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Biomedical subjects

R A Mueller

Publications and source records attributed to R A Mueller.

At least 73 records · Page 4Linked to original sources

Regionally specific neural adaptation of beta adrenergic and 5-hydroxytryptamine2 receptors after antidepressant administration in the forced swim test and after chronic antidepressant drug treatment.

In the present investigation, experiments were performed in order to determine whether antidepressants are capable of inducing regionally specific adaptation of beta adrenergic and 5-hydroxytryptamine2 (5-HT2) receptors after chronic administration or when combined with the forced swim test. The drugs tested were imipramine, amitriptyline, pargyline and nomifensine. The regional pattern of beta adrenergic or 5-HT2 receptor binding changes induced after chronic treatment with these antidepressants was not uniform. All of the drugs reduced [3H]dihydroalprenolol binding to cortical membranes after chronic treatment but only two, imipramine and pargyline, did so in hippocampus. All of the antidepressants reduced cortical, but not hippocampal, beta adrenergic receptor binding after 2 days of treatment, indicating that the rate of antidepressant-induced neural adaptation is regionally specific. All of the drugs, except nomifensine, induced down regulation of both cortical and hippocampal 5-HT2 receptors after chronic treatment, as measured by [3H]ketanserin binding. The forced swim test accelerated the reduction of [3H] dihydroalprenolol binding in hippocampus induced by imipramine and pargyline while producing no further effect on cortical beta adrenergic receptors. The down-regulation of hippocampal, but not cortical 5-HT2 receptors by imipramine and pargyline was also facilitated in rats processed in the forced swim test. These results provide further support for the view that the forced swim antidepressant drug screen may be of heuristic value as a model of the adaptive neural mechanisms that accompany chronic antidepressant drug treatment. Furthermore, these data provide evidence that multiple neural mechanisms may be involved in the adaptive changes after antidepressant drug treatment.

Amitriptyline↗

Assessment of purine-dopamine interactions in 6-hydroxydopamine-lesioned rats: evidence for pre- and postsynaptic influences by adenosine.

Lesch-Nyhan syndrome involves disorders of both purine and dopamine metabolism. Neonatal lesioning of dopaminergic neurons with 6-hydroxydopamine (6-OHDA) has been proposed as a rodent model of the dopamine deficiency in this childhood disorder. In the present studies, the functional interaction between purines and dopamine was examined in adult rats which received 6-OHDA lesions either as neonates or as adults. Even though dopamine levels were decreased by at least 92%, both neonatal- and adult-6-OHDA-lesioned rats had normal hypoxanthine-guanine phosphoribosyltransferase function and purine nucleotide levels (adenosine, ADP, ATP and AMP), indicating that hypoxanthine-guanine phosphoribosyltransferase is not localized only to dopaminergic neurons in striatum. However, the 6-OHDA-lesioned animals were supersensitive to the locomotor activating effects of the adenosine antagonist, theophylline, with the response being greater in adult-6-OHDA-lesioned rats. This effect was presynaptic to dopaminergic neurons as indicated by alpha-methyltyrosine blockade of the theophylline response and its reinstatement by L-dopa. The presynaptic nature of this action of theophylline was supported further by a lack of interaction between theophylline and the direct acting D1- and D2-dopamine agonists, SKF-38393 and LY-171555, respectively. After systemic administration of SKF-38393 or L-dopa, central microinjection of the adenosine agonists, 2-chloroadenosine or 5'-N-ethylcarboxamide adenosine, were effective in preventing self mutilation induced by these dopamine agonists in neonatally lesioned rats. Relative potencies of the adenosine agonists for A1 and A2-adenosine receptors suggested involvement of an A2-adenosine receptor in this action.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗

SC-39026, a specific human neutrophil elastase inhibitor.

SC-39026, (+/-) 2-chloro-4-(1-hydroxyoctadecyl)benzoic acid, inhibits human neutrophil elastase with an IC50 of 0.5 microM (KI of 1.5 microM). Its inhibition of elastase is reversible and noncompetitive at low concentrations (0.5-1.25 microM). Inhibition is "mixed" at higher inhibitor concentrations. SC-39026 is inactive against hog pancreatic elastase, bovine alpha-chymotrypsin and Pseudomonas aeruginosa elastase, but does inhibit human neutrophil cathepsin G with an IC50 of approximately 2.5 microM. Neutrophil elastases isolated from rat, hamster, rabbit and hog are also inhibited by SC-39026.

