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D L Davies

Publications and source records attributed to D L Davies.

At least 19 recordsLinked to original sources

Differential effects of propofol and ethanol on P2X4 receptors expressed in Xenopus oocytes.

The current study investigated the effects of propofol on P2X4 receptors expressed in Xenopus oocytes using two-electrode voltage clamp. We also tested the effects of 100 mM ethanol on the same oocytes used to test propofol. Propofol potentiated ATP-gated currents in a concentration dependent manner in P2X4 receptors. In agreement with our previous findings, ethanol inhibited P2X4 receptors. The opposite effects of propofol and ethanol on P2X4 receptor function suggest that these anesthetics act via different sites/mechanisms in P2X receptors as has been suggested for GABA(A) and glycine receptors.

Journal Article↗

Effects of posttraining ethanol on an appetitive task.

The present study examined the effects of posttraining ethanol administration upon retention of an appetitive task using a variety of retention behaviors associated with the task. Male C57BL/6J mice were individually trained to find a cheese pellet placed in the corner of an open field. Five behavioral measures were used including locomotor activity counts, rearings, grooming episodes, approaches to the cheese pellet, and latency to consume the cheese pellet. Immediately after training, mice were injected intraperitoneally with saline or 2.0 g/kg of ethanol and then returned to their home cage in which four "intruder" mice were added for 2 h after training. On subsequent testing days (1, 6, 14, and 51 days posttraining), mice were returned to the original training environment and the five behaviors were measured. Both saline- and ethanol-treated mice habituated to the initially novel test environment at similar rates as indicated by decreased exploratory behavior (locomotor activity and rearings). In contrast, a divergence in the latency to consume the cheese pellet was observed: Saline-treated mice behaved as though the cheese was rewarding (decreased latency to eat the pellet), while the ethanol group behaved as though the cheese was aversive (increased latency to eat the pellet). Taken with previous studies, these results demonstrate that posttraining ethanol can have strikingly different effects on retention depending on the task, the measure of retention used, and the underlying neural structures involved.

Animals↗

Pressure-sensitive and -insensitive coupling in gamma-aminobutyric acid(A) receptors.

RATIONALE: Previous behavioral and biochemical studies suggest that allosteric coupling processes initiated by benzodiazepines, barbiturates and neuroactive steroids can be sub-categorized on the basis of their sensitivities to antagonism by increased atmospheric pressure. However, biochemical evidence supporting this hypothesis was limited to single concentration studies in long sleep (LS) mice. OBJECTIVE: The present paper addresses these issues by extending biochemical investigation of pressure effects on allosteric modulators across a range of concentrations that allosterically enhance gamma-aminobutyric acid (GABA)A receptor function and alter behavior using two mouse genotypes. In addition, the effects of pressure on ligand binding were explored to further investigate the mechanism of pressure antagonism of allosteric modulation. METHODS: The effects of 12 times normal atmospheric pressure (ATA) of helium-oxygen gas (heliox) on allosteric modulation of GABA(A) receptor function and [3H]flunitrazepam binding was tested in LS and C57BL mouse brain membranes (microsacs) using chloride flux and high-affinity binding assays. RESULTS: In both genotypes, exposure to 12 ATA heliox antagonized the allosteric enhancement of GABA(A) receptor function by flunitrazepam (0.1-10 microM) and pentobarbital (0.1-50 microM) but did not affect allosteric modulation by 3alpha-hydroxy-5beta-pregnan-20-one (0.1-1 microM). Pressure did not affect benzodiazepine receptor affinity (Kd) or the number of benzodiazepine receptors (Bmax). CONCLUSIONS THE RESULTS: (1) confirm that there are differences in sensitivity to pressure antagonism of allosteric coupling among GABA(A) allosteric modulators; (2) demonstrate that these differences are not concentration or genotype dependent; (3) add evidence that pressure antagonizes allosteric modulation by uncoupling the receptor and (4) support the hypothesis that allosteric modulation of receptor function can be sub-categorized on the basis of sensitivity to pressure antagonism.

Animals↗

Ethanol enhances GABAA receptor function in short sleep and long sleep mouse brain membranes.

