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M F Davies

Publications and source records attributed to M F Davies.

At least 19 recordsLinked to original sources

Nitrous oxide lacks the antinociceptive effect on the tail flick test in newborn rats.

UNLABELLED: Nitrous oxide (N(2)O) is commonly used for pediatric anesthesia under the assumption that it produces a similar analgesic response to that seen in adults. We examined the antinociceptive effect of 75% N(2)O on tail flick latency response in newborn rats at postnatal Day 1 (PD 1), PD 8, PD 15, PD 22, and PD 29. Up to PD 15, rats showed no analgesic effect to N(2)O. By PD 29, rats exhibited a comparable analgesic effect to that seen in adult animals. These data are consistent with the fact that the descending noradrenergic neurons, which are required for the analgesic action of N(2)O, are not anatomically or functionally developed at birth and take more than three weeks to fully develop in rats. IMPLICATIONS: The present study indicates that rats below 3 wk old lack an antinociceptive effect to nitrous oxide by using the tail flick test. Because a 3-wk-old rat is comparable in neurological development with the toddler stage in humans, we may anticipate that patients below this age may not experience the usual analgesic effect of nitrous oxide.

Aging↗

Opioidergic and adrenergic modulation of formalin-evoked spinal c-fos mRNA expression and nocifensive behavior in the rat.

Fos protein expression has been used to reflect neuronal activation in pain processing pathways although analgesics may uncouple behavioral and Fos responses. We determine whether formalin-induced spinal c-fos mRNA expression (Northern blotting) correlates with nocifensive behavior following pretreatment with morphine, the alpha2-adrenoceptor agonist dexmedetomidine, or their respective antagonists naloxone and atipamezole. Both opiate and alpha2-adrenoceptor agonists reduced formalin-induced c-fos gene transcription and nocifensive behavior via their cognate receptors. Unexpectedly, blockade of either the opiate or alpha2-adrenergic receptors, alone, caused an increase in formalin-evoked c-fos mRNA; while blocking the opiate receptor had no effect on formalin-induced behavior, alpha2-adrenoceptor block had an analgesic effect, indicating discordance between c-fos message transcription and nocifensive behavior. We concluded that the formalin-induced spinal c-fos signal was a poor predictor of the behavioral response to pharmacological manipulation of pain processing pathways.

Adrenergic alpha-2 Receptor Antagonists↗

Predictive value for infection of febrile morbidity after vaginal surgery.

OBJECTIVE: To determine the screening value of febrile morbidity for detecting infections after vaginal surgery. METHODS: A cohort of 431 consecutive women had vaginal surgery at the M. S. Hershey Medical Center from September 1988 through June 1995. Outcomes of febrile morbidity and infection were analyzed. RESULTS: Fifty-four of 431 patients (12.5%) had febrile morbidity. Thirty-five infections (8.1%) were identified, of which only 13 were accompanied by febrile morbidity. Forty-one patients (9.5%) had unexplained fevers. The sensitivity of febrile morbidity for postoperative infection was 40%, specificity was 98%, positive predictive value was 26%, and negative predictive value was 94%. Stepwise logistic regression found blood loss (odds ratio 1.001/mL; confidence interval 1.0001-1.0035), uterine weight (0.987/g; 0.976-0.999), and parity (1.570; 1.146-2.050) as significant independent variables for developing fever. Patient weight (0.984/lb; 0.971-0.998) and type of procedure (2.16; 2.12-6.38) were confirmed as significant independent variables for postsurgical infections. CONCLUSION: Febrile morbidity had limited value as a screening test for postoperative infection, with poor sensitivity and positive predictive value after vaginal surgery.

Female↗

Nitrous oxide produces antinociceptive response via alpha2B and/or alpha2C adrenoceptor subtypes in mice.