Animals↗

The antinociceptive effects of prostaglandin antagonists in the rat.

This study examined the antinociceptive effects of two prostaglandin antagonists, SC-25469 and SC-19220 in the rat. SC-25469 and SC-19220 inhibited acetic acid-induced writhing with ED50 s of 6.9 and 6.8 mg/kg p.o., respectively. When compared to other analgesics, the rank order of potency in the writhing test was morphine greater than pentazocine = U-50,488 greater than SC-25469 = SC-19220 greater than ibuprofen greater than aspirin greater than acetaminophen. SC-25469 (150 and 300 mg/kg p.o.) and SC-19220 (50-300 mg/kg p.o.) also suppressed the behavioral response to s.c. injection of formalin, as did aspirin (50-150 mg/kg p.o.), ibuprofen (25-100 mg/kg p.o.) and acetaminophen (300 mg/kg p.o.). However, the suppression was not of the magnitude observed after administration of morphine (ED50: 0.9 mg/kg s.c.), pentazocine (ED50: 2.4 mg/kg s.c.) or U-50,488 (ED50: 0.8 mg/kg s.c.). This study demonstrates the antinociceptive properties of prostaglandin antagonists in two distinct tests of nociception.

Acetaminophen↗

Enhanced muscimol-induced behavioral responses after 6-OHDA lesions: relevance to susceptibility for self-mutilation behavior in neonatally lesioned rats.

Adult rats lesioned with 6-hydroxydopamine (6-OHDA), either as neonates or as adults, demonstrated increased turning, compared to unlesioned controls, when muscimol was unilaterally microinjected into the substantia nigra reticulata (SNR). At the higher doses of muscimol, the lesioned rats were so intensely lateralized that circling was impeded. These data suggest a functional supersensitivity of receptors associated with GABA function in the SNR of 6-OHDA-lesioned rats. When 30 ng muscimol was administered bilaterally into the SNR, self-mutilation behavior (SMB) was observed in 2/11 of the control unlesioned rats, in 0/8 adult 6-OHDA-lesioned rats, and in 11/11 of the neonatally-lesioned rats tested. The ability of muscimol to produce SMB in the rats lesioned as neonates was dose related. Behavioral observations indicated that behaviors associated with SMB (self-biting and taffy pulling) were present in neonatal, but not adult lesioned rats. Behavioral responses to dopamine agonist administration were also different between rats lesioned as neonates and those lesioned as adults with 6-OHDA. These data support the view that lesions of dopaminergic neurons cause an increased functional responsiveness of receptors acted upon by muscimol in the SNR, and that the increased susceptibility for SMB in neonatally lesioned rats is determined by neurons distal to the GABA receptor complex in the SNR.

Animals↗

Changes in plasma atrial natriuretic peptide--immunoreactivity in patients undergoing coronary artery bypass graft placements.

Plasma atrial natriuretic peptide immunoreactivity (IrANP) was measured before, during, and after cardiopulmonary bypass for coronary artery bypass graft placement. Eight subjects scheduled for elective operation had in the premedicated preoperative state slightly elevated IrANP compared to controls. Neither induction of anesthesia with a high dose narcotic/non-depolarising relaxant/diazepam technique nor cardiopulmonary bypass changed IrANP significantly. Mixed venous and arterial IrANP increased immediately after discontinuing bypass, and remained elevated 1 h later. Because ANPs affect peripheral resistance as well as urinary sodium loss, the post-bypass elevations in these peptides may contribute to cardiovascular and diuretic effects after cardiopulmonary bypass.

Anesthesia↗

Mechanism of attenuated hydrochlorothiazide response during indomethacin administration.