BACKGROUND: SS and LS mice have been used to explore the genetic and neurochemical bases for differences in sensitivity to ethanol. The present study investigated the effects of ethanol on GABAA receptor function in microsacs from these genotypes. The purpose was to test a key element of the hypothesis that differences between these lines in sensitivity to ethanol-induced enhancement of GABAA receptor function underlie their selected differences in sensitivity to ethanol-induced loss of righting reflex (LORR). METHODS: The effects of ethanol on GABA-activated 36Cl- uptake in brain membranes (microsacs) isolated from male SS and LS mice were tested using a chloride flux filtration assay. RESULTS: Ethanol significantly enhanced GABA-activated 36Cl- uptake in SS microsacs at concentrations of 100-300 mM. Ethanol did not significantly affect GABA-activated chloride uptake in this preparation at concentrations of 25 and 50 mM. Ethanol significantly enhanced GABA-activated 36Cl- uptake in LS microsacs at concentrations of 25-100 mM, but not at 200 mM. CONCLUSION: The present studies are the first to show a statistically significant effect of ethanol on GABA-activated chloride uptake in both SS and LS mice with a clear difference between the genotypes in threshold. The relative threshold differences between SS and LS microsacs in sensitivity to ethanol indicate that selection for resistance to ethanol-induced LORR in SS mice has shifted the ethanol-GABAA receptor concentration-response curve to the right. The findings add key evidence that supports a cause-effect relationship between sensitivity to ethanol-induced potentiation of GABAA receptor function and genetically determined sensitivity to ethanol's behavioral effects.

Animals↗

Direct evidence for a cause-effect link between ethanol potentiation of GABA(A) receptor function and intoxication from hyperbaric studies in C57, LS, and SS mice.

BACKGROUND: This article uses a direct ethanol antagonist, increased atmospheric pressure, to further test the causative link between ethanol potentiation of gamma-aminobutyric acid (GABA) type A receptor function and ethanol's behavioral effects. This was done by determining whether initial biochemical findings in long-sleep (LS) mice extended to other genotypes and whether the previously reported insensitivity of short-sleep (SS) mice to pressure antagonism of ethanol-induced loss of righting reflex extended to a nonselected ethanol-induced behavior. METHODS: The effects of 12 times normal atmospheric pressure of helium-oxygen gas (heliox) versus ethanol (25-200 mM) potentiation of GABA-activated Cl- uptake in brain membranes (microsacs) from C57, LS, and SS mice were tested by using a 36Cl- flux assay. The effects of pressure versus ethanol's (2 g/kg) anticonvulsant effect in SS mice were tested by using time to onset of isoniazid-induced myoclonic seizures. RESULTS: Exposure to 12 times normal atmospheric pressure heliox antagonized ethanol potentiation of GABA-activated Cl- uptake in all three genotypes across a range of ethanol concentrations that cause ethanol's behavioral and anesthetic effects. Pressure did not affect baseline receptor function. The threshold for initiating ethanol potentiation differed between genotypes in accordance with their behavioral sensitivities to ethanol (C57 and LS, < or =25 mM; SS, >50 mM). Pressure antagonized ethanol's anticonvulsant effect in SS mice. CONCLUSIONS: The results add important direct evidence supporting the hypothesis that ethanol potentiation of GABA(A) receptor function is an initial action of ethanol causing its behavioral effects. These findings also provide insight into possible effects of selective breeding on GABA(A) receptor function.

Alcoholic Intoxication↗

Glomerular hyperfiltration, high renin, and low- extracellular volume in high blood pressure.

Abnormal renovascular resistance and glomerular filtration rate are characteristic of established hypertension and may also be involved in its pathogenesis. To determine renal and body fluid correlates of the predisposition to high blood pressure, we examined 100 healthy young adults with high or low blood pressure. Within each group, half had parents with high blood pressures, and half had parents with low blood pressures. Renal function and hemodynamics, body fluid volumes, and relevant hormones and genotypes were measured. Subjects with high personal and parental blood pressures had the highest levels of glomerular filtration rate (P<0.02) and plasma active renin concentration and low levels of exchangeable sodium and plasma volume (P<0.02). High glomerular filtration rate was not associated with differences in urinary kallikrein or prostaglandins. Polymorphisms of the renin, angiotensin-converting enzyme, and angiotensinogen genes were not associated with differences in glomerular filtration rate or renin. Subjects with high personal, but low parental, blood pressures had low exchangeable sodium and plasma volumes (P<0.02) but normal glomerular filtration rates. In this population, extracellular volume depletion and high renin are correlates of high blood pressure in early adulthood, and glomerular hyperfiltration is a feature of those who also have familial predisposition to high blood pressure.

