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M Adelman

Publications and source records attributed to M Adelman.

25 records · Page 2Linked to original sources

Kinetic mechanism of the Cu(II) enzyme galactose oxidase.

The steady-state kinetics of four redox reactions catalyzed by galactose oxidase have been determined. The alcohol substrate used in each case was galactose; the four oxidant substrates used were O2, IrCl6(2)-, porphyrexide, and Fe(CN)6(3)-. With the exception of the last reagent, saturation behavior is exhibited by all substrates. Double reciprocal plots of rate data obtained varying one substrate at various concentrations of the other are intersecting for all parsi that exhibited saturation behavior. Thus, these reactions are kinetically sequential processes involving single central complexes. These complexes involve enzyme, galactose, and one molecule of oxidant, whether or not the oxidant is a one- or two-electron acceptor. This result indicates that for one-electron oxidants, an enzyme.alcohol-derived radical species may exist as a transient prior to the reaction of the second electron equivalent of oxidant. A similar substrate radical.O2- transient is postulated in the reaction involving O2. The inhibition by H2O2 has also been studied in detail. H2O2 apparently binds to the enzyme at two sites. The nature of alcohol and O2 binding to the enzyme Cu(II) is discussed in light of these kinetic results.

Binding Sites↗

High-pressure liquid chromatography analysis and single-dose disposition of tobramycin in human volunteers.

A sensitive and specific fluorometric high-pressure liquid chromatography technique was developed to measure both tobramycin and an internal standard (gentamicin C2). The assay utilizes direct extraction of the o-phthalaldehyde derivatives from serum and urine. Coefficients of variation were 7.9% (serum) and 6.0% (urine) at a tobramycin concentration of 1.0 microgram/ml. The lower limit of assay sensitivity was 0.2 microgram/ml. Results obtained from high-pressure liquid chromatography were in excellent agreement with those from radioimmunoassay for both serum (r = 0.97) and urine (r = 0.91). No other aminoglycoside antibiotics and no other antibiotics that were tested caused interfering peaks. Tobramycin (1 mg/kg intravenous bolus) was administered to three healthy volunteers. Tobramycin concentrations were detectable for 10 h in serum and for 240 h in urine after a 1-mg/kg intravenous dose. A two-compartment pharmacokinetic model was required to describe the tobramycin disposition. Urinary recovery of tobramycin over a 10-day period accounted for 95.8, 94.3, and 83.1% of the administered dose. High-pressure liquid chromatography methodology is sufficiently sensitive to determine single-dose, two-compartment tobramycin pharmacokinetics from urinary excretion data, thus verifying the prolonged excretion of tobramycin after a single dose. The analytical methodology and pharmacokinetic techniques described may be useful in studying other aminoglycosides.

Anti-Bacterial Agents↗