BACKGROUND: Opiate receptors in the periaqueductal gray region and alpha2 adrenoceptors in the spinal cord of the rat mediate the antinociceptive properties of nitrous oxide (N2O). The availability of genetically altered mice facilitates the detection of the precise protein species involved in the transduction pathway. In this study, the authors establish the similarity between rats and mice in the antinociceptive action of N2O and investigate which alpha2 adrenoceptor subtypes mediate this response. METHODS: After obtaining institutional approval, antinociceptive dose-response and time-course to N2O was measured in wild-type and transgenic mice (D79N), with a nonfunctional alpha2A adrenoceptor using tail-flick latency. The antinociceptive effect of N2O was tested after pretreatment systemically with yohimbine (nonselective alpha2 antagonist), naloxone (opiate antagonist), L659,066 (peripheral alpha2-antagonist) and prazosin (alpha2B- and alpha2C-selective antagonist). The tail-flick latency to dexmedetomidine (D-med), a nonselective alpha2 agonist, was tested in wild-type and transgenic mice. RESULTS: N2O produced antinociception in both D79N transgenic and wild-type litter mates, although the response was less pronounced in the transgenic mice. Antinociception from N2O decreased over time with continuing exposure, and the decrement was more pronounced in the transgenic mice. The antinociceptive response could be dose dependently antagonized by opiate receptor and selective alpha2B-/alpha2C-receptor antagonists but not by a central nervous system-impermeant alpha2 antagonist (L659,066). Whereas dexmedetomidine exhibited no antinociceptive response in the D79N mice, the robust antinociceptive response in the wild-type litter mates could not be blocked by a selective alpha2B-/alpha2C-receptor antagonist. CONCLUSION: These data confirm that the antinociceptive response to an exogenous alpha2-agonist is mediated by an alpha2A adrenoceptor and that there appears to be a role for the alpha2B- or alpha2C-adrenoceptor subtypes, or both, in the analgesic response to N2O.

Analgesics, Non-Narcotic↗

The analgesic action of nitrous oxide is dependent on the release of norepinephrine in the dorsal horn of the spinal cord.

BACKGROUND: The authors and others have demonstrated that supraspinal opiate receptors and spinal alpha2 adrenoceptors are involved in the analgesic mechanism for nitrous oxide (N2O). The authors hypothesize that activation of opiate receptors in the periaqueductal gray results in the activation of a descending noradrenergic pathway that releases norepinephrine onto alpha2 adrenoceptors in the dorsal horn of the spinal cord. METHODS: The spinal cord was transected at the level of T3-T4 in rats and the analgesic response to 70% N2O in oxygen was determined by the tail flick latency test. In a separate experiment in rats a dialysis fiber was positioned transversely in the dorsal horn of the spinal cord at the T12 level. The following day, the dialysis fiber was infused with artificial cerebrospinal fluid at a rate of 1.3 microl/min, and the effluent was sampled at 30-min intervals. After a 60-min equilibration period, the animals were exposed to 70% N2O in oxygen. The dialysis experiment was repeated in animals that were pretreated with naltrexone (10 mg/kg, intraperitoneally) before N2O. In a third series, spinal norepinephrine was depleted with n-(2-chloroethyl)-n-ethyl-2-bromobenzylamine (DSP-4), and the analgesic response to 70% N2O in oxygen was determined. RESULTS: The analgesic effect of N2O was prevented by spinal cord transection. After exposure to N2O, there was a fourfold increase in norepinephrine released in the first 30-min period, and norepinephrine was still significantly elevated after 1 h of exposure. The increased norepinephrine release was prevented by previous administration of naltrexone. Depletion of norepinephrine in the spinal cord blocked the analgesic response to N2O. CONCLUSIONS: A descending noradrenergic pathway in the spinal cord links N2O-induced activation of opiate receptors in the periaqueductal gray, with activation of alpha2 adrenoceptors in the spinal cord. N2O-induced release of norepinephrine in the dorsal horn of the spinal cord is blocked by naltrexone, as is the analgesic response. Spinal norepinephrine is necessary for the analgesic response to the N2O.

