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R Konaka

Publications and source records attributed to R Konaka.

15 recordsLinked to original sources

Synthesis and evaluation of DMPO-type spin traps.

The spin traps substituted with some groups at the 4-position of dimethyl-1-pyrroline N-oxide(DMPO) were compared with DMPO itself regarding their abilities as spin traps and their physical properties. 4,5,5-Trimethyl-1-pyrolline N-oxide (4MDMPO) and 5,5-dimethyl-4-phenyl-1-pyrolline N-oxide (4PDMPO) were synthesized by the Bonnett method, and 5,5-dimethyl-4-hydroxymethyl-1-pyrolline N-oxide (4HMDMPO) was made by a unique method from 2(5H)-furanone. The melting points of 4MDMPO, 4PDMPO and 4HMDMPO were higher than that of DMPO. The magnitude of hydrophilicity was in the order of 4HMDMPO, DMPO, 4MDMPO, and 4PDMPO based on the partition coefficient experiments in a 1-octanol--water system. Several radicals, O2-., HO., .CH3, .CH2OH, .CH(CH3)OH, (CH3)3CO. and H. radicals, were trapped with these DMPO derivatives for comparison with the trapping by DMPO itself. Spin adducts of O2-. with the three DMPO derivatives showed ESR spectra similar to that of DMPO. In spite of the formation of diastereomers arising from spin trapping, the line-width enlargement was very small. The intensities and the decay rates of the spectra of 4MDMPO-O2-, 4PDMPO-O2-, 4HMDMPO-O2- and DMPO-O2- were almost equal. In the trapping of the .OH radical by 4MDMPO, 4PDMPO and 4HMDMPO, the eight-line ESR spectra observed were different from the well-known four-line spectrum of DMPO-OH.

Cyclic N-Oxides

Quantification of urinary porphyrins by liquid chromatography after oxidation of porphyrinogens.

A quantitative "high-performance" liquid-chromatographic method is described for determining porphyrins in human urine. Porphyrinogens in urine are first converted to the corresponding porphyrins by oxidation with iodine. Uroporphyrin, hepatacarboxylic acid porphyrin, hexacarboxylic acid porphyrin, pentacarboxylic acid porphyrin, and coproporphyrin I and III isomers are then separated on a reversed-phase column and measured by fluorometry. Analysis for the six porphyrins is complete within 24 min, including reconditioning for the next sample. The detection limit (twice the signal/noise ratio) for each porphyrin was 1 nmol/L for urine (25 fmol per 50-microL injection). Mean analytical recovery of each porphyrin ranged from 85% to 91%, within-day CVs from 1.4% to 7.3%. Normal reference intervals for porphyrins were established by assaying urine samples from 75 healthy subjects. Significant sex-related differences in coproporphyrin I and III isomers were evident when the values were expressed as nanomoles per gram of creatinine. Coproporphyrin isomer ratio was estimated for utility in the diagnosis of porphyrinurias.

Adult

Specific determination of 3-methoxy-4-hydroxyphenylethylene glycol in urine by liquid chromatography with post-column reaction.

We describe a "high-performance" liquid-chromatographic method for determining 3-methoxy-4-hydroxyphenylethylene glycol (MHPG) in human urine. MHPG is separated on a reversed-phase column with isocratic elution, oxidized with sodium metaperiodate, and its absorbance measured at 365 nm. This method shows higher specificity, less interference for MHPG than methods involving electrochemical or fluorescence detection. Post-column derivatization of MHPG with periodate yields vanillin. The detection limit (twice the signal-to-noise ratio) in urine samples was 0.08 mg/L. Mean analytical recovery was 72%. Within-assay and day-to-day CVs were 2.9% and 6.5%, respectively. Reference intervals for MHPG in 24-h urine from apparently healthy subjects were 0.85-3.24 mg/day for men and 0.63-2.20 mg/day for women. In terms of creatinine excretion, the respective reference intervals were 0.55-1.99 and 0.70-1.96 mg per gram of creatinine.

Adult

High-performance liquid chromatographic analysis of a new beta-lactam antibiotic, 6059-S (moxalactam).

Reversed-phase high-performance liquid chromatography was applied to the quantitative determination of a new beta-lactam antibiotic, 6059-S, ant its R- and S-epimers were resolved. The procedure was also applied to pharmaceuticals and human urine samples. Chromatographic separation was effected on a bonded hydrophobic stationary phase with two mobile phases: methanol-phosphate butter for the resolution of the epimers and methanol-tetra-n-butylammonium phosphate for the quantitation of 6059-S. For the determination of 6059-S in human urine, the latter mobile phase was used successfully without interference by the other urine components. An in vivo experiment was conducted by administering intravenously 1 g of 6059-S to seven volunteers and analysing their urine by chromatographic and microbiological assays, and a comparison of the results gave a correlation coefficient of 0.9954. One-compartment model analysis of the time-course data revealed that 6059-S was excreted in urine intact with a rate constant of 0.433h-1.

Cephalosporins

Separation of some polypeptide hormones by high-performance liquid chromatography.

Twenty-one analogues of ACTH, three analogues of LH-RH and four insulins have been successfully separated on a commercial reversed-phase material with tartrate buffer--acetonitrile systems containing sodium 1-butanesulphonate and sodium sulphate as the mobile phase. The effect of the constituent amino acid residues on the order of elution has been studied in detail by using a variety of closely related peptides; the order of elution of a series of peptides, which differ by only one amino acid residue, can in most instances be explained in terms of the difference in the hydrophobicities of the amino acid residues concerned, but in some instances, such as in diastereoisomers or positional isomers, the order of elution must be interpreted in terms of the hydrophobicity of the whole peptide molecule. This chromatographic method has been proved to be very useful for the rapid examination of the purity of these peptide hormones and for the separation of closely related peptides with molecular weights up to ca. 6000.

Adrenocorticotropic Hormone

Resolution of peptide antibiotics, cerexins and tridecaptins, by high performance liquid chromatography (studies on antibiotics from the genus Bacillus. XXVI).

By high performance liquid chromatography, cerexin B was separated into four components (B1, B2, B3 and B4), cerexin D into four components (D1, D2, D3 and D4), tridecaptin A into components (A alpha and A beta), tridecaptin B into four components (B alpha, B beta, B gamma and B delta) and tridecaptin C into three components (C alpha 1, C alpha 2 and C beta 1). All components were preparatively isolated, and their fatty acid and amino acid compositions determined for structural elucidation.

Amino Acid Sequence

Metabolism and disposition of peptido-aminobenzophenone (2-o-chlorobenzoyl-4-chloro-N-methyl-N-glycylglycinanilide) and its major benzodiazepine metabolites in dogs.

Absorption, metabolism, and excretion of peptido-aminobenzophenone (PAB) and its major benzodiazepine-type metabolites were studied in dogs. In one dog, PAB levels reached a peak, which was low relative to that of other metabolites, at 1 hr after a single 5-mg/kg oral dose and decreased with a half-life of 1.2 hr. PAB in plasma was metabolized rapidly and extensively into chlorodiazepam (CD) and further into chlorodesmethyldiazepam (CDD). The two first-pass effects of both PAB and CD were observed. Urine following a 20-mg/kg oral dose of PAB contained the lorazepam conjugate (16.4%) as a major metabolite and a trace amount (0.2%) of PAB. The inverse relationship between CD plasma clearance and iv CD dose is probably explained by product inhibition of CD demethylation by CDD. Study of the in vitro metabolism of CD with dog liver microsomes supported the above mechanism.

Animals