Adolescent↗

In vivo and in vitro hyperbaric studies in mice suggest novel sites of action for ethanol.

The present study uses increased atmospheric pressure as an ethanol antagonist to test the hypothesis that allosteric coupling pathways in the GABA(A) receptor complex represent initial sites of action for ethanol. This was accomplished using behavioral and in vitro measures to determine the effects of pressure on ethanol and other GABAergic drugs in C57BL/6 and LS mice. Behaviorally, exposure to 12 times normal atmospheric pressure (ATA) of a helium-oxygen gas mixture (heliox) antagonized loss of righting reflex (LORR) induced by the allosteric modulators ethanol and pentobarbital, but did not antagonize LORR induced by the direct GABA agonist 4,5,6,7-tetrahydroisoxazolo-pyridin-3-ol (THIP). Similarly, exposure to 12 ATA heliox antagonized the anticonvulsant effects verses isoniazid of ethanol, diazepam and pentobarbital. Biochemically, exposure to 12 ATA heliox antagonized potentiation of GABA-activated 36Cl-uptake by ethanol, flunitrazepam and pentobarbital in LS mouse brain preparations, but did not alter GABA-activated 36Cl- uptake per se. In contrast to its antagonist effect versus other allosteric modulators, pressure did not antagonize these behavioral or in vitro effects induced by the neuroactive steroid, 3alpha-hydroxy-5beta-pregnan-20-one (3alpha,5beta-P). These findings add to evidence that pressure directly and selectively antagonizes drug effects mediated through allosteric coupling pathways. The results fit predictions, and thus support the hypothesis that allosteric coupling pathways in GABA(A) receptors represent initial sites of action for ethanol. Collectively, the results suggest that there may be common physicochemical and underlying structural characteristics that define ethanol sensitive regions of receptor proteins and/or their associated membranes that can be identified by pressure within (e.g., GABA(A)) and possibly across (e.g., GABA(A), NMDA, 5HT3) receptors.

Allosteric Regulation↗

Changes in mRNA levels for heat-shock/stress proteins (Hsp) and a secretory vesicle associated cysteine-string protein (Csp1) after amphetamine (AMPH) exposure.

Damage to nerve terminals, reactive gliosis and somatic degeneration can result when pronounced hyperthermia occurs during amphetamine (AMPH) exposure. The effects of AMPH-induced hyperthermia and damage on the relative mRNA levels for several heat shock/stress proteins (Hsp27, Hsp60, Hsp70 and Hsc70), as well as secretory vesicle associated cysteinestring protein (Csp1) were determined in both the striatum and substantia nigra using reverse transcriptase polymerase chain reaction (RT-PCR). These changes were compared to changes in Hsp mRNA levels seen in primary rat cerebral astrocyte cultures after heat shock/stress. Striatal Hsp70 mRNA increased about 2-fold over control levels at 16 hr after AMPH-induced hyperthermia, and was the only Hsp species to significantly increase in response to AMPH. Hsp70 mRNA levels returned to control within 14 days after AMPH. Two-fold increases in Hsp70 mRNA were also seen in primary cultures of rat cerebrum 24 hr after heat shock. In primary cultures and brain tissue, the increased Hsp70 mRNA levels were still more than 500-fold less than constitutive Hsc70 mRNA and 50-fold less than Hsp60 levels. Hsp27 mRNA was not present in the striatum, nigra and primary cell cultures. Thus, the expression of Hsp species mRNA measured was very similar in brain tissue and primary cell cultures. Because only a modest induction of Hsp 70 mRNA occurred, the Hsp species evaluated may only play a minor role in AMPH neurotoxicity. However, further studies are necessary to determine whether large increases in Hsp70 are occurring in selected neurons or glia in the striatum. RT-PCR products for Csp1 were produced in total RNA obtained from brain but not from cultured astrocytes, suggesting that the Csp1 mRNA measured by RT-PCR is of neuronal origin. Csp1 mRNA levels were acutely downregulated in neurons in the substantia nigra, possibly in response to damage, but not the striatum after AMPH exposure. A slight long-term upregulation at 4 months of Csp1 mRNA may occur in the striatum but not in nigra.

