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J M O'Donnell

Publications and source records attributed to J M O'Donnell.

At least 19 recordsLinked to original sources

Development of rolipram-sensitive, cyclic AMP phosphodiesterase (PDE4) in rat primary neuronal cultures.

The development of PDE4 was examined in primary neuronal cultures of rat cerebral cortex. Three days after culturing, neurons exhibited relatively low PDE4 activity (i.e., rolipram-sensitive PDE activity). It gradually increased over time, approximately doubling by day 12. The increase in activity was accompanied by an increase in the expression of the PDE4A variants, PDE4A5 and PDE4A1, as well as of the synaptic marker protein synapsin I. There was a strong correlation between the expression of the PDE4A variants with that of synapsin I, which suggests that as neurons develop and signal transduction increases there is a regulated increase in PDE4 expression and activity. Consistent with this interpretation, it was found that treatment with the sodium channel blocker tetrodotoxin, which inhibits depolarization-induced neurotransmitter release, reduced the expression of the PDE4A variants. These data demonstrate the developmental regulation of PDE4 in neurons and offer a manner by which the association of PDE4 variants with particular signal transduction pathways may be studied in vitro.

3',5'-Cyclic-AMP Phosphodiesterases↗

Tight control of exogenous SERCA expression is required to obtain acceleration of calcium transients with minimal cytotoxic effects in cardiac myocytes.

Collateral effects of exogenous sarcoendoplasmic reticulum Ca(2+) ATPase (SERCA) expression were characterized in neonatal rat and chicken embryo cardiac myocytes, and the conditions required to produce acceleration of Ca(2+) transients with minimal toxicity were established. Cultured myocytes were infected with adenovirus vector carrying the cDNA of wild-type SERCA1, an inactive SERCA1 mutant, or enhanced green fluorescence protein under control of the cytomegalovirus promoter. Controls were exposed to empty virus vector. Each group was tested with and without phenylephrine (PHE) treatment. Under conditions of limited calf-serum exposure, the infected rat myocytes manifested a more rapid increase in size, protein content, and rate of protein synthesis relative to noninfected controls. These changes were not accompanied by reversal to fetal transcriptional pattern (as observed in hypertrophy triggered by PHE) and may be attributable to facilitated exchange with serum factors. SERCA virus titers >5 to 6 plaque-forming units per cell produced overcrowding of ATPase molecules on intracellular membranes, followed by apoptotic death of a significant number of rat but not chicken myocytes. Enhanced green fluorescence protein virus and empty virus also produced cytotoxic effects but at higher titers than SERCA. Expression of exogenous SERCA and enhancement of Ca(2+) transient kinetics could be obtained with minimal cell damage in rat myocytes if the SERCA virus titer were maintained within 1 to 4 plaque-forming units per cell. Expression of endogenous SERCA was unchanged, but expression of exogenous SERCA was higher in myocytes rendered hypertrophic by treatment with PHE than in nontreated controls.

Adenoviridae↗

Modulation of MK-801-induced behaviour by noradrenergic agents in mice.

