced by a wide range of morphine doses (0.5-20 mg/kg, i.p.) administered 19 h later; a similar effect was observed when morphine (5 mg/kg) was administered a week after ibogaine pretreatment. No significant changes in morphine-induced locomotion were seen a month after ibogaine pretreatment. The present findings indicate that ibogaine produces both acute and delayed effects on the tissue content of DA and its metabolites, and these changes coincide with a sustained depression of morphine-induced locomotor activity.

Animals

Within-subject sensitization of striatal dopamine release after a single injection of cocaine: an in vivo microdialysis study.

Repeated microdialysis measurements, conducted 1 week apart at the same tissue site, were used to investigate the changes in basal and cocaine-stimulated extracellular dopamine (DA) levels after a single prior exposure to either saline or cocaine. Dialysis probes were placed into rats previously implanted with guide cannulas and basal levels of dopamine (DA), and its metabolites (DOPAC and HVA) were estimated in 20-min fractions of the dialysate. Basal levels in the extracellular fluid (ECF), estimated from pre-implantation calibration of the probes, were 7.9 +/- 0.7 nM DA, 4.9 +/- 0.8 microM DOPAC, and 3.6 +/- 0.6 microM HVA. After a stable baseline was obtained saline (1 ml/kg, i.p.) or cocaine (20 mg/kg, i.p.) was injected. Saline produced no significant changes in any of the neurochemical markers. A cocaine injection produced a sixfold increase in DA, while DOPAC and HVA were unchanged. One week later the same procedure was repeated except this time both groups received cocaine. In rats that had received cocaine 1 week earlier, basal DA levels in the ECF were doubled, whereas they were unchanged in rats that received saline a week earlier. Furthermore, the dopamine release in response to acute cocaine during the second week was elevated in animals which had been previously exposed to cocaine. Rotation was also measured during both weeks and, while a tendency toward behavioral sensitization was observed, it did not reach significance.(ABSTRACT TRUNCATED AT 250 WORDS)

3,4-Dihydroxyphenylacetic Acid

Electrodeposition procedure of E. coli RNA polymerase onto gold and deposition of E. coli RNA polymerase onto mica for observation with scanning force microscopy.

Molecules of the transcriptional enzyme E. coli RNA polymerase (RNAP) have been deposited using three different deposition methods: (1) passive adsorption onto gold, (2) electrochemical adsorption onto gold and (3) adsorption onto mica. In all cases SFM imaging was straightforward and reliable, and surface coverage by the protein varied with deposition conditions as expected. To determine the nature of the electrochemical treatment on the gold substrate, cyclic voltammetry was performed with various chemical solutions. Finally, a comparison is made between the SFM images of RNAP obtained with these methods and STM images obtained earlier. Both STM and SFM show strikingly similar results; however, heights and widths of individual molecules differ.

Adsorption

Interactions between ibogaine, a potential anti-addictive agent, and morphine: an in vivo microdialysis study.

Ibogaine, an indolalkylamine, has been claimed to be effective in abolishing drug craving in heroin and cocaine addicts. The present study used in vivo microdialysis to determine the effects of ibogaine on extracellular levels of dopamine (DA) and its metabolites and the effects of ibogaine pretreatment on morphine stimulation of brain DA systems. Acutely, ibogaine (40 mg/kg i.p.) decreased extracellular DA levels in the striatum, increased them in the prefrontal cortex and had no significant effects in the nucleus accumbens. Nineteen hours after ibogaine injection. DA levels were still decreased in the striatum and the metabolite levels were lower in all three regions. When injected 19 h prior to a morphine challenge (5 mg/kg i.p.), ibogaine (40 mg/kg, i.p.) prevented the rise in DA levels in all three regions normally observed after a morphine injection. A high dose of morphine (30 mg/kg i.p.), administered alone, produced no increase in extracellular DA levels; it is therefore unclear whether ibogaine antagonized or potentiated the effects of the lower dose of morphine. Regardless of the nature of this interaction, it appears that ibogaine affects brain DA systems for a period of time that exceeds its elimination from the body and, during this time, alters the responses of these systems to morphine.

3,4-Dihydroxyphenylacetic Acid

Side and region dependent changes in dopamine activation with various durations of restraint stress.