Amphetamine↗

Human alpha-adducin gene, blood pressure, and sodium metabolism.

The adducin genes contribute significantly to population variation in rat blood pressure and cell membrane sodium transport. The 460Trp mutation of the human alpha-adducin gene has been associated with hypertension, in particular hypertension sensitive to sodium restriction. We studied the relationship between the 460Trp mutation and population variation in blood pressure and sodium metabolism. From 603 Scottish families, we selected 151 offspring and 224 parents with blood pressures in either the upper (high) or bottom (low) 30% of the population distribution and measured the 460Trp mutation using allele-specific hybridization. In offspring, we also measured exchangeable sodium, plasma volume, and total body water. Plasma levels of components of the renin-angiotensin system, atrial natriuretic peptide, and cellular sodium and transmembrane sodium efflux were also estimated. The overall frequency of the 460Trp mutation was 27.1%. In offspring and parent groups, we found no difference in the genotype or allele frequencies of the 460Trp mutation between subjects with high or low blood pressure. There was no overall association between the alpha-adducin genotypes and blood pressure variation. In offspring, the 460Trp mutation was not associated with any significant differences in body fluid volumes or exchangeable sodium; levels of plasma renin, angiotensin II, aldosterone, or atrial natriuretic peptide; intracellular sodium; or ouabain-sensitive transmembrane sodium efflux. These findings suggest that in our Scottish population, the alpha-adducin 460Trp polymorphism is not related to blood pressure and does not affect whole body or cellular sodium metabolism.

Adolescent↗

Direct antagonism of ethanol's effects on GABA(A) receptors by increased atmospheric pressure.

Previous studies have shown that exposure to 12 times normal atmospheric pressure of helium-oxygen gas (heliox) directly antagonizes a range of ethanol's acute and chronic behavioral effects. The present study extends the investigation to the biochemical level by investigating the effects of pressure on ethanol-induced potentiation of GABA(A) receptor function in mouse membrane vesicles (microsacs). Exposure to 12 atmospheric pressure heliox significantly antagonized ethanol (25 to 100 mM) potentiation of GABA-activated 36Cl- uptake, but did not significantly alter baseline GABA(A) receptor function measured by the response of the system to GABA (10 to 100 microM), bicuculline (3 and 100 microM), or picrotoxin (100 microM). These findings add essential support for the hypothesis that hyperbaric exposure is a direct ethanol antagonist that can be used as a tool to help identify ethanol's initial cellular and molecular sites of action that cause its behavioral effects. Taken in context with previous behavioral studies, the present results also provide important new evidence for a cause-effect relationship between ethanol potentiation of GABA(A) receptor function and ethanol's anesthetic and behavioral effects.

Alcoholic Intoxication↗

Microglial development is altered in immature spinal cord by exposure to radiation.

Previous studies in this laboratory have documented that the microglial environment of the immature spinal cord is altered by exposure to ionizing radiation. As a result, the lumbosacral spinal cord is markedly depleted of both oligodendrocytes and astrocytes, while leaving axons and the overall cytoarchitecture intact. The status of the microglia in the irradiated region is unknown and is of interest given the interactions between microglia and astrocytes recently elucidated by others. This study uses both in vivo and in vitro approaches to examine the microglial population in normal and irradiated immature spinal cord. The lectin, Griffonia (Bandeiraea) simplicifolia, was selected since it marks microglia both in paraffin embedded sections and in cell cultures. Light microscopic examinations of spinal cord sections revealed a reduced microglial population in the irradiated region when compared to littermate controls, and a change in morphology of the remaining microglia to that described by others as "activated". Cultures prepared from lumbosacral spinal cords harvested from 3-day-old rats within 2-4 hr following irradiation were compared with cultures derived from their non-irradiated littermates after 8 days in vitro. Cultures from the irradiated spinal cords revealed trends similar to those observed in vivo, i.e. a reduced microglial population and altered morphology. Although all glial cell types were reduced in cultures from irradiated spinal cords, the few microglia present were usually positioned atop astrocytes. The consistency of reduction in all glial populations in this model shows the microglia to be a novel microenvironment for further studies of roles of microglial within the spinal cord.