RATIONALE: Inhibition of glutamatergic N-methyl-D-aspartate (NMDA) receptors following the administration of NMDA receptor antagonists results in psychotic-like behaviour. Whereas it is known that pharmacological manipulation of dopaminergic and serotonergic pathways affect this drug-induced psychosis, a role for noradrenaline has not yet been clearly defined. OBJECTIVES: Thus, in the present study, we assessed a possible role for noradrenaline in the behavioural response to the non-competitive NMDA receptor anatgonist, MK-801, in male CD-I mice. RESULTS: MK-801 (0.02-1.28 mg/kg; ED50 0.2 mg/kg; s.c.) induced a dose-dependent increase in locomotor, stereotypic and ataxic behaviours. Pre-treatment with the noradrenaline re-uptake inhibitors, desipramine (10 mg/kg; i.p.) and reboxetine (20 mg/kg; i.p.), attenuated the locomotor, stereotypic and ataxic response to MK-801 (0.2 mg/kg; s.c.). The noradrenergic system was lesioned with N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine hydrochloride (DSP-4, 50 mg/kg; i.p., 7 and 4 days prior to challenge) to reduce noradrenaline concentrations in the cortex by 70%-80%. Whereas DSP-4 lesioning had little effect on the response to MK-801, it completely reversed the attenuating effects of reboxetine. Pre-treatment with the alpha2 adrenoceptor agonist, clonidine (0.2 mg/kg; i.p.), and the antagonist, yohimbine (2 mg/kg; i.p.), attenuated and potentiated the response to MK-801, respectively. Pre-treatment with the alpha1 adrenoceptor antagonist, prazosin (2 mg/kg; i.p.), reduced the MK-801-induced response. CONCLUSIONS: It therefore appears that presynaptic noradrenergic alpha2 and postsynaptic alpha1 adrenoceptor stimulation exert opposing effects on the behavioural expression of MK-801 in mice.

Adrenergic Agents↗

Discriminative stimulus effects of centrally administered isoproterenol in rats: mediation by beta-1 adrenergic receptors.

RATIONALE: Centrally active beta-1 and beta-2 adrenergic agonists produce antidepressant-like effects in several behavioral tests, suggesting that these receptors may be involved in the mediation of the effects of antidepressant drugs. OBJECTIVES: This study aimed to evaluate the ability of intra-cerebral ventricular (ICV) isoproterenol to produce discriminative stimulus effects mediated by beta adrenergic receptors, establishing a reliable model of in vivo activation of central beta adrenergic receptors. METHODS: Rats were trained to discriminate the non-selective beta adrenergic agonist isoproterenol (10 microg ICV) from artificial cerebral spinal fluid (aCSF) using a water-reinforced two-lever operant task [fixed ratio-10 schedule of reinforcement (FR10)]. For substitution and antagonism tests, drugs were administered IP. RESULTS: Following acquisition of the discrimination, ICV isoproterenol produced dose-related increases in drug-appropriate responding (ED50 = 1.14 microg). The beta-1 selective adrenergic agonist dobutamine fully substituted for isoproterenol at a dose of 0.3 mg/kg (ED50 = 0.15 mg/kg). By contrast, the beta-2 selective adrenergic agonist clenbuterol produced 20% isoproterenol-appropriate responding when administered at doses up to 0.1 mg/kg. The beta adrenergic antagonist propranolol fully antagonized the isoproterenol cue at a dose of 0.03 mg/kg (ID50 = 0.013 mg/kg). The beta-1 selective antagonist betaxolol (ID50 = 0.03 mg/kg) more potently antagonized isoproterenol's cue than did the beta-2 selective antagonist ICI 118,551 (ID50 = 0.41 mg/kg). The antidepressant desipramine (1.0 mg/kg) substituted for isoproterenol. CONCLUSIONS: These results demonstrate that the discriminative stimulus effects of isoproterenol are mediated primarily via beta-1 adrenergic receptors. This provides a functional model for activation of central beta-1 adrenergic receptors, permitting further characterization of the role of this receptor subtype in the mechanism of action of antidepressant drugs.

Adrenergic beta-Agonists↗

Discriminative stimulus effects of the type-4 phosphodiesterase inhibitor rolipram in rats.