Indomethacin antagonizes the natriuretic and chloruretic response to hydrochlorothiazide in most studies. Neither the mechanism nor nephron site of this antagonism has been determined. To identify sites and potential mechanisms, cortical micropuncture was performed during hydrochlorothiazide treatment in control and indomethacin rats. Indomethacin reduced (P less than 0.005) FeCl from 5.20 +/- 0.49% to 2.26 +/- 0.49% (mean +/- SE). MAP, CIn, and plasma volume were not different between groups. SNGFR and fractional proximal fluid and chloride delivery were not different between groups. Fractional chloride delivery to early distal tubules was 10.8 +/- 0.4% in control but 6.2 +/- 0.3% in indomethacin rats (P less than 0.001). Calculated loop chloride reabsorption was greater in indomethacin than control rats during hydrochlorothiazide administration (41.0 +/- 1.6% vs. 34.3 +/- 2.3%; P less than 0.05). Fractional chloride delivery to late distal tubules was 7.8 +/- 0.7% in control and 4.6 +/- 0.3% in indomethacin rats (P less than 0.005), but distal tubule chloride reabsorption was not different between groups. Papillary tissue chloride was less in control than indomethacin rats during hydrochlorothiazide (P less than 0.05). Urinary PGE2 excretion was reduced (P less than 0.001) by indomethacin during hydrochlorothiazide. Thus indomethacin induced reductions in hydrochlorothiazide response result in part from increased chloride reabsorption in the loop segment. This suggests indomethacin antagonizes hydrochlorothiazide by reducing chloride delivery to hydrochlorothiazide's site of action in the distal tubule rather than by effects of indomethacin on hydrochlorothiazide pharmacokinetics.

Animals↗

Neonatal and adult 6-hydroxydopamine-induced lesions differentially alter tachykinin and enkephalin gene expression.

The present investigation examined the effects of neonatal and adult 6-hydroxydopamine (6-OHDA)-induced lesions of dopaminergic neurons on opioid and tachykinin peptides and their gene expression in the rat basal ganglia. This work was undertaken to determine if changes in these neuropeptide systems were contributing to the differing behavioral responses observed between neonatally and adult-lesioned rats after dopamine agonist administration. [Met5]Enkephalin (ME) content was increased in striatal tissue from both 6-OHDA-lesioned groups when compared with unlesioned controls. Dynorphin-A (1-8) content was not altered by the 6-OHDA lesions. The tachykinin peptides substance P and neurokinin A were significantly decreased in level in the striatum and substantia nigra of neonatally lesioned rats, but not in the adult-lesioned rats, when compared with unlesioned controls. Proenkephalin mRNA abundance (quantified by an RNA-cDNA hybridization technique) and precursor level (as reflected by cryptic ME content) were increased in the striatum of both neonatally and adult-lesioned rats. The abundance of preprotachykinin mRNA coding for the tachykinin peptides was markedly decreased in the neonatally lesioned rats, whereas only a small reduction was observed in the adult-lesioned rats. These results suggest that destruction of dopamine-containing terminals with 6-OHDA elevates the level of ME by accelerating transcriptional and/or translational processes; conversely, the reduced content of tachykinins in neonatally lesioned rats may be due to a reduction in such processes. Thus, preproenkephalin-A and preprotachykinin gene expression are differentially regulated after lesioning of catecholamine-containing neurons, an observation suggesting a close functional relationship among these neurotransmitter systems. Furthermore, of the peptides studied, only levels of the tachykinin peptides were differentially altered in the striatum and substantia nigra of the neonatally lesioned rats compared with adult-lesioned rats; therefore, these peptides may be associated with the distinctive behavioral differences between neonatally and adult 6-OHDA-lesioned rats given dopamine agonists.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Respiratory stimulant effects by TRH into the mesencephalic region in the rat.