Animals↗

Platelet sodium/hydrogen ion exchange in normal pregnancy and non-proteinuric pre-eclampsia.

In non-pregnant individuals, abnormalities in cation transport in vascular tissues have been linked to essential hypertension. In the present study, we consider whether Na+/H+ exchange (NHE) is affected in non-proteinuric pre-eclampsia (NPP). Platelet NHE characteristics and plasma cholesterol were measured in a cross-sectional study of normal primigravidae at 14 +/- 0.5 (n = 9), 29 +/- 0.7 (n = 7), 39 +/- 0.4 (n = 8) weeks gestation, in women with NPP (n = 15) and in non-pregnant women (n = 8). Amiloride-sensitive 22Na uptake was measured in platelets which had been acid loaded, to stimulate NHE, by suspension in isotonic potassium propionate buffer (pH 6.7). Intraplatelet radioactivity was used to calculate the affinity (Km) and the capacity (Vmax) of Na+ uptake. In normotensive women, Vmax (mean +/- s.e.) at 14, 29, 39 weeks gestation and 6 weeks postpartum were 452 +/- 46, 469 +/- 33, 713 +/- 101 and 562 +/- 77 pmolNa+/10(6) cells/min respectively; the third trimester values were higher (P < 0.05) than those in the first and second trimester and were also higher than those of non-pregnant women (415 +/- 20). Vmax of patients with NPP in the third trimester (712 +/- 44) was not different from gestational age-matched controls. Km values were not affected by gestational age or NPP. Plasma cholesterol concentration was positively correlated with Vmax values during normotensive pregnancy (r = 0.493, P < 0.05). In conclusion, the capacity for amiloride-sensitive Na+ uptake by platelets correlates positively with gestational age during normal pregnancy. However, neither the capacity nor affinity for Na+ was altered in NPP platelets suggesting that NHE is not implicated in the pathophysiology of this condition.

Adult↗

Proliferation of astroglia from the adult human cerebrum is inhibited by ethanol in vitro.

Chronic alcoholism is associated with atrophy of the adult brain, while fetal exposure to ethanol can cause microencephaly. Since astroglial pathology is a common feature of ethanol exposure in both humans and animal models, the direct influence of ethanol on proliferation of human astroglia from the gray and white matter of adult temporal lobe was determined and compared. Astroglial cultures were exposed to constant concentrations of ethanol at realistic social and clinical levels (0.1, 0.2 or 0.5%; w/v) for 1 to 5 days. Proliferation was quantified by bromodeoxyuridine labeling and enumeration of replicating cells. Ethanol exposure significantly inhibited proliferation of both gray and white matter astroglia in a dose and duration dependent manner. Gray matter was slightly more sensitive than white matter to inhibition by low to moderate concentrations of ethanol; in contrast, white matter was more sensitive to high ethanol concentrations. Maximum inhibition was 20% in gray matter and 25% in white matter. Human astroglial proliferation was directly inhibited in the absence of neurons, microglia, neuronal degeneration or systemic factors that have confounded in vivo studies. Restricted astroglial proliferation may underlie aspects of the astroglial pathology associated with ethanol exposure.

Adult↗

Parenterally administered 3-nitropropionic acid and amphetamine can combine to produce damage to terminals and cell bodies in the striatum.