Exposure to various mild stressors has been shown to result in the activation of dopamine containing neuronal systems projecting to the medial prefrontal cortex (PFC), to a lesser extent the nucleus accumbens septi/olfactory tubercle (NAS) and, in a few studies, the striatum. It has also been shown that dopamine (DA) systems on different sides of the PFC are successively activated as stressors are prolonged. We have therefore examined the effects of variation in the duration of a restraint stressor (15, 30 and 60 min) on region and side dependent alterations in DA utilization in the PFC, NAS and striatum. Increases in the concentrations of the DA metabolites 3,4-dihydroxyphenylacetic acid (DOPAC) and/or homovanillic acid (HVA) or in their ratios with DA were seen in all regions examined with the largest effects occurring in the PFC and lesser effects in the NAS and striatum. In each region, the magnitude of these effects varied with time of restraint exposure. In the PFC, lateralized alterations in HVA and DA were seen over time with effects progressing from a left greater than right involvement at 15 min to a right greater than left involvement at 60 min. These results are discussed with reference to side and region dependent effects on brain DA systems as stressors are prolonged and the implications they may have for lateralized regional brain activity associated with stressor precipitated psychiatric disease.

3,4-Dihydroxyphenylacetic Acid

Similar effects of D-amphetamine and cocaine on extracellular dopamine levels in medial prefrontal cortex of rats.

The effects of behaviorally equivalent doses of D-amphetamine and cocaine on extracellular dopamine (DA) levels in the left and right medial prefrontal cortex (PFC) were investigated using microdialysis in anesthetized rats. The two drugs increased extracellular DA levels to a similar extent and, in each case, there was a tendency for the effects to be greater in the left than in the right side of the brain. For both drugs, there was a strong negative correlation between basal levels and the magnitude of the drug response; this relationship, while important to consider when comparing one drug to another, could not account for the left-right differences in drug effects. Contrary to some previous reports, the present data indicate that D-amphetamine and cocaine do not differ substantially with regard to their effects on dopamine neurotransmission in the PFC.

3,4-Dihydroxyphenylacetic Acid

Dopamine efflux from striatal slices after intracerebral 6-hydroxydopamine: evidence for compensatory hyperactivity of residual terminals.

In this study, we have examined the spontaneous efflux and stimulation-induced overflow of endogenous dopamine (DA) and 3,4-dihydroxyphenylacetic acid (DOPAC) from striatal slices prepared from adult rats. Partial destruction of striatal DA terminals with 6-hydroxydopamine reduced the electrically evoked overflow of DA and DOPAC, but by less than the DA content of the tissue slices. This resulted in an increase in the fractional overflow of DA and DOPAC, a measure of overflow from residual dopaminergic terminals. The increase in fractional DA overflow was related to the lesion size, reaching 7-fold with DA depletions of greater than 90%. Inhibition of DA re-uptake with nomifensine (10 microM) increased DA overflow and reduced DOPAC overflow by an equivalent amount, indicating that a portion of the DA released by electrical stimulation is recaptured and metabolized before appearing as DOPAC in the superfusate. However, 6-hydroxydopamine lesions further elevated fractional DA overflow above control even in the presence of nomifensine, suggesting that slices prepared from lesioned animals exhibit an increase in DA release from residual dopaminergic terminals. DA overflow was enhanced by the DA receptor antagonist sulpiride (1 microM) in control tissue but not in slices prepared from lesioned animals, suggesting that increased efflux per terminal was accompanied by reduced autoinhibition of release. Over a range of firing frequencies typical of nigrostriatal neurons in vivo (2-8 Hz), fractional DA overflow per pulse from lesioned slices was 3-fold higher than control overflow; however, fractional overflow per pulse was reduced from lesioned but not control slices when slices were exposed to a higher frequency (12 Hz). Thus, the lesion appeared to have increased DA release at moderate frequencies, but had reduced the effective range of frequencies over which the DA terminals could operate. Finally, 3-iodotyrosine (2 mM), an inhibitor of tyrosine hydroxylase, reduced DA overflow from intact slices, but completely abolished overflow from lesioned slices, suggesting that 6-hydroxydopamine had increased the dependence of DA efflux on a sustained rate of DA synthesis. Taken together, these data suggest that after lesioning with 6-hydroxydopamine, DA released per pulse from residual terminals is increased relative to control, so long as the stimulation frequency is within the physiological range. This increase in release may serve a compensatory function, maintaining dopaminergic control over striatal function despite extensive loss of DA neurons.

3,4-Dihydroxyphenylacetic Acid

Behavioral activation in rats increases striatal dopamine metabolism measured by dialysis perfusion.