RATIONALE: Rolipram, an inhibitor of cyclic AMP phosphodiesterase (PDE4) produces discriminative stimulus effects in rats. These effects may be related to a wide range of central nervous system effects described previously. OBJECTIVE: The purposes of the present study were to: (i) assess the specificity of the discriminative stimulus effects of rolipram; (ii) examine the role of beta adrenergic receptors; (iii) assess the effects of imipramine and nisoxetine; and (iv) determine whether SKF 38393, a compound which also increases cAMP levels, substitutes for rolipram. METHODS: Rats were trained to discriminate 0.1 mg/kg rolipram from its vehicle in a two-lever task. Following discrimination training, substitution and antagonism tests were carried out. RESULTS: In generalization tests, the PDE4 inhibitors ICI 63,197 and Ro 20-1724 substituted for rolipram in a dose-dependent manner (substitution at 0.3 mg/kg and 3 mg/kg, respectively). The selective inhibitors of PDE1, PDE2, and PDE5/6 did not substitute for rolipram; however, a dose of 10 mg/kg of the PDE3 inhibitor milrinone did substitute. The beta adrenergic agonists clenbuterol and dobutamine at least partially substituted for rolipram (0.1 mg/kg and 18 mg/kg, respectively). By contrast, the D1 dopaminergic agonist SKF 38393 and the monoamine uptake inhibitors imipramine and nisoxetine were ineffective (at doses up to 3, 10, and 10 mg/kg, respectively). CONCLUSIONS: The present results indicate that the discriminative stimulus effects of rolipram are related to the inhibition of the hydrolytic activity of PDE4. Generalized increases in cyclic nucleotides do not appear to be sufficient for producing rolipram-like effects. It appears that a mechanism involving beta adrenergic receptors may contribute to the effects of rolipram, consistent with previous neuropharmacological data. Finally, the discriminative stimulus effects of rolipram appear to be unrelated to its antidepressant-like effect, but may provide a surrogate marker for central nervous system-related side effects of PDE4 inhibitors.

3',5'-Cyclic-AMP Phosphodiesterases↗

Surgically induced cryptorchidism-related degenerative changes in spermatogonia are associated with loss of cyclic adenosine monophosphate-dependent phosphodiesterases type 4 in abdominal testes of rats.

The present study was undertaken to investigate the role of phosphodiesterase type 4 (PDE4) enzymes in cryptorchidism-induced apoptosis of the germ cells. Regulation of expression of PDE4 enzymes was studied in the abdominal and scrotal testes of surgically induced cryptorchid rats for 10, 20, and 30 days. In some cases orchidopexy was performed after 30 days of cryptorchidism, and rats were allowed to recover for an additional 50 days. Upon histological examination, marked degenerative changes in the epithelial lining of the seminiferous tubules within abdominal testes were observed compared with contralateral control or age-matched sham-operated rats. These changes included degeneration of some spermatogonia, apoptosis of the secondary spermatocytes, incomplete spermatogenesis, and lack of spermatozoa in the lumen. In contrast, contralateral scrotal testes exhibited normal histology. Significant improvement in the regeneration of spermatogonia was observed in rats after 50 days of recovery following orchidopexy. Immunocytochemical examination suggested the presence of PDE4A in germ cells while PDE4B was predominantly expressed on somatic cells. Western blotting using PDE4 subtype-selective antibodies showed the presence of two PDE4A variants (a 109-kDa PDE4A8 and a previously uncharacterized 88-kDa PDE4A variant) and two PDE4B (78-kDa PDE4B2 and 66-kDa PDE4B variant) bands. In unilaterally cryptorchid animals, the abdominal testis showed a time-dependent decrease in both PDE4A8 and 88-kDa PDE4A variants. In contrast, the expression of 66-kDa PDE4B was markedly increased in a time-dependent fashion in abdominal testes of cryptorchid rats. Animals surgically corrected for cryptorchidism and allowed to recover for 50 days exhibited normal expression of both PDE4A and PDE4B variants compared with aged-matched, sham-operated controls. In conclusion, this study suggests that down-regulation of PDE4A variants in cryptorchid testes may play an important role in the degeneration of spermatogonia and increased apoptotic activity in the germ cells.

3',5'-Cyclic-AMP Phosphodiesterases↗

Exogenous Ca2+-ATPase isoform effects on Ca2+ transients of embryonic chicken and neonatal rat cardiac myocytes.

1. Sarco-endoplasmic reticulum Ca2+-ATPase from fast skeletal (SERCA1) or cardiac muscle (SERCA2a) was expressed in embryonic chicken and neonatal rat cardiac myocytes by adenovirus vectors, with c-myc tags on both constructs to compare expression and distinguish exogenous from endogenous SERCA2a in myocytes. 2. Expression of the two isoforms was similar (approximately 3-fold higher than endogenous SERCA). However, SERCA1 activity was 2-fold greater than SERCA2a activity, due to intrinsic differences in turnover rates. Activation of both exogenous SERCA isoforms by Ca2+ was displaced to slightly lower [Ca2+], suggesting that the overexpressed isoforms were independent of phospholamban. In fact, phospholamban and calsequestrin expression were unchanged. 3. Decay time constants of cytosolic Ca2+ transients from cells overexpressing SERCA1 were reduced by 30-40 % and half-widths by 10-15 % compared to controls. SERCA2a overexpression produced much less acceleration of transients in chick than in rat, and less acceleration than SERCA1 overexpression in either species. There was no significant change in resting [Ca2+], peak amplitudes, or in the amount of Ca2+ releasable by caffeine from overexpression of either SERCA isoform. However, the amplitudes of the transients increased with SERCA1 overexpression when pacing frequency limited refilling of the sarcoplasmic reticulum. 4. It is concluded that total SERCA transport velocity has a primary effect on the decay phase of transients. Transport velocity is affected by SERCA isoform turnover rate, temperature, and/or SERCA copy number.

Animals↗

Noradrenergic lesions differentially alter the expression of two subtypes of low Km cAMP-sensitive phosphodiesterase type 4 (PDE4A and PDE4B) in rat brain.

This study examined the effects of selective, central noradrenergic dennervation with 6-hydroxydopamine (6-OHDA) on the expression of type 4 phosphodiesterases (PDE4). Twenty-one days following i.c.v. injection of 6-OHDA (200 microg) hypothalamus, neostriatum, and cerebellum were dissected. Infusion of 6-OHDA reduced norepinephrine (NE) content in all the brain areas examined (to 17%, 76% and 16% of sham-operated controls in hypothalamus, striatum, and cerebellum, respectively). 6-OHDA injections also reduced dopamine levels in hypothalamus (53%) and neostriatum (68%). Administration of desipramine (20 mg/kg, i.p.) 30 min prior to 6-OHDA injection protected neostriatal and cerebellar noradrenergic neurons NE levels (110-122% of the control levels). Desipramine partially attenuated the 6-OHDA-mediated decrease in NE content of hypothalamus, but had little or no effect on either striatal or hypothalamic dopamine (DA) levels. Western blot analysis using a PDE4A-selective antibody revealed three major bands (109 kDa PDE4A5, 102 kDa PDE4AX and 76 kDa PDE4A1) in hypothalamus and striatum. Infusion of 6-OHDA decreased the expression of PDE4A5 and PDE4AX but not of PDE4A1 in hypothalamus, as determined by quantitative Western blotting. Pretreatment of rats with desipramine attenuated the 6-OHDA-induced down-regulation of PDE4A5 and PDE4AX bands in hypothalamus. The PDE4B selective antibody K118 labels 5 major bands in all the brain regions studied. One hundred kDa PDE4B3, 86 kDa PDE4B2 and a 78 kDa PDE4B band was identified using recombinant proteins. Treatment of rats with 6-OHDA resulted in a 52% decrease in the PDE4B3 and 58% decrease in 78 kDa PDE4B variant in hypothalamus; administration of desipramine attenuated the 6-OHDA-induced down-regulation of both PDE4B variants. Neither 6-OHDA nor desipramine altered striatal PDE4A or PDE4B isozymes. In contrast, cerebellar PDE4B3 variant is up-regulated by 6-OHDA treatment and were partially normalized to control values by desipramine pretreatment. These data demonstrate that PDE4 subtypes are differentially regulated by presynaptic noradrenergic activity and may play an important role in the maintaining homeostasis of noradrenergic signal transduction in rat brain.

3',5'-Cyclic-AMP Phosphodiesterases↗

Effects of rolipram on scopolamine-induced impairment of working and reference memory in the radial-arm maze tests in rats.

RATIONALE: Rolipram, a selective inhibitor of cyclic AMP-specific phosphodiesterase (PDE4), has been shown to enhance scopolamine-induced impairment of working memory. However, its effect on reference memory, which appears to be related to the level of cyclic AMP (cAMP), has not been investigated yet; in addition, the mechanism involved in its effects on memory remains to be elucidated. OBJECTIVES: To investigate the effects of rolipram on working and reference memories impaired by scopolamine and the involvement of cAMP. METHODS: By administration (IP) of rolipram and forskolin, an activator of adenylyl cyclase (AC), the effects of both drugs on the number of correct choices and errors in experiment 1 and, the frequency of both working memory errors and reference memory errors in experiment 2 were observed in two eight-arm radial maze tasks in rats. RESULTS: In experiment 1, rolipram (0.01-1.0 mg/kg) attenuated the scopolamine-induced (0.5 mg/kg) increase in the total number of errors in dose- and time-dependent manners. The minimum effective dose of rolipram was 0.05 mg/kg and the effects lasted nearly 60 min. By contrast, forskolin (1.0-10.0 mg/kg) failed significantly to affect any of the above indices altered by scopolamine. In experiment 2, rolipram (0.05 and 0.1 mg/kg) decreased the frequencies of both working and reference memory errors that were elevated by scopolamine. Forskolin did not alter either type of error at a dose that increased the exploration time. CONCLUSION: Rolipram may exert its effects of reversing both working and reference memory impairments via increased cyclic AMP concentrations in certain signal transduction pathways, rather than by a generalized increase in cAMP.

3',5'-Cyclic-AMP Phosphodiesterases↗

Test conditions influence the response to a drug challenge in rodents.

These studies were conducted to examine the differential response to a drug challenge under varied experimental test conditions routinely employed to study drug-induced behavioral and neurophysiological responses in rodents. Apomorphine, a nonselective dopamine agonist, was selected due to its biphasic behavioral effects, its ability to induce hypothermia, and to produce distinct changes to dopamine turnover in the rodent brain. From such experiments there is evidence that characterization and detection of apomorphine-induced activity in rodents critically depends upon the test conditions employed. In rats, detection of apomorphine-induced hyperactivity was facilitated by a period of acclimatization to the test conditions. Moreover, test conditions can impact upon other physiological responses to apomorphine such as drug-induced hypothermia. In mice, apomorphine produced qualitatively different responses under novel conditions when compared to those behaviors elicited in the home test cage. Drug-induced gross activity counts were increased in the novel exploratory box only, while measures of stereotypic behavior were similar in both. By contrast, apomorphine-induced locomotion was more prominent in the novel exploratory box. Dopamine turnover ratios (DOPAC:DA and HVA:DA) were found to be lower in those animals exposed to the exploratory box when compared to their home cage counterparts. However, apomorphine-induced reductions in striatal dopamine turnover were detected in both novel and home cage environments. The implications of these findings are discussed with particular emphasis upon conducting psychopharmacological challenge tests in rodents.

Analysis of Variance↗

Inhibition of cyclic AMP phosphodiesterase (PDE4) reverses memory deficits associated with NMDA receptor antagonism.

Rolipram, a selective inhibitor of type 4 cyclic AMP phosphodiesterase (PDE4), completely reversed the amnesic effects of MK-801 on working and reference memory (F[4,64] = 11.10; p <.0001 and F[4,64] = 2.53; p <.05, respectively) at doses of 0.01-0.1 mg/kg in the radial-arm maze task. Similar antagonism by rolipram of the effects of MK-801 was observed on inhibitory avoidance behavior (F[3,35] = 190.8; p <.0001). In vitro evidence suggests that an increase in cAMP concentrations may mediate the observed behavioral effects of rolipram. In the absence of PDE4 inhibition, NMDA did not increase cAMP concentrations in primary cultures of rat cerebral cortical neurons. However, when PDE4 was inhibited with rolipram, NMDA markedly elevated cAMP. These observations suggest that PDE4 is an integral component of the NMDA receptor-mediated signal transduction pathway involved in memory processes. Inhibitors of PDE4 may act on this pathway to produce their effects on memory and may represent a new class of cognitive enhancers.

3',5'-Cyclic-AMP Phosphodiesterases↗

Effects of repeated antidepressant treatment of type 4A phosphodiesterase (PDE4A) in rat brain.

In a previous study, an up-regulation of rolipram-sensitive, low-Km, cyclic AMP phosphodiesterase (PDE4) subtype PDE4A in rat cerebral cortex following repeated treatment of desipramine was observed. To determine whether this effect is shared by antidepressants from different pharmacological classes, PDE4A expression was examined using immunoblot analyses following repeated treatment with the norepinephrine re-uptake inhibitor desipramine, the monoamine oxidase inhibitor phenelzine, the atypical antidepressant trazodone, and the serotonin reuptake inhibitor fluoxetine. Desipramine, phenelzine, and fluoxetine all increased the intensities of the PDE4A bands in hippocampal preparations; trazodone did not. In preparations of cerebral cortex, the intensities of the PDE4A bands were increased following desipramine treatment, not changed following phenelzine or fluoxetine treatment, and decreased following trazodone treatment. It appears that repeated treatment with antidepressant drugs from different pharmacological classes produces similar effects on the expressions of PDE4A variants in hippocampus. This effect is not correlated with the changes in beta-adrenergic receptor densities, suggesting these antidepressants may at some point alter intracellular signal transduction pathways in a similar manner.

Animals↗

Postnatal expression and activity of the mitochondrial 2-oxoglutarate-malate carrier in intact hearts.

This study examines the functional implications of postnatal changes in the expression of the mitochondrial transporter protein, 2-oxoglutarate-malate carrier (OMC). Online (13)C nuclear magnetic resonance ((13)C NMR) measurements of isotope kinetics in hearts from neonate (3-4 days) and adult rabbits provided tricarboxylic acid cycle flux rates and flux rates through OMC. Neonate and adult hearts oxidizing 2.5 mM [2,4-(13)C(2)]butyrate were subjected to either normal or high cytosolic redox state (2.5 mM lactate) conditions to evaluate the recruitment of malate-aspartate activity and the resulting OMC flux. During development from neonate (3-4 days) to adult, mitochondrial protein density in the heart increased from 19 +/- 3% to 31 +/- 2%, whereas OMC expression decreased by 65% per mitochondrial protein content (P < 0.05). Correspondingly, OMC flux was lower in adults hearts than in neonates by 73% (neonate = 7. 4 +/- 0.4, adult = 2.0 +/- 0.1 micromol/min per 100 mg mitochondrial protein; P < 0.05). Despite clear changes in OMC content and flux, the responsiveness of the malate-aspartate shuttle to increased cytosolic NADH was similar in both adults and neonates with an approximate threefold increase in OMC flux (in densitometric units/100 mg mitochondrial protein: neonate = 25.8 +/- 2.5, adult = 6.0 +/- 0.2; P < 0.05). The (13)C NMR data demonstrate that OMC activity is a principal component of the rate of labeling of glutamate.

Age Factors↗

Cardiac excitation-contraction coupling in the portal hypertensive rat.

Basal contractility and responses to beta-adrenoceptor activation are compromised in hearts from rats with chronic portal vein stenosis. Here we report the effect of partial ligation of the portal vein on myocardial G protein expression, beta-adrenoceptor-G protein coupling, and excitation-contraction coupling (ECC). Contractility (dT/dt) was reduced 30-50% in right and left ventricles, but the rate of relaxation (-dT/dt) was unaffected. Isoproterenol-induced positive inotropism was diminished, but there was no difference in ED(50). The concentration-dependent increase in -dT/dt was unaffected. G(s)alpha and G(i)alpha expression, cholera toxin- and pertussis toxin-induced ADP-ribosylation, and formation of the agonist-receptor-G(s) complex were unaffected by portal vein stenosis. Of the components of ECC examined, the caffeine-sensitive sarcoplasmic reticulum Ca(2+) pool was reduced 35%, although the Ca(2+) uptake and release processes were unchanged; the apparent density of L-type Ca(2+) channels decreased 60% with no change in affinity; the dihydropyridine Ca(2+) channel agonist BAY K 8644 produced relative changes in dT/dt that were similar in both groups, suggesting normal function in the remaining Ca(2+) channels; and Na(+)/Ca(2+) exchange was reduced 50% in the portal vein stenosis group. These data suggest that the effect of portal vein stenosis on the myocardium is the result of alterations to ECC.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Dental guards: helpful or hazards?--a case report.

Dental guards are an airway adjunct recommended for patients at risk for dental injury during airway instrumentation; however, reportedly only 2% of anesthesiologists use dental guards during intubation. In this case report, a 64-year-old patient was admitted for a right retromastoid craniectomy with microvascular decompression of the fifth cranial nerve. The patient had crowns on all her maxillary teeth. The anesthesia team, which consisted of a student anesthetist, Certified Registered Nurse Anesthetist, and anesthesiologist, planned to prevent dental damage through the use of a dental guard (Bay Medical, Clearwater, Fla). Prior to intubation a dental guard was inserted on the upper teeth. Induction, intubation, and surgery were uneventful, but in the recovery area the patient complained of a sore throat. After transfer to the intensive care unit, the patient continued to complain of secretions and sore throat and was noted to have hoarseness. When a Yankauer suction catheter was inserted, the dental guard was discovered in the patient's mouth. Apparently during the busy sequence of events following intubation, the dental guard was overlooked and was displaced into the posterior oropharynx. Recommendations for the proper use of dental guards are needed to avoid complications; however, there is a scarcity of information available in the conventional anesthesia literature regarding this intubation adjunct. We recommend careful documentation, clear communication with all team members, and attention to avoid displacement during subsequent airway manipulation.

Equipment Failure↗

Effects of noradrenergic lesions on the development of rolipram-sensitive, low-K(m), cyclic AMP specific phosphodiesterase in rat brain.

Rolipram-sensitive, low-K(m)80% loss of norepinephrine in cerebral cortex) without affecting dopaminergic systems. The lesions resulted in temporary reduction of PDE4 activity in cerebral cortex, cerebellum and brainstem. Lesions in the adult rats, on the other hand, did not alter PDE4 activity. Decreased PDE4 activity by neonatal noradrenergic lesions was due to a decrease in the V(max) of cAMP hydrolysis by PDE4, and not a change in the K(m) values. Immunoblot analysis showed that decreased PDE4 activity in cerebellum was associated with reduced expression of PDE4A5, PDE4A1, and several PDE4B variants. No change in the expression of any PDE4 subtype in cerebral cortex was detected with the antibodies used in this study. Neither the permanent loss of noradrenergic innervation in cerebral cortex, nor the permanent noradrenergic hyperinnervation in brainstem was accompanied by any permanent change in PDE4 activity. Decreasing PDE4 activity early after neonatal noradrenergic lesions might be important in maintaining constant concentrations of cAMP, which is critical for the cellular proliferation and differentiation that is active during this period.

Amino Acid Sequence↗