Thyrotropin-releasing hormone (TRH) has previously been found to have a potent respiratory stimulant effect following intracerebroventricular administration. One part of the respiratory response, the shortening of inspiratory time, seems to be elicited from the raphe obscurus in the medulla. The prominent tachypnoea however is not elicited after local injections in the medullary region. In the present paper a micro-injection technique was employed to study respiratory actions of TRH in lightly anaesthetized rats kept in a whole body plethysmograph. Thyrotropin-releasing hormone in a dose of 100 ng per 0.5 microliter was found to induce an immediate tachypnoea after injections into the region of the interpeduncular nucleus of the midbrain. No effects on systemic circulation were seen. More rostral or dorsal sites of injection were without effect. The localization of the sites responsible for respiratory stimulation corresponds to the reticular activating system where electrical stimulation induces hyperventilation in cats. The tachypnoea might be closely related to the well known arousal effects of TRH.

Animals↗

Hypothyroidism delays ischemia-induced contracture and adenine nucleotide depletion in rat myocardium.

Isolated perfused paced hearts from rats rendered hypothyroid by chronic administration of propylthiouracil have a delayed onset of ischemia-induced myocardial contracture in contrast to hearts from control rats. In addition, the time to reach maximum contracture is delayed, and the magnitude of the contracture pressure is reduced. Preischemia myocardial adenosine triphosphate (ATP) values in the hypothyroid rat hearts are similar to those of control, but the rate of decrease in ATP is slower in the hearts of hypothyroid rats. Thus, it appears that in the hypothyroid state the development of ischemic contracture is associated with a slower fall of ATP.

Adenine Nucleotides↗

Relationship of androgenic activity to splanchnic insulin metabolism and peripheral glucose utilization in premenopausal women.

The importance of androgenic activity in mediating the effects of obesity and body fat topography on splanchnic insulin metabolism and peripheral insulin sensitivity was studied in 19 nonhirsute premenopausal women with a wide range of ideal body weight [percent ideal body weight (% IBW), 78-202%] and body fat distribution pattern [waist to hip girth ratio (WHR), 0.67-0.91]. Turnover kinetics of peripheral plasma C-peptide and insulin were measured, and estimates of pancreatic insulin production (PIP) and the hepatic extraction fraction (HEF) were calculated. The peripheral insulin sensitivity index (M/I) was determined during an euglycemic insulin clamp study. Androgenic activity was assessed by estimating the plasma level of sex hormone-binding globulin (SHBG) and percentage of free testosterone (% FT). After iv glucose stimulation, PIP ranged from 40-254 mU/min X m2 and correlated highly with % IBW (r = 0.78; P less than 0.01). Insulin HEF ranged from 5-69% of the pancreatic production and was inversely proportional to WHR (r = -0.60; P less than 0.01). Increasing WHR also correlated with the diminution in M/I (r = -0.47; P less than 0.05), which, in turn, correlated with the decline in the HEF of insulin (r = 0.60; P less than 0.01). Since PIP, HEF, and M/I correlated with SHBG and % FT, and since the degree of androgenic activity correlated with % IBW and WHR, partial regression analysis was performed. After adjusting for the effects of SHBG and % FT, the relationship between % IBW and PIP remained unaltered, whereas the correlation between WHR and HEF or M/I and their relationship to each other were either markedly reduced or became insignificant. Thus, in premenopausal women, the increase in pancreatic insulin production with increasing weight is independent of the degree of androgenic activity. On the other hand, the decline in hepatic insulin extraction and diminution in peripheral insulin sensitivity with upper body fat localization are in part mediated by increased androgenic activity. This association may account for the pronounced hyperinsulinemia and insulin resistance characteristic of this form of obesity.

Adipose Tissue↗

6-hydroxydopamine treatments enhance behavioral responses to intracerebral microinjection of D1- and D2-dopamine agonists into nucleus accumbens and striatum without changing dopamine antagonist binding.

