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Biomedical subjects

I D Watson

Publications and source records attributed to I D Watson.

At least 55 records · Page 3Linked to original sources

An NMR compatible model for solid tumour.

An NMR model for the study of drug interactions with solid tumour is described. It is based on the use of packed cells in a simple medium. The system is capable of dealing with cellular biochemistry at a molecular level through experiments conducted in a homogeneous field by 1H spin-echo NMR spectroscopy. However, through a simple imaging technique, it is also possible to introduce a spatial element into the chemistry of the packed cells. The use of these complementary NMR methods are illustrated by the action of the cytotoxic agent doxorubicin on cellular glycolysis. A pattern of signals observed in a homogeneous field experiment following oxidative stress are duplicated in the imaging experiment to illustrate the toxins' ability to penetrate the model tumour.

Antineoplastic Agents↗

Wilson's disease presenting as acute fulminant hepatic failure.

A fatal case of fulminant hepatic failure in an adolescent is described. Post-mortem examination revealed the cause to be Wilson's Disease. This rare presentation is characterised by apparently atypical changes in copper metabolism. Wilson's Disease should be a differential diagnosis of any adolescent presenting in liver failure.

Adolescent↗

Comparison of microscale ultracentrifugation and equilibrium dialysis for the determination of the unbound fraction of theophylline in human serum.

A microscale ultracentrifugation procedure for the measurement of free theophylline in serum is described and evaluated by comparison with an equilibrium dialysis method. Provided an ultracentrifuge is available, micro-ultracentrifugation is a simple, cost-effective technique for the routine determination of free drug fractions.

Costs and Cost Analysis↗

Doxorubicin-induced altered glycolytic patterns in the leukemic cell studied by proton spin echo NMR.

1H spin echo NMR of the leukemic cell line J-lll is reported. Phosphorylcholine, phosphorylcreatine, lactate and mobile triglyceride are identified as constituents of the cytosolic pool in the intact and viable cells. The concentration of cells in the NMR tube is high (approx. 10(9) in 0.4 ml) and as a result the available oxygen is restricted, making the NMR experiment a plausible in vitro tumour model in which kinetics in the living cell can be probed in a non-invasive manner. Treatment with pharmacological concentrations of the drug doxorubicin produced immediate enhanced anaerobic glycolysis and eventual cell death.

Doxorubicin↗

The use of 1H spin echo NMR and HPLC to confirm doxorubicin induced depletion of glutathione in the intact HeLa cell.

The effects of doxorubicin on the cellular biochemistry of the HeLa cell using 1H spin echo nuclear magnetic resonance spectroscopy (NMR) of the intact and viable cell in conjunction with dual wavelength HPLC of cell lysates is reported. Directly dose-related changes were observed in lactate and reduced glutathione concentration. Doxorubicin induces a time-dependent depletion of the cytosolic pool of glutathione and a change in the glycolytic pattern of the cell. The glutathione depletion could be partially reversed by controlled pre-treatment of the cells with N-acetylcysteine and cysteine, the protection being linked to the intracellular concentration of the thiol.

Acetylcysteine↗

The clinical use and measurement of theophylline.

This report reviews the clinical use, metabolism and toxicity of theophylline (Section 1). Current chromatographic and immunoassay methods for theophylline measurement are discussed and practical methods using high-performance liquid chromatography are described (Section 2). Results from the UK National scheme for theophylline quality control and from an experiment to investigate the degree of interference by 1,7-dimethylxanthine in routine assays for theophylline are discussed in Section 3.

Humans↗

Clinical pharmacokinetics of enzyme inhibitors in antimicrobial chemotherapy.

