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R Blanke

Publications and source records attributed to R Blanke.

7 recordsLinked to original sources

Quantitation using GC-TOF-MS: example of bromazepam.

Time-of-flight mass spectrometry (TOF-MS) offers new perspectives for forensic toxicology. Qualitative and quantitative analyses of a mixture of three selected benzodiazepines (diazepam, nordazepam and bromazepam) were used to compare gas chromatography (GC-TOF-MS, quadrupole GC-MS, GC-ECD) and liquid chromatography (HPLC-DAD) data. Method validation parameters like LOD, LOQ, S/N-ratios reflect the capabilities of GC-TOF-MS. Five-point calibrations for bromazepam in human peripheral blood (50, 100, 160, 200, 300 ng/ml) using medazepam as internal standard (1000 ng/ml) were performed. The calibrations using GC-TOF-MS (using the fragments of m/z 236 and 288), GC-ECD (dual system) and HPLC-DAD (at 235 nm) all showed correlation coefficients close or superior to 0.99. Quadrupole GC-MS data was not used in the comparison of extracted samples due to the low sensitivity in the full scan mode. Two analyses of real cases concerning bromazepam are presented. In the first case, the presence or absence of bromazepam could not be established with both HPLC-DAD and GC-ECD due to background signals. The extracted ion chromatograms and spectrum traces after the analysis with the GC-TOF-MS could clearly excluded the presence of bromazepam. The second case illustrates the quantitation of bromazepam, where both HPLC-DAD and GC-ECD were unable to give satisfactory results, again due to interfering background signals. The analyses performed on the GC-TOF-MS-system demonstrated high sensitivity and also high selectivity due to the high quality of mass spectra obtained. The advantages of GC-TOF-MS make it a promising analytical technique for forensic toxicology.

Anti-Anxiety Agents↗

Polymorphonuclear leukocyte function in term and preterm newborn infants.

Bacterial infections are a major problem in the care for newborn infants. In search for immunological deficits we investigated phagocytosis and killing of staphylococci using polymorphonuclear leukocytes (PMN) isolated from 2 ml of venous blood. Phagocytosis of PMN from preterm (n = 10) and newborn infants (n = 9; mean birth weights 1,949 and 3,523 g, respectively) was not different from that of adult PMN (n = 14). Killing capacity of PMN from preterm infants was markedly impaired compared to term newborn infants and to adult PMN. We found similar rates of superoxide anion production and similar times for activation in response to phorbolmyristate acetate stimulation. Our study gives further evidence that PMN from term newborn infants have normal phagocytotic and bactericidal capacity. In PMN from preterm newborn infants, however, the bactericidal capacity is diminished similar to newborn infants under stress as described earlier by others.

Adult↗

Gas chromatographic analysis of lidocaine in blood and tissues.

A rapid, sensitive, and specific gas chromatographic assay for lidocaine in plasma and blood is reported. The procedure involves a single step extraction of the drug and internal standard, and analysis without derivatization. The method can be modified to include the analysis of lidocaine in tissues.

Chromatography, Gas↗

Liquid chromatographic analysis of thiopental in blood and tissues.

A liquid chromatographic method for the quantitation of thiopental in blood and tissues is presented. Quantitation in blood utilizes a single step dichloromethane extraction at pH 5.5. After mixing and centrifugation, the organic layer is evaporated to dryness at 40 degrees C and the residue reconstituted with methanol. Tissue extraction includes an alkaline clean-up step followed by re-extraction with dichloromethane after acidification. Either of two 10 mu columns can be used: a C8 or a C18 column. The mobile phase was methanol:water (60:40) at a flow of 2 mL/min. The wavelength of detection was 290 nm. Thiopental can be detected to 1 mg/L using this procedure, and no interferences with other acidic or neutral drugs were found.

Chromatography, Liquid↗