Analgesics, Non-Narcotic↗

Interstitial cystitis.

Interstitial cystitis (IC) is a multifactorial syndrome with symptoms of pelvic or perineal pain, urinary frequency and urgency. The etiologies are unknown, but several theories have been proposed. Diagnosis is often delayed because most of the conventional evaluation is normal. Pelvic examination is normal except for bladder tenderness. Urodynamics are normal except for increased bladder sensitivity and low capacity. Urinalysis, urine culture and office cystoscopy are also normal. The diagnostic test is cystoscopy under anesthesia with bladder distension. Small submucosal hemorrhages (glomerulations) or ulcers appear after distension. Many empiric treatments have been proposed for IC. None is universally effective, and so treatments are tried sequentially until good symptom relief is achieved. Bladder distension gives excellent (but transient) relief in some patients, especially those with severe bladder inflammation (who also tend to be older). A variety of oral, intravesical and adjunctive treatments are also described.

Cystitis, Interstitial↗

Self-Deceptive Enhancement and Impression Management correlates of EPQ-R dimensions.

The Self-Deceptive Enhancement and Impression Management scales of the Paulhus (1991) Balanced Inventory of Desirable Responding were correlated with the Psychoticism, Neuroticism, Extraversion, and Lie scales of the Eysenck EPQ-R (Eysenck & Eysenck, 1991) in a student sample. Extraversion correlated positively and Neuroticism correlated negatively with Self-Deceptive Enhancement, whereas Psychoticism correlated negatively and the Lie scale correlated positively with Impression Management. These findings suggest that the EPQ-R scales are involved in different aspects of socially desirable responding. It was concluded that social desirability should not be controlled in measures of Extraversion and Neuroticism but it should be controlled in measures of Psychoticism.

Adult↗

Chronic desipramine treatment desensitizes the rat to anesthetic and antinociceptive effects of the alpha2-adrenergic agonist dexmedetomidine.

INTRODUCTION: The effects of long-term administration of the tricyclic antidepressant agent desipramine on the hypnotic, antinociceptive, anesthetic-sparing, and central norepinephrine turnover suppressant action of short-term dexmedetomidine, a highly selective alpha2-adrenergic agonist, were studied in rats. METHODS: Rats were given a 3- or 4-week course of twice daily administration of desipramine, 10 mg/kg, or saline. The effect of a hypnotic dose of dexmedetomidine, 250 microg/kg given intraperitoneally, on the duration of loss of righting reflex was determined. The tail flick latency response was determined before and after 50 microg/kg dexmedetomidine. The minimum anesthetic concentration of halothane and the central norepinephrine turnover rate were determined before and after administration of 30 microg/kg dexmedetomidine. Changes in the affinity and density of the alpha2-adrenergic receptor in locus coeruleus and spinal cord also were determined. RESULTS: Treatment with desipramine decreased dexmedetomidine-induced loss of righting reflex duration by 67% and eliminated the antinociceptive effect of dexmedetomidine. Dexmedetomidine produced a 55% decrease in minimum anesthetic concentration in the control group but no reduction in desipramine-treated rats. Desipramine did not change the receptor density or binding affinity of alpha2 receptors at the site for hypnotic (locus coeruleus) or antinociceptive (spinal cord) responses. No decrement in the central norepinephrine turnover rate was noted in the locus coeruleus of dexmedetomidine after 3 weeks of treatment with desipramine. The alpha1-adrenergic antagonist prazosin at 1 or 5 mg/kg completely (minimum anesthetic concentration reduction), almost completely (antinociceptive), or partially (hypnotic) restored responsiveness to normal. CONCLUSIONS: These data indicate that treatment with desipramine induces hyporesponsiveness to the hypnotic, analgesic, and minimum anesthetic concentration-reducing, but not to the suppression of central norepinephrine turnover, properties of dexmedetomidine. The hyporesponsiveness appears to involve an alpha1-adrenergic mechanism.