Behavioral responses to D1 and D2-dopamine agonists are enhanced when these agonists are administered systemically to 6-hydroxydopamine (6-OHDA)-lesioned rats. In the present investigation, microinjection of SKF-38393, a D1-dopamine agonist, into the nucleus accumbens of adult rats lesioned as neonates with 6-OHDA produced a dose-related increase in locomotor activity that was enhanced markedly compared to control. LY-171555, a D2-agonist, elicited less locomotor activity than did SKF-38393 after microinjection into this site. Administration of SKF-38393 or LY-171555 into the nucleus accumbens did not increase locomotion in unlesioned rats at the doses administered to lesioned animals. In adult-6-OHDA-lesioned rats, microinjection of SKF-38393 into the nucleus accumbens also increased locomotion more than did LY-171555. As described previously, systemic administration of SKF-38393 produced little locomotion in adult-6-OHDA-lesioned rats, whereas LY-171555 produced a markedly enhanced response. Administration of SKF-38393 or LY-171555 into the caudate nucleus of neonatally and adult-6-OHDA-lesioned rats produced negligible locomotor activity, but did induce stereotypic behaviors similar to those observed after systemic treatment with these drugs. Stereotypic behaviors occurred to a greater degree in the 6-OHDA-lesioned rats than in unlesioned controls. A regional specificity for certain behaviors induced by dopamine agonist administration was observed. In spite of the enhanced behavioral responses of D1 and D2-dopamine agonists after microinjection into the brain of 6-OHDA-lesioned rats, binding of [3H]spiperone (D2-receptor antagonist ligand) and [3H]SCH 23390 (D1-receptor antagonist ligand) to tissue from striatum and nucleus accumbens was not altered significantly. In contrast to this lack of change in binding characteristics in 6-OHDA-lesioned rats, blockade of dopaminergic transmission with haloperidol treatment caused an elevation of [3H]spiperone binding sites in striatum without affecting affinity for the site. However, chronic haloperidol treatment did not alter significantly [3H]SCH 23390 binding to striatal membranes. These latter findings suggest that chronic dopamine receptor blockade need not produce the same adaptive mechanisms as destruction of dopamine-containing neurons. Thus, a change in receptor characteristics as measured by dopamine antagonist binding does not account for the behavioral supersensitivity observed after D1- and D2-dopamine agonist administration to neonatally or adult-6-OHDA-treated rats.

2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-ben↗

Behavioral and neurochemical responses to haloperidol and SCH-23390 in rats treated neonatally or as adults with 6-hydroxydopamine.

Behavioral and neurochemical effects of haloperidol (D2-dopamine antagonist) and SCH-23390 (D1-dopamine antagonist) were examined in unlesioned rats and in rats lesioned with 6-hydroxy-dopamine (6-OHDA) as adults or as neonates. In unlesioned rats, chronic haloperidol treatment (15 days) resulted in an increase in D2-dopamine receptor density, as measured with [3H]spiperone, in the nucleus accumbens and in the caudate-putamen. Rats treated as adults with 6-OHDA responded to chronic haloperidol similarly to controls. However, adult rats treated with 6-OHDA as neonates did not exhibit an increase in [3H]spiperone binding in response to chronic haloperidol treatment. Control and adult 6-OHDA-treated rats given haloperidol exhibited a profound akinesia. In contrast, rats that received 6-OHDA as neonates and were tested as adults did not display a significant behavioral response to haloperidol at doses as high as 2 mg/kg. Results similar to those for haloperidol were also found for SCH-23390. Chronic treatment (15 days) with this D1-dopamine antagonist increased [3H]SCH-23390 binding in the nucleus accumbens and caudate-putamen in unlesioned rats as well as in adult 6-OHDA-treated rats. However, after neonatal 6-OHDA treatment, an elevation in [3H]SCH-23390 binding did not occur after chronic SCH-23390 treatment. SCH-23390 produced akinesia similar to that produced by haloperidol in unlesioned and in adult 6-OHDA-treated rats. In contrast, rats lesioned with 6-OHDA as neonates and tested as adults did not exhibit a significant behavioral response to SCH-23390 under our test conditions.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

Brainstem localization of a thyrotropin-releasing hormone-induced change in respiratory function.

When rats received microinjections of 100 ng thyrotropin-releasing hormone (TRH) into the medial portions of the nucleus tractus solitarius and 12th nucleus or raphe obscurus, at the level of the obex, a significant decrease in the inspiratory time was found. Examination of TRH immunocytochemistry revealed a high density of TRH-positive nerve terminals in these regions, especially the more caudal aspects. If serotonin was depleted by neonatal 5,7-dihydroxytryptamine treatment, the respiratory response of the adults to TRH appeared potentiated. Even though the neonatal 5,7-dihydroxytryptamine reduces the occurrence of TRH-positive cell bodies, TRH-positive fibers were not appreciably altered. These results are discussed with regard to a possible role of endogenous TRH in the brainstem on rhythmic respiratory activity.

5,7-Dihydroxytryptamine↗

Early postnatal administration of 5,7-dihydroxytryptamine: effects on substance P and thyrotropin-releasing hormone neurons and terminals in rat brain.

Substance P, thyrotropin-releasing hormone (TRH) and serotonin are putative neurotransmitters which have been proposed to co-exist in some brain neurons. Our previous immunocytochemical and biochemical studies have demonstrated that 85-100% of all serotonin neurons are destroyed following neonatal 5,7-dihydroxtryptamine (5,7-DHT) treatment. In this study, we have determined the effect of neonatal 5,7-DHT and desipramine (DMI) treatment on the biochemical content and immunocytochemical localization of substance P and TRH throughout the brain. Interestingly, we have observed that virtually all substance P- and TRH-immunoreactive cells in the ventral pons-medulla are destroyed by the neurotoxin. However, peptide-containing neurons in other regions were not affected. Additionally, we measured the peptide content and found that TRH is significantly decreased in the spinal cord (-50%) and pons-medulla (-20%), but not in other brain regions. Substance P content was not significantly altered in any region, even after a greater than 90% reduction of serotonin. These data indicate that the co-localized substance P and TRH forms a small proportion of the total peptide in brain.

5,7-Dihydroxytryptamine↗

Flecainide: a new antiarrhythmic drug.

Flecainide acetate is a new class 1 c antiarrhythmic drug. It slows conduction in the working myocardium and the specialized conduction system and may depress sinus node activity in patients with pre-existing sinus node disease. Its hemodynamic effects are minimal. The drug is completely absorbed and shows a half-life of 7-22 hours. Elimination is mainly through the kidneys. Flecainide is highly effective in the treatment of ventricular arrhythmias, pre-excitation syndromes and AV reentry tachycardias. Side effects are mild and consist mostly of dizziness, visual disturbances, and nervousness. They rarely require discontinuation of therapy. Proarrhythmic effects have been reported. Caution is required in patients with congestive heart failure, AV block, and/or bundle-branch block or sinus node dysfunction.

Action Potentials↗

High resolution autoradiographic determination of the topographic distribution of radioactivity in the hippocampal formation after injection of [1-14C]glucose or 2-deoxy[14C]glucose.

Using high resolution autoradiography, the accumulation of radioactivity after intravenous injection of [1-14C]glucose was measured in the corpus callosum, hippocampus, dorsal hippocampal commissure, somatosensory cortex, inferior colliculus and pontine periaqueductal grey. Autoradiograms were prepared by thaw-mounting 4 micron frozen sections on nuclear emulsion-coated slides, and were evaluated quantitatively with a computer-assisted video system for automated counting of silver grains. In all brain regions examined, silver grain densities were greater in rats killed 30 min after injection of [1-14C]glucose compared to rats killed 10 min after injection. After intravenous injection of [1-14C]glucose or 2-deoxy[14C]glucose, the relative uptake and retention of radioactivity in different hippocampal subregions was compared. Striking differences were found in the hippocampus between 2-deoxy[14C]glucose and [1-14C]glucose autoradiograms. After injection of 2-deoxy[14C]glucose, there were large variations in the uptake and retention of radioactivity among different pyramidal cell fields. The CA 3 pyramidal cell field retained considerably more radioactivity than other pyramidal cell fields after injection of 2-deoxy[14C]glucose, while after injection of [1-14C]glucose, the retention of radioactivity was similar in all pyramidal cell fields. After [1-14C]glucose injection, the dentate gyrus contained relatively high levels of radioactivity and more 14C accumulated in the granular layer, compared to the molecular layer. In contrast, after 2-deoxy[14C]glucose injection, there was uniformly less radioactivity throughout the dentate gyrus when compared to rats injected with [1-14C]glucose and there was no preferential accumulation of 2-deoxy[14C]glucose in the granular layer compared to the molecular layer.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