The dialysis perfusion method was used to study the effects of haloperidol, electrical brain stimulation, and behavioral activation on extracellular levels of dopamine metabolites in the rat striatum. Systemic administration of 0.2 mg/kg haloperidol increased extracellular levels of the metabolites homovanillic acid (HVA) and dihydroxyphenylacetic acid (DOPAC) by 2-3-fold. Electrical stimulation of the medial forebrain bundle also increased HVA levels in dialysis perfusates. Rats pressing a lever for food reward showed 10-40% increases in HVA and DOPAC levels that reached a maximum 30-120 min after the behavioral session. The magnitude of the increases in HVA levels were correlated with the number of lever press responses. Presentation of a single 45-mg food pellet every 30 s to food-deprived rats produced a variety of motor activities and also increased the concentration of extracellular HVA. The results of the behavioral experiments indicate that striatal dopamine neurons are activated during conditions that increase motor activity.

3,4-Dihydroxyphenylacetic Acid

Imaging of single uncoated DNA molecules by scanning tunneling microscopy.

Scanning tunneling microscope images of DNA molecules absorbed onto highly oriented pyrolytic graphite have been obtained. Three methods of deposition and sample preparation have been utilized. In the first method, a highly concentrated solution of DNA is sonicated, and a drop is deposited on freshly cleaved graphite. Under these conditions, the molecules tend to align in a parallel fashion, forming liquid-crystalline phases. In the second method, a solution of DNA is deposited directly on the graphite surface without sonication. In this case, ammonium acetate, a volatile salt, is used to decrease the amount of the residual salt crystals left after drying. In the third method, a solution containing lysed phage particles and DNA is adsorbed onto a graphite surface. The molecules are seen either isolated or in small bundles. The values of height, periodicity, and thickness observed and the handedness of the molecules are consistent with those expected for DNA. In all cases, the molecules were identified by their characteristic periodic structure and because, at higher magnification, no graphite-like structure was detectable on the surface of the molecules. Often the DNA molecules appear to adsorb in areas of the graphite that have many steps and defects. A mechanism that explains the magnitude of the tunneling currents measured in DNA is proposed. This mechanism, in turn, suggests a general method by which large insulating molecules can be rendered conductive.

DNA

Increased dopamine efflux from striatal slices during development and after nigrostriatal bundle damage.

Dopaminergic control over striatal targets appears to be retained in rats sustaining lesions of the nigrostriatal dopamine (DA) system as long as 5-10% of that projection remains. Similarly, during postnatal development, dopaminergic control over striatal neurons matures well before the innervation of striatum by the nigrostriatal bundle is attained. These observations suggest that enhanced efficacy of dopaminergic transmission may compensate for hypoinnervation of striatum after lesions or during development. To examine this hypothesis, striatal slices were superfused with Krebs bicarbonate buffer and effluent was collected and analyzed for endogenous DA. Electrical field stimulation (2 Hz) continuously delivered to slices prepared from intact adult rats increased DA efflux to 3-5 times the prestimulation rate within 10 min. Efflux then fell to approximately twice the basal rate over the next 20 min. DA efflux was also examined using slices prepared from adult animals given 6-hydroxydopamine 2-3 weeks earlier, and from 7-10-d-old rat pups. In each group, striatal DA levels were 10-40% of adult control values. Nevertheless, stimulated DA efflux from these slices attained the same rate as that observed with intact, adult slices. Thus, fractional DA efflux from these slices was several times higher than the control rate by the end of the stimulation period. This increased DA efflux appeared to be a consequence of both increased release and decreased reuptake of DA, as the fractional DA efflux from control striatal slices could not be increased to the rate seen in hypoinnervated slices using nomifensine (10 microM), an inhibitor of DA efflux.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Gamma glutamyl transpeptidase in colon cancer induced by 1,2-dimethylhydrazine.

The study of the gamma-glutamyl transpeptidase (GTase) in colon of adult rats showed that in the sequence: duodenum, jejunum, ileum, cecum and colon, the colon has the lowest activity. There are, on the other hand, relatively small differences between GTase activities in the ascending, transverse and descending portions of the large intestine. GTase activity in the colon of neonatal rat is several times higher than in the colon of adult rats. Colon adenocarcinoma induced by 1,2-dimethylhydrazine were found to have a much higher GTase activity than the homologous normal tissue. Because these tumors resemble human colonic adenocarcinomas, it is suggested that the assay of GTase levels of human colon mucosa might be of potential value in the diagnosis of neoplastic changes.

Adenocarcinoma

The effect of detergent treatment of the gastric mucosa on drug transport.

The effect of detergent treatment of the canine gastric mucosa on transport of drugs from blood to gastric juice was studied using a chamber technique, in vivo. Detergent treatment was found to increase antipyrine and aminopyrine transport. Facilitation of drug transport was associated with disruption of the gastric mucosal barrier and an increase of aminopyrine clearance.

Aminopyrine