The effectiveness of some antimicrobial agents can be enhanced by using them in combination; such combinations are termed synergistic. Where one compound potentiates the effect of a second drug they may be coformulated. Inhibition of the bacterial degradation of an active antimicrobial is the basis of clavulanate and sulbactam-potentiated penicillin combinations, and inhibition of degradative pathways in the host is the rationale behind imipenem/cilastatin therapy. Trimethoprim/sulphonamide combinations depend on the maintenance of an effective ratio for synergistic action. In order to achieve potentiation the coformulated drugs should have similar pharmacokinetics. Trimethoprim was originally matched with sulphamethoxazole, since these two drugs have similar elimination half-lives, but the significantly poorer penetration of sulphonamides, their greater non-renal clearance, the emergence of resistance, and the adverse reactions attributable to them argue against the rationale that underlies their coformulation. Time-dependent inhibition of bacterial beta-lactamases by clavulanic acid and sulbactam has extended the use of penicillins which are highly susceptible to beta-lactamase inactivation. The beta-lactamase inhibitors must penetrate to the same extent as the penicillin used with them, and be present long enough to effect inhibition; thus, rapid penetration, similar or slower elimination and equivalent volume of distribution are necessary. These requirements are met for amoxycillin/clavulanic acid, ticarcillin/clavulanic acid and ampicillin/sulbactam combinations. Clavulanic acid is absorbed orally and is given with amoxycillin. However, since sulbactam is labile by this route, the combination of sulbactam with ampicillin to form the prodrug sultamicillin has been necessary to enable an oral form to be developed. Imipenem is metabolised by renal brush-border dehydropeptidases, and may cause proximal tubular necrosis. Cilastatin was designed to inhibit this metabolism, which it effectively does, thereby both potentiating the effect of imipenem and avoiding toxicity. Appropriate matching of the kinetics of coformulated drugs is intended to maximise potentiation and minimise the risk of emergent resistance. The kinetics of the above combinations are discussed in the light of these requirements and the effects of age and disease.

Anti-Bacterial Agents↗

Trimethoprim analysis.

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Chromatography, High Pressure Liquid↗

A 1H spin echo NMR study of the HeLa tumour cell.

Phosphorylcholine, phosphorylcreatine, lactate, glutathione, glycine and leucine were identified in living HeLa cells in the first study of this cell type by 1H spin echo NMR spectroscopy. The technique has the advantage that it is non-invasive, providing detailed structural information on individual species present in the cell matrix. It has been used in this case to study the rate of energy consumption following the activation of the glycolytic pathway with glucose.

Energy Metabolism↗

Off-line automated sample preparation--experience in a clinical drug investigation unit.

The authors describe an evaluation of the Du Pont Prep. off-line automatic centrifugal sample processing system, used in the authors' Drug Investigation Unit over the past two years. In comparison to liquid-liquid extraction, the authors found that assay precision has generally been improved, absolute recovery was quantitative, reliability has been good and the use of the system has resulted in notable labour saving. However, the cost per test based on a seven-year amortization of capital cost shows that the system is more expensive. Assays for urinary opiates, serum tricyclic antidepressants, serum isoxicam, serum valproate, serum metoclopramide and serum pindolol are presented and the merits of the method are compared with those for manual liquid-liquid extraction procedures.

Journal Article↗

Pharmacokinetics of clavulanic acid-potentiated ticarcillin in renal failure.

The serum kinetics of an intravenous bolus of a combination of ticarcillin (TIC) (3 g) and clavulanic acid (CLAV) (0.2 g) have been determined in a number of patients with different degrees of renal failure as characterized by creatinine clearance. The volume of distribution for both drugs was unaffected by renal failure. Indices of serum and renal drug clearance were related to the degree of renal failure. TIC was cleared more slowly than CLAV. Anephric patients may have a higher serum clearance of CLAV than patients categorized by creatinine clearance as having severe renal failure; this could be due to an increase in metabolic clearance. Haemodialysis effectively clears both drugs. "Rebound" serum concentrations were consistently observed for TIC, but were observed in only one patient for CLAV. Continuous ambulatory peritoneal dialysis results in significant recovery of both drugs. The dosing requirements for the combination of TIC and CLAV in patients with renal failure are considered.

Adolescent↗