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Dearylation and other cleavage reactions of diethylstilbestrol: novel oxidative pathways mediated by peroxidases.

Oxidation of diethylstilbestrol (I) by peroxidases from horseradish or mouse uterus in the presence of H2O2 in vitro leads to Z,Z-dienestrol (II) and to a number of cleavage products, five of which were identified by g.l.c.-mass spectrometry and comparison with authentic reference compounds as 4-hydroxybenzoic acid (III), 4'-hydroxypropiophenone (IV), 1'(4'-hydroxyphenyl)-propan-1-on-2-ol (V), 1-(4'-hydroxyphenyl)-propan-1,2-dione (VI) and 3-(4'-hydroxyphenyl)-hex-2-en-4-one (VII). The formation of 3-(4'-hydroxyphenyl)-hex-2-en-4-one (VII) from diethylstilbestrol is the first reported example of a metabolic dearylation reaction. The amount of cleavage products depends on the excess of H2O2 used. The amount of H2O2 does not affect the extent of binding of diethylstilbestrol to DNA as mediated by peroxidases. The syntheses of V, VI and VII are described.

Animals↗

Resistance patterns of Mycobacterium tuberculosis complex isolates in the Turkish Army from 1998 to 2000.

The aim of this retrospective study was to investigate susceptibility rates of Mycobacterium tuberculosis complex (MTBC) isolates against streptomycin, rifampicin, isoniazid, and ethambutol between January 1998 and December 2000 in the Turkish Army. Specimens collected from patients were cultured both conventionally and radiometrically. Differentiation of MTBC bacteria from Mycobacteria other than tuberculosis bacilli was made by the BACTEC p-nitro-alpha-acetyl-amino-beta-hydroxypropiophenone test. Susceptibility testing of MTBC isolates was performed using the BACTEC radiometric susceptibility assay for mycobacteria. Most of the specimens originated from respiratory system. A total of 98 isolates in 1998, 123 isolates in 1999, and 84 isolates in 2000 were obtained and identified as MTBC using the radiometric BACTEC TB460 system. Initial resistance was most frequent to isoniazid followed by ethambutol, streptomycin , and rifampicin in this study period. The differences between resistance rates were not statistically significant on an annual basis. None of these isolates was resistant to all four antimycobacterial agents. Although resistance rates of our isolates were not as high as previously reported by some authors from Turkey and there was no significant difference between the annual susceptibility rates, routine screening of antituberculosis drug susceptibility should be continued to control the resistance development and its spread.

Antitubercular Agents↗

[Standardization of laboratory tests for tuberculosis and their proficiency testing].

Explanations of proper collection procedures are imperative for accurate laboratory analysis. The quality of specimens collected and the proper transport of those specimens to the laboratory are critical to successful isolation of etiological agents. Most mycobacteria grow at a relatively slow rate. Therefore, the acid-fast smear plays an important role in the early diagnosis of mycobacterial infection. There are several methods of determining the acid-fast nature of an organism. In the carbolfuchsin procedures (Ziehl-Neelsen, Kinyoun), acid-fast organisms appear red, and in the fluorochrome procedures (auramine O, auramine-rhodamine, acridine orange), the acid-fast organisms fluoresce yellow to orange. Fluorochrome-stained slides may be directly restained with any of the carbolfuchsin staining procedures. This may be done to confirm a positive fluorochrome slide and to study organism morphology. In the last 10 years, there were many advances in the culture examinations of mycobacteria. The newly developed Mycobacteria Growth Indicator Tube (MGIT), BacT/Alert, ESP Myco, MB Redox and KRD "Nichi B", biphasic Septi-Chek AFB and Myco-Acid, and radiometric BACTEC 460TB systems based on liquid media, proved to be significantly better than the egg-based solid media for the isolation of mycobacteria from clinical specimens. In addition to liquid-based medium, agar (Middlebrook 7H10 or 7H11)- or egg (Ogawa or Löwenstein-Jensen)-based media should be used in the primary isolation of mycobacteria. To identify mycobacteria, conventional biochemical tests are traditionally used. Key test can be used to identify species, or further preliminary grouping may be used. Other approaches to identifying some species of mycobacteria are available. They include niacin accumulation, p-nitrobenzoic acid and p-nitro-alpha-acetylamino-beta-hydroxypropiophenone tests for discrimination of the Mycobacterium tuberculosis complex from mycobacteria other than M. tuberculosis (MOTT); DNA probe methods for identification or confirmation of the M. tuberculosis complex, M. avium complex, M. kansasii, and M. gordonae; DNA-DNA hybridization method for identification of 22 Mycobacterium species; and gas-liquid chromatography or high performance liquid chromatography analyses for recognizing the patterns of the mycobacterial cell wall fatty acids or mycolic acids. The advantages of the last four methods are that they are capable of providing definitive identification within 2 to 5 h after adequate growth. Capilia TB is the newly developed immunochromatographic assay for rapid discrimination between the M. tuberculosis complex and MOTT bacilli. The kit can be easily used for rapid identification of the M. tuberculosis complex in combination with the culture systems based on liquid media. In addition, Capilia TB could correctly detect the M. tuberculosis complex from mixed cultures with the M. tuberculosis complex and MOTT bacilli. The WHO/IUATLD supranational reference laboratory (SRL) