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Biomedical subjects

J L Walsh

Publications and source records attributed to J L Walsh.

At least 19 recordsLinked to original sources

Pharmacokinetics and pharmacodynamics of inhaled versus intravenous morphine in healthy volunteers.

BACKGROUND: A new pulmonary drug delivery system produces aerosols from disposable packets of medication. This study compared the pharmacokinetics and pharmacodynamics of morphine delivered by an AERx prototype with intravenous morphine. METHODS: Fifteen healthy volunteers were enrolled. Two subjects were administered four inhalations of 2.2 mg morphine each at 1-min intervals or 4.4 mg over 3 min by intravenous infusion. Thirteen subjects were given twice the above doses, i.e., eight inhalations or 8.8 mg intravenously over 7 min. Arterial blood sampling was performed every minute during administration and at 2, 5, 7, 10, 15, 20, 45, 60, 90, 120, 150, 180, and 240 min after administration. The effect of morphine was assessed by measuring pupil diameter and ventilatory response to a hypercapnic challenge. Pharmacokinetic and pharmacodynamic analyses were performed simultaneously using mixed-effect models. RESULTS: The pharmacokinetic data after intravenous administration were described by a three-exponent decay model preceded by a lag time. The pharmacokinetic model for administration by inhalation consisted of the three-exponent intravenous pharmacokinetic model preceded by a two-exponent absorption model. The authors found that, with administration by inhalation, the total bioavailability was 59%, of which 43% was absorbed almost instantaneously and 57% was absorbed with a half-life of 18 min. The median times to the half-maximal miotic effects of morphine were 10 and 5.5 min after inhalation and intravenous administration, respectively (P < 0.01). The pharmacodynamic parameter ke0 was approximately 0.003 min-1. CONCLUSIONS: The onset and duration of the effects of morphine are similar after intravenous administration or inhalation via this new pulmonary drug delivery system. Morphine bioavailability after such administration is 59% of the dose loaded into the dosage form.

Administration, Inhalation↗

Immunologic localization and kinetic characterization of a Na+/Ca2+ exchanger in neuronal and non-neuronal cells.

The plasma membrane Na+/Ca2+ exchanger is believed to play a role in the regulation of Ca2+ fluxes in neurons, though the lack of specific inhibitors has limited the delineation of its precise contribution. We recently reported the development of antibodies against a 36-kDa brain synaptic membrane protein which immunoprecipitated exchanger activity from solubilized membranes. In the present study we examined the kinetics of the Na+/Ca2+ exchanger in primary neurons in culture, in a neuronal hybrid cell line (NCB-20), and in a fibroblast-like cell line (CV-1) to see whether the level of exchanger activity correlated with the degree of immunostaining produced by our antibodies. The Vmax was determined for each cell type and found to be highest in primary neurons. Exchanger activity increased in primary neurons between days 1 and 6 in culture, but no such time-dependent change occurred in either of the cell lines. Immunoblot analysis of the three cell types probed with the anti-36-kDa protein antibodies revealed significantly greater immunostaining in the primary neurons compared with the other two cell types. Intensity of staining of neurons also increased significantly between days 1 and 6 in culture. Immunocytochemistry showed significant labelling of the primary neurons on the neuritic processes and points of contact between cells. The NCB-20 and CV-1 cells showed considerably lower levels of immunoreactivity. The antibodies immunoextracted approximately 90% of the exchanger activity in the primary neurons and approximately 70 and 50% of the activity in NCB-20 and CV-1 cells respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A fluorimetric assay for the determination of anthranilic acid in biological materials.

In the brain, anthranilic acid may serve as a bioprecursor of the endogenous excitotoxin quinolinic acid. Using a novel isolation procedure followed by HPLC and fluorimetric detection, we have developed an assay which is sufficiently sensitive to determine anthranilic acid in small (> or = 3 mg) samples of rat brain tissue (sensitivity limit: 50 fmol). Anthranilic acid was identified by its retention time in three chromatographic systems. The assay was applied to the measurement of anthranilic acid in rat serum (131 +/- 7 nM) and urine (9.9 +/- 118 nmol/mg creatinine) and in several organs which contained between 0.5 and 2 pmol anthranilic acid/mg protein. Only small differences in anthranilic acid content were found among 10 regions of the rat brain. Neuronal depletion induced by an intrastriatal excitotoxin injection resulted in an increase in anthranilic acid levels, suggesting a nonneuronal localization of the metabolite in the brain. This assay should provide an improved means for the investigation of the neurobiology of anthranilic acid.

Animals↗

4-Chloro-3-hydroxyanthranilate inhibits quinolinate production in the rat hippocampus in vivo.

Quinolinic acid (QUIN) is a potential pathogen in a variety of excitotoxic and neuroviral brain diseases. In the present study, the ability of the QUIN synthesis inhibitor 4-chloro-3-hydroxyanthranilic acid to attenuate the production of QUIN was assessed in the hippocampus of awake rats. To this end, QUIN's immediate bioprecursor 3-hydroxyanthranilic acid (30 microM) was applied through a microdialysis probe, and QUIN production was monitored hourly in the perfusate. After 3 h, 4-chloro-3-hydroxyanthranilic acid (3 microM-3 mM) was included in the perfusion medium, and dialysis was continued for another 3 h. The drug caused dose-dependent inhibition of QUIN neosynthesis, with an apparent IC50 value of 32 microM. Discontinuation of drug administration, with continued perfusion of 3-hydroxyanthranilic acid, revealed that the drug effect was reversible. Intravenous application of 4-chloro-3-hydroxyanthranilic acid (14 mg/kg) resulted in a significant decrease in extracellular QUIN, reaching a nadir of 67% of saline-treated controls after 3 h. The data indicate that both intracerebral and systemic administration of 4-chloro-3-hydroxyanthranilic acid effectively interferes with QUIN production in the rat brain. The results suggest that QUIN synthesis inhibitors such as 4-chloro-3-hydroxyanthranilic acid may become of value in brain diseases that are caused by hyperphysiological quantities of QUIN.

3-Hydroxyanthranilate 3,4-Dioxygenase↗

The morality of induced delivery of the anencephalic fetus prior to viability.

In situations where anencephaly is diagnosed and where the mother's life or health is threatened Roman Catholic hospitals are faced with the dilemma of waiting until viability before inducing the fetus, thus potentially putting the mother at further risk. According to most Roman Catholic ethicists, induced delivery before viability is contrary to the Church's prohibition of direct killing of the innocent. The authors propose for discussion a reconsideration of this position in the case of the anencephalic fetus and conclude that taking the life of such a fetus does not constitute an attack on its personal dignity and therefore is morally permissible.

Anencephaly↗

Evaluation of cross-contamination on automatic viscera removal equipment.

Contamination of poultry carcasses by fecal or ingested material is a major problem in the processing of poultry products. It was determined that the automatic equipment used to process uncontaminated carcasses could be used to clean and reprocess contaminated carcasses and significantly reduce the manual labor required to reprocess these carcasses. The potential for cross-contamination of the automatic viscera removal equipment was tested by microbiological evaluation, and it was determined that cross-contamination by this equipment was not a problem.

Animals↗

Association of glycolytic enzymes with the cytoskeleton.

The diverse physical associations of the glycolytic enzymes with structural components of the cell suggest that the glycolytic enzymes are not entirely soluble in the cell. The relatively low affinities of the associations are likely responsible for the apparently transient interactions. The binding phenomenon is suggested to regulate metabolism through changes in enzymatic activity and facilitates localized enrichment of the enzymes.

Amino Acid Sequence↗

4-halo-3-hydroxyanthranilic acids: potent competitive inhibitors of 3-hydroxy-anthranilic acid oxygenase in vitro.

The mechanism of action of three potent inhibitors of 3-hydroxyanthranilic acid oxygenase (3HAO), the enzyme responsible for the production of the endogenous excitotoxin quinolinic acid, was examined in vitro. Using either liver homogenate or purified 3HAO, and following the rapid synthesis of the immediate enzymatic product alpha-amino-beta-carboxymuconic acid omega-semialdehyde spectrophotometrically, 4-halogenated (F, Cl, Br) 3-hydroxyanthranilic acids were found to inhibit enzymatic activity in a reversible fashion. Because of the very tight binding of the drugs to 3HAO, reversibility was detected only after warming the protein-inhibitor complexes at 37 degrees. Further studies showed that enzyme inhibition was competitive in nature (apparent Ki values: 190, 6 and 4 nM for the F-, Cl- and Br-compounds, respectively), and suggested that the drugs are metabolized by the enzyme. Specific, reversible, and tightly binding 3HAO inhibitors can be expected to become valuable tools for the study of quinolinate neurobiology. The drugs could also be of interest for the diagnostics and therapeutics of brain diseases which have been speculatively linked to a pathological overabundance of quinolinic acid.

3-Hydroxyanthranilic Acid↗

Glycolytic enzyme interactions with tubulin and microtubules.

Interactions of the glycolytic enzymes glucose-6-phosphate isomerase, aldolase, glyceraldehyde-3-phosphate dehydrogenase, triose-phosphate isomerase, enolase, phosphoglycerate mutase, phosphoglycerate kinase, pyruvate kinase, lactate dehydrogenase type-M, and lactate dehydrogenase type-H with tubulin and microtubules were studied. Lactate dehydrogenase type-M, pyruvate kinase, glyceraldehyde-3-phosphate dehydrogenase, and aldolase demonstrated the greatest amount of co-pelleting with microtubules. The presence of 7% poly(ethylene glycol) increased co-pelleting of the latter four enzymes and two other enzymes, glucose-6-phosphate isomerase, and phosphoglycerate kinase with microtubules. Interactions also were characterized by fluorescence anisotropy. Since the KD values of glyceraldehyde-3-phosphate dehydrogenase, pyruvate kinase and lactate dehydrogenase for tubulin and microtubules were all found to be between 1 and 4 microM, which is in the range of enzyme concentration in cells, these enzymes are probably bound to microtubules in vivo. These observations indicate that interactions of cytosolic proteins, such as the glycolytic enzymes, with cytoskeletal components, such as microtubules, may play a structural role in the formation of the microtrabecular lattice.

Animals↗

Heteromerous interactions among glycolytic enzymes and of glycolytic enzymes with F-actin: effects of poly(ethylene glycol).

Interactions of glucose-6-phosphate isomerase (D-glucose-6-phosphate ketol-isomerase, EC 5.3.1.9), aldolase (D-fructose-1,6-bisphosphate D-glyceraldehyde-3-phosphate lyase, EC 4.1.2.13), glyceraldehyde-3-phosphate dehydrogenase (D-glyceraldehyde-3-phosphate:NAD+ oxidoreductase (phosphorylating), EC 1.2.1.12), triose-phosphate isomerase (D-glyceraldehyde-3-phosphate ketol-isomerase, EC 5.3.1.1), phosphoglycerate mutase (D-phosphoglycerate 2,3-phosphomutase, EC 5.4.2.1), phosphoglycerate kinase (ATP:3-phospho-D-glycerate 1-phosphotransferase, EC 2.7.3), enolase (2-phospho-D-glycerate hydro-lyase, EC 4.2.1.11), pyruvate kinase (ATP:Pyruvate O2-phosphotransferase, EC 2.7.1.40) and lactate dehydrogenase [S)-lactate:NAD+ oxidoreductase, EC 1.1.1.27) with F-actin, among the glycolytic enzymes listed above, and with phosphofructokinase (ATP:D-fructose-6-phosphate 1-phosphotransferase, EC 2.7.1.11) were studied in the presence of poly(ethylene glycol). Both purified rabbit muscle enzymes and rabbit muscle myogen, a high-speed supernatant fraction containing the glycolytic enzymes, were used to study enzyme-F-actin interactions. Following ultracentrifugation, F-actin and poly(ethylene glycol) tended to increase and KCl to decrease the pelleting of enzymes. In general, the greater part of the pelleting occurred in the presence of both F-actin and poly(ethylene glycol) and the absence of KCl. Enzymes that pelleted more in myogen preparations than as individual purified enzymes in the presence of poly(ethylene glycol) and the absence of F-actin were tested for specific enzyme-enzyme associations, several of which were observed. Such interactions support the view that the internal cell structure is composed of proteins that interact with one another to form the microtrabecular lattice.

Actins↗

The Treponema pallidum haemagglutination (TPHA) test in biological false positive and leprosy sera.

The Treponema pallidum haemagglutination (TPHA) test was carried out on 274 sera known to show biological false positive reactions to reagin tests for syphilis. The Treponema pallidum immunization (TPI) and fluorescent treponemal antibody absorption (FTA-ABS) tests were non-reactive on all these sera. Thirty-one or 11.3% showed reactive results in the TPHA test. Sera from 267 people who had lepromatous leprosy were also tested in the TPHA test. Fourteen sera were reactive in the TPHA, TPI, and FTA-ABS tests and were from people who had both syphilis and leprosy. Biological false positive reactions were shown by 26 of the leprosy sera, of which three or 11.5% were also reactive in the TPHA test. A further four sera in the leprosy group were reactive only in the TPHA test. The possible cause of false reactive TPHA test results is discussed. It was concluded that where reagin and TPHA tests are reactive in a person who has no history or clinical signs of syphilis, the serum should be referred for TPI and FTA-ABS testing.

Antibodies, Bacterial↗

Note on the convergence of sequences of rational functions of best approximation to a meromorphic function.

If the function f(z) is meromorphic at every finite point of the plane, analytic on C: [unk]z[unk] </= 1, there are results that can be established concerning the convergence of the sequence R(n)(z) of rational functions of each degree n of best approximation to f(z) on C. However, we need to assume certain additional conditions on the convergence of the sequence R(n)(z) itself. The results generalize to more general sets C and to more general functions.

Journal Article↗