The combined effects of amphetamine (AMPH) and 3-nitropropionic acid (3-NPA) were investigated to determine how the energy depletion proposed to be produced by AMPH interacts with an inhibitor of mitochondrial respiration to produce striatal neurotoxicity. Neither two doses (2 h apart) of 3.75 mg/kg AMPH alone nor a single dose of 30 mg/kg 3-NPA i.p. produced neurotoxicity in the striatum or lowered striatal dopamine content in rat. Administration of 40 mg/kg of 3-NPA alone almost invariably produced either lethality or did not produce neurotoxicity in the striatum of surviving animals. However, 30 mg/kg of 3-NPA administered along with 2 doses of 3.75 mg/kg AMPH to 47 animals produced striatal damage in the 31 survivors with 15 of the surviving rats showing muscle rigidity/catatonia for several days after dosing, along with decreased food consumption. Thirteen of these 15 rats showed degeneration of axons and cell bodies in the medial caudate-putamen with minimal damage to the globus pallidus. However, two rats exhibited hindlimb paralysis and signs of axonal and neuronal soma degeneration in the thalamus and cerebellar nuclei as well as striatum. Sixteen of the rats given both AMPH and 3-NPA exhibited only torpidity and loss of muscle tone 1-3 h after dosing. Such rats showed no signs of neuronal cell degeneration in the striatum, but did show significant dopamine depletions (60% of control) and reductions in tyrosine hydroxylase immunoreactivity at 14 days postexposure. The mitochondrial dysfunction produced by 3-NPA combined with activation of neuronal pathways by AMPH may have predisposed terminals, axons and cell bodies in striatum to degeneration.

Amphetamine↗

Low level hyperbaric antagonism of diazepam's locomotor depressant and anticonvulsant properties in mice.

Exposure to 12 atmospheres absolute (12 ATA) helium oxygen gas (heliox) (low level hyperbaric exposure) antagonizes the behavioral effects of ethanol and n-propanol, but not morphine. These and other results indicate that the mechanism of the antagonism is direct (pharmacodynamic) and selective. Our study further investigates the selectivity of low level hyperbaric antagonism by testing its effectiveness against diazepam, a high affinity binding drug that acts via allosteric modulation of GABAA receptors. C57BL/6J mice received injections i.p. of vehicle or diazepam, and were then exposed to 1 ATA air, 1 ATA heliox or 12 ATA heliox. Exposure to 12 ATA heliox antagonized the locomotor depressant effect of 4 and 6 mg/kg, but not 8 mg/kg diazepam. Hyperbaric exposure also antagonized the anticonvulsant effect of 8 and 24 mg/kg, but not 4 mg/kg, diazepam vs. 300 mg/kg isoniazid. Exposure to 12 ATA heliox did not significantly affect blood concentrations of diazepam or its metabolite n-desmethyl diazepam. The pharmacological characteristics of the antagonism (direct, surmountable, rightward shift in diazepam's dose-response curve) closely matched those seen in previous studies for hyperbaric antagonism of ethanol. The results add to the evidence that low level hyperbaric exposure is a direct, mechanistic antagonist that selectively antagonizes drugs that act via perturbation or allosteric modulation of receptor function. Moreover, the results suggest that allosteric coupling pathways, which transduce binding events on ligand-gated ion channels, may represent initial sites of action for ethanol.

Animals↗

Effect of 12 atmospheres helium-oxygen on the response of mice to convulsant drugs.

The mechanism by which 12 atm abs of a helium-oxygen gas mixture (heliox) antagonizes behavioral effects of ethanol is unknown. Although the threshold for pressure-reversal of general anesthesia and expression of the high pressure neurologic syndrome (HPNS) is well above 12 atm abs in mice, the ethanol antagonism by 12 atm abs heliox could result from similar underlying excitatory effects. To investigate this possibility, the behavior of water-injected control mice and the latency to convulsions in drug-injected mice were determined in 1 atm abs air and 12 atm abs heliox. Four convulsant drugs were tested: picrotoxin (2 mg/kg), dl-allylglycine (300 mg/kg), isoniazid (300 mg/kg), and l-methionine-dl-sulfoximine (170 mg/kg). Responses were videotaped to observe behavior and to measure latency to the onset of myoclonus and clonus. Results indicated no observable excitatory effects of 12 atm abs in control mice. The latency to myoclonus was significantly reduced by pressure in allylglycine-treated mice but not in mice treated with the other convulsants. Latency to clonus was not significantly altered by pressure, relative to latency at 1 atm abs heliox, for any drug tested. In conclusion, the present findings indicate that exposure to 12 atm abs heliox is not proconvulsant and, thus, the findings do not support the hypothesis that 12 atm abs heliox antagonizes ethanol indirectly via an increase in central nervous system excitability.

Allylglycine↗