Search PubMed⌕ Search

Biomedical subjects

G D Byrd

Publications and source records attributed to G D Byrd.

26 records · Page 2Linked to original sources

Systematic serials selection analysis in a small academic health sciences library.

This paper describes the implementation of a straightforward quantitative technique to analyze the serials collection of the Medical Library at the University of Missouri-Kansas City (UMKC). Our simplified operations research approach resulted in a savings of nearly $1400 per year in subscriptions costs without reducing the net number of seven hundred titles or causing an imbalance in the subject distribution of our collection. By detailing both the rationale behind the process and the actual steps followed at UMKC, we hope to demonstrate that operations research techniques can be used practically and successfully even in small health sciences libraries. In the Appendix a more general and more rigorous operations research approach to the analysis of serials collections is also presented in a fashion that is, as far as possible, not mathematically forbidding.

Book Selection↗

Reclassification in a small decentralized medical library.

This study describes procedures and indentifies problems in the reclassification of a small medical school library collection that is decentralized into five locations in three different communities. A total of 9,915 monographic titles (14,911 volumes) were reclassified in a nine-month period. The reclassification staff consisted of one professional, two nonprofessionals, and one partime student assistant.

Book Classification↗

Characterization of the glucuronide conjugate of cotinine: a previously unidentified major metabolite of nicotine in smokers' urine.

Recent studies in our laboratories have confirmed that a major unidentified metabolite of nicotine in smokers' urine was susceptible to enzymatic degradation by beta-glucuronidase to afford (S)-(-)-cotinine. In order to establish the identity of this metabolite, the quaternary ammonium conjugate, viz., (S)-(-)-cotinine N-glucuronide, was synthesized. Reaction of methyl 2,3,4-tri-O-acetyl-1-bromo-1-deoxy-alpha-D-glucopyranuronate with (S)-(-)-cotinine at 60 degrees C for 3 days affords the fully protected conjugate as the bromide salt. Deprotection was accomplished in 1 M NaOH overnight at 25 degrees C. The deprotected inner salt was isolated by Dowex-50W cation-exchange chromatography. Electrospray mass spectra of the inner salt revealed the presence of ions with m/z 353 (M + H)+, 375 (M + Na)+, and 391 (M + K)+ as well as ions resulting from loss of water and cleavage of the glycosidic bond. Proton and carbon nuclear magnetic resonance spectra established that the position of glucuronidation was the pyridyl nitrogen. The magnitude of the coupling between H1" and H2" of the sugar ring (8.71 Hz) and nuclear Overhauser enhancements were consistent with the beta-isomer of the glucuronide conjugate. The synthetic (S)-(-)-cotinine N-glucuronide was susceptible to enzymatic hydrolysis by beta-glucuronidase to afford (S)-(-)-cotinine. Application of a cation-exchange high-performance liquid chromatographic method enabled the collection of a fraction containing (S)-(-)-cotinine N-glucuronide from a smoker's urine. The electrospray mass spectrum of this fraction contained ions consistent with the presence of (S)-(-)-cotinine N-glucuronide. The concentrated fraction was subjected to enzymatic hydrolysis by beta-glucuronidase to afford (S)-(-)-cotinine.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Determination of 3-quinuclidinyl benzilate (QNB) and its major metabolites in urine by isotope dilution gas chromatography/mass spectrometry.

In response to the scheduled destruction of U.S. military stockpiles of the hallucinogenic agent 3-quinuclidinyl benzilate (QNB), a specific confirmatory test for human exposure to QNB was developed. The amount of the parent compound in the urine as well as the two major metabolites, 3-quinuclidinol (Q) and benzilic acid (BA), was determined because the relationship between QNB dose and levels of QNB and its metabolites in human urine is not known. QNB was determined in urine samples spiked at a target level of 0.5 ng/mL, and the metabolites BA and Q were determined at a target level of 5 ng/mL. The method uses solid-phase extraction to isolate each analyte from the urine and isotope dilution gas chromatography/mass spectrometry for quantitation. Each analyte is converted to its trimethylsilyl derivative for analysis. The analytical method was tested on eight different urine samples spiked with known amounts of the analytes near the target levels, at 10 times the target levels, and blank (unspiked) urine samples. The variabilities in the method are for the most part evenly distributed between three imprecision categories: GC/MS measurement, sample preparation, and the urine samples. The total imprecision (1 standard deviation) of a single measurement is about 15% of the value for each analyte.

Gas Chromatography-Mass Spectrometry↗

Evidence for urinary excretion of glucuronide conjugates of nicotine, cotinine, and trans-3'-hydroxycotinine in smokers.

Urinary nicotine metabolic output was profiled for 11 smokers who smoked their regular cigarette brands ad libitum. Thermospray liquid chromatography/mass spectrometry was used to monitor nicotine and eight metabolites, including glucuronide conjugates of nicotine, cotinine, and trans-3'-hydroxycotinine that were determined indirectly using enzyme hydrolysis. These results were used to estimate an average, steady-state concentration in a 24-hr urine sample during ad libitum smoking and to assess interindividual variability in the excretion of these metabolites. The variability in absolute amount among the nine analytes ranged from 35 to 70% for these smokers. The glucuronide conjugates constituted an average of 29% of all urinary metabolites monitored in this study. trans-3'-Hydroxycotinine in the free form constitutes the largest single metabolite in smokers' urine, with an average of 35% of the total. The sums of nicotine metabolites determined here are very close to the Federal Trade Commission yields of nicotine for the total number of cigarettes smoked by these subjects during the urine collection interval. These results indicate that a large proportion of the nicotine absorbed while smoking can be accounted for as urinary metabolites of nicotine, including glucuronide conjugates of nicotine, cotinine, and trans-3'-hydroxycotinine.

Adult↗