Adrenergic alpha-Agonists↗

Opiate receptors in the periaqueductal gray mediate analgesic effect of nitrous oxide in rats.

The site of action and the pathways which are activated by nitrous oxide (N2O) to produce an analgesic effect are not well defined. Experiments were designed to determine whether N2O produces analgesia by activating opiate receptors or alpha2-adrenoceptors in periaqueductal gray. The analgesic effect of N2O was determined using the tail flick response to noxious radiant heat in lightly anesthetized rats. Different antagonists were bilaterally microinjected into ventrolateral periaqueductal gray to determine whether the analgesic effect produced by N2O was reversed. The increase in the tail flick latencies produced by N2O was reversed by bilateral microinjection into the ventrolateral part of periaqueductal gray with the opiate receptor antagonist naloxone 2.5 microg/0.5 microl, but not with the alpha2-adrenoceptors antagonist yohimbine 1.5 microg/0.5 microl. These results indicate that the N2O analgesic effect is mediated by activation of opiate receptors, but not alpha2-adrenoceptors, in the periaqueductal gray. Combined with the previous experiments that the N2O analgesic effect is reversed by intrathecal injection of an alpha2-adrenoceptor antagonist but not by an opiate receptor antagonist, it seems likely that N2O causes activation of the opiate receptors in the periaqueductal gray, which in turn activate the noradrenergic descending pathways to the spinal cord to produce the analgesic effect.

Adrenergic alpha-Antagonists↗

Positive test strategies and confirmatory retrieval processes in the evaluation of personality feedback.

Cognitive-response analysis was carried out to investigate people's acceptance of personality feedback. In 3 studies with 223 male and female college students 18-38 years old, participants generated more confirming than disconfirming evidence for personality feedback. Availability of confirmatory evidence was found to be closely related to the rated accuracy of the feedback. Both rated accuracy and amount of confirmatory evidence were greater for general than specific and for true than false feedback. Analyses of covariance showed that availability of confirmatory evidence accounted for the effects of general versus specific and true versus false feedback on rated accuracy. Findings are discussed in terms of the use of positive test strategies and the influence of confirmatory evidence retrieval on working self-concepts.

Adolescent↗

Nifedipine, an L-type calcium channel blocker, restores the hypnotic response in rats made tolerant to the alpha-2 adrenergic agonist dexmedetomidine.

Rats were made tolerant to the hypnotic effects of the alpha-2 adrenergic agonist dexmedetomidine by a 7- or 14-day continuous systemic administration of the same, and the ability of nifedipine to reverse dexmedetomidine tolerance was assessed. Acute administration of nifedipine (10 mg/kg i.p.) restored the hypnotic response to dexmedetomidine in the alpha-2 tolerant rats. Concurrent administration of nifedipine during induction of tolerance, either partially (continuous administration 10 mg/kg/day delivered by minipumps) or completely (twice daily injections, 20 mg/kg s.c.) restored hypnotic responsiveness to control levels. Induction of tolerance reduced the affinity of [3H]PN200-110 for the L-type calcium channel. Chronically administered nifedipine treatment (20 mg/kg s.c. twice daily), at doses that partially restored the behavioral response to normal, did not change ligand binding affinity of [3H]PN200-110. An increase in Bmax for [3H]PN200-110 was noted in the dexmedetomidine tolerant state which did not change with chronic nifedipine. In naive rats, the phosphodiesterase inhibitor rolipram (275 microg/kg i.p.), mimicked the state of tolerance, as it resulted in a decreased hypnotic response to dexmedetomidine. Nifedipine (10 mg/kg i.p.) also reversed the rolipram-induced attenuation of the hypnotic response to dexmedetomidine. These data implicate a role for the L-type calcium channel in the mechanism of the hypnotic response in alpha-2 tolerant rats and suggest the involvement of the cAMP pathway.

Adrenergic alpha-2 Receptor Agonists↗

Evidence for mu1-opioid receptor involvement in fentanyl-mediated respiratory depression.

Several fentanyl analogs (Bagley et al., 1989, J. Med. Chem. 32, 663) were compared to fentanyl and morphine for their effects on respiratory depression as determined by arterial blood gas (pH, pCO2 and pO2) measurements. Fentanyl (0.1 mg/kg), morphine (10 mg/kg), #16 (1-phenethyl-4-[N-(pyridin-2-yl)-N-(methoxymethylcarbonyl)amino] piperidine, 1 mg/kg), #17 (1-phenethyl-4-[N-(pyridin-2-yl) -N-(2-furoyl)amino]piperidine, 0.5 mg/kg) and #29 (1-phenethyl-4-[N- (pyrimidin-2-yl)-N-(methoxy-methylcarbonyl) amino]piperidine, 10 mg/kg) produced significant respiratory depression in rats. Pretreatment with the mu1-opioid receptor selective antagonist, naloxonazine (10 mg/kg), blocked the respiratory effect of fentanyl and its analogs, but not that of morphine. The results suggest that the mu1-opioid receptor plays an important role in the respiratory effects of fentanyl and its analogs. Hence, the mechanism of fentanyl-induced respiratory depression appears to be distinct from that produced by morphine. The most likely explanation for this difference is the possible contribution of muscle rigidity and catalepsy to the observed changes in blood gas parameters caused by the fentanyl analogs, while the respiratory depression of morphine, measured by these same parameters, appears to be independent of its effect on muscle rigidity.

Animals↗

Putative benzodiazepine partial agonists demonstrate receptor heterogeneity.

This study explored whether the behavioral heterogeneity of benzodiazepine receptor (BDZR) ligands is a consequence of multiple receptor subtypes or partial agonism. Putative partial agonists Ro16-6028, Ro23-1590, Ro23-0364, and abecarnil were compared with U78875, a mixed agonist-antagonist, and CGS8216, an inverse agonist, in five BDZR-mediated functions: hyperphagia, anxiolysis, sedation, hypothermia, and anticonvulsant activity. Only abecarnil was an agonist in all end points. Each of the other drugs exhibited qualitatively different responses at these end points. Specifically, Ro23-0364 produced no effect on body temperature, but was an agonist at other tests. Ro23-1590 had no effect on anxiolysis and hypothermia, but was an agonist at other tests. In contrast to other putative partial agonists, Ro16-6028 was found to be an antagonist in sedation and U78875 was an antagonist in hypothermia, but both were agonists at other end points. These qualitative differences in activity in the five behavioral end points studied cannot be explained by partial agonism at a single receptor and indicate that these ligands differentially activate multiple BDZR subtypes.

Animals↗

The hyperphagic effect of 3 alpha-hydroxylated pregnane steroids in male rats.

Like benzodiazepines receptor (BDZR) ligands, 3 alpha-hydroxylated, 5 alpha, or 5 beta pregnane steroids are sedative, anticonvulsant, and anxiolytic. BDZR ligands also modulate the feeding response. Therefore, in this study we have investigated the effects of four 3 alpha-hydroxylated pregnane steroids-Pregnanolone (3 alpha-hydroxy-5 beta-pregnan-20-one), allopregnanolone (3 alpha-hydroxy-5 alpha-pregnan-20-one), alphaxalone (3 alpha-hydroxy-5 alpha-pregnan-11,20-dione), and 5 beta-pregnanediol (5 beta-pregnan-3 alpha,20 alpha-diol) on food intake. In non-food deprived male rats, all four steroids increased the consumption of a palatable diet. For pregnanolone (1-10 mg/kg), hyperphagia was found at lower doses than its anxiolytic effect (5-10 mg/kg) as determined using the elevated plus maze test. The presumed steroid antagonists, isopregnanolone (3 beta-hydroxy-5 alpha-pregnan-20-one) (10 mg/kg) and pregnenolone sulfate (2 mg/kg), and the BDZ antagonist, Ro15-1788 (20 mg/kg), did not reverse the hyperphagic effect of pregnanolone. Picrotoxin, a GABAA receptor antagonist, dose dependently and at a subconvulsive dose (1.5 mg/kg), reversed the hyperphagic effect of pregnanolone and alphaxalone, but had no effect on allopregnanolone- and 5 beta-pregnanediol-induced hyperphagia. These results indicate that the hyperphagic effects of pregnanolone and alphaxalone are mediated by the GABAA receptor but not by direct interaction with BDZ receptors. However, allopregnanolone- and 5 beta-pregnanediol-induced hyperphagia may be mediated by other receptor systems. Because some 3 alpha-hydroxylated pregnane steroids are endogenous progesterone metabolites, they may play an important role in appetite control.

Animals↗

Binding of 1,4-benzodiazepines to a novel [3H]Ro15-4513 binding site in the rat spinal cord.

An alpidem-insensitive benzodiazepine binding site in the rat spinal cord has recently been identified in our laboratory. We report here the binding of 23 1,4-benzodiazepines to this site using [3H]Ro15-4513 (ethyl-8-azido-6-dihydro-5-methyl-4H-imidazo[1,2- a][1,4]benzodiazepine-3-carboxylate) in the presence of 65 microM alpidem (6-chloro-2-(4-chlorophenyl)-N,N- dipropylimidazo[1,2-a]pyridine-3-acetamide). This binding site displays a wide affinity for 1,4-benzodiazepines, most of which show much higher affinity for benzodiazepine receptors in various brain regions and transfected cell systems. The highest affinity ligands are: brotizolam (1-bromo-4-(2-chlorophenyl)-9-methyl-6H-thieno[3,2- f][1,2,4]triazolo[4,3-a][1,4]diazepine) (4.3 nM), Ro15-4513 (5.0 nM), Ro42-8773 (7-chloro-3-[3-(cyclopropylmethoxy)-1-propynyl]-4,5-dihydro- 5-methyl-6H-imidazo[1,5-a][1,4]benzodiazepine-6-one) (5.7 nM), Ro16-6028 (t-butyl (s)-8-bromo-11,12,13,13a-tetrahydro-9-oxo-9H- imidazo[1,5-a][1,4]benzodiazepine-1-carboxylate) (5.9 nM) and triazolam (8-chloro-6-(2-chlorophenyl)-1-methyl-4H- [1,2,4]triazolo[4,3-a][1,4]benzodiazepine) (7.9 nM). The structural feature common to these compounds is an imidazo- or triazolo-ring on the 1- and 2-position of the benzodiazepine. However, the presence of this feature does not guarantee high affinity binding as Ro15-1788 (8-fluoro-5,6-dihydro-5-methyl-6-oxo-4H-imidazo[1,5- a][1,4]benzodiazepine-3-carboxylic acid ethyl ester) (100 nM) and Ro23-0364 (6-[2-chlorophenyl]-4H- imidazo[1,5-a][1,4]benzodiazepine-3-carboxamide) (360 nM) display much lower affinity for this site. Studies are currently underway to investigate the functional significance of this unusual benzodiazepine binding site.

Affinity Labels↗

Evaluation of preoperative cardiac risk index values in patients undergoing vaginal surgery.

OBJECTIVE: Our purpose was to evaluate the Goldman and the New York Heart Association cardiac risk index values in a female surgical population and to evaluate age, hypertension, ischemic heart disease, glucose intolerance, cardiac arrhythmia, and estrogen replacement therapy as risk factors for perioperative cardiac morbidity in older women undergoing major vaginal surgery. STUDY DESIGN: A retrospective analysis was performed of perioperative cardiac morbidity in consecutive patients undergoing elective vaginal surgery between August 1987 and October 1993. RESULTS: Four hundred six patients were entered in the study. Eight patients had perioperative cardiac morbidity. The Goldman cardiac risk index and the New York Heart Association functional classification of heart disease were not significant indicators of perioperative cardiac morbidity in this group of patients. In the postmenopausal subgroup of 168 patients hypertension (p = 0.033) and ischemic heart disease (p = 0.004) were statistically significant risk factors for perioperative cardiac morbidity. Glucose intolerance, cardiac arrhythmia, and estrogen replacement therapy were not significant predictors. CONCLUSION: The Goldman cardiac risk index and the New York Heart Association functional classification of heart disease are of questionable utility in a female surgical population undergoing elective vaginal surgical procedures. Hypertension and ischemic heart disease are risk factors for perioperative cardiac morbidity in a postmenopausal subgroup of these patients.

Age Factors↗

A behaviorally selective class of thiophene-containing benzodiazepine receptor ligands.

In a continued effort to probe the role of the aromatic rings in classical 1,4-benzodiazepine (BDZ) ligand pharmacology, a series of new thiophene-containing benzodiazepine receptor (BDZR) ligands were synthesized. As a first step in determining the binding profile and selectivity to BDZR functional subtypes, the affinities in two central nervous system (CNS) regions, cerebellum, in which a single 'Type I' BDZR could be labeled; and spinal cord, in which we have previously demonstrated some receptor heterogeneity, were determined. These compounds were also assessed for their compliance with a recently developed three dimensional pharmacophore for recognition and activation of the 'Type I' BDZR, using the techniques of computational chemistry. The computations showed all ligands synthesized fulfilled the minimum requirements for recognition, further validating the current pharmacophore. Using the criteria for activation, the new ligands were all predicted to be agonists at the cerebellar 'Type I' BDZR. Since the compounds showed reasonable affinity, the behavioral profile of one of them at five in vivo endpoints was determined. This compound demonstrated more behavioral selectivity than the typical 1,4-BDZ ligand. While they fulfilled the requirements for agonist activity at the 'Type I' BDZR, these ligands showed significantly greater delocalization in the electron density distribution in the lowest unoccupied molecular orbital (LUMO), so that either aromatic ring could serve as an electron accepting site, not just the one comparable to the more classical BDZR agonist, flunitrazepam. It is possible that the ability of the second ring in the tested compound (5a) to also function as an electron acceptor can affect the recognition and activation of other receptor types leading to the more discriminate behavioral profile of this thiophene analog compared to flunitrazepam.

Animals↗

Resolving receptor heterogeneity using Fourier-derived affinity spectrum analysis and LIGAND: benzodiazepine receptors in the rat spinal cord.

In the present study, we combined a powerful and novel receptor binding data analysis technique. Fourier-derived affinity spectrum analysis (FASA), with the nonlinear regression analysis program LIGAND to resolve benzodiazepine receptor heterogeneity in rat spinal cord. With FASA, we identified three distinct [3H]Ro15-1788 binding populations: two high-affinity sites (0.4 and 5 nM) for the radioligand and a lower-affinity site (150 nM) that is insensitive to the imidazopyridine alpidem. With the affinities for the radioligand determined with FASA, the Ki values of 13 competing ligands were calculated with LIGAND. All of the ligands studied displayed the highest affinity for site 1 (the highest-affinity [3H]Ro15-1788 binding site), with the exception of AHR 11797. Site 2 had high affinity for Ro15-1788, lower affinity for flunitrazepam and beta-CCM and very low, but measurable, affinity for zolpidem. The alpidem-insensitive binding site, studied in isolation by performing competitive binding assays in the presence of 65 microM alpidem, showed relatively low affinity for all of the ligands studied, and its physiological relevance is not yet known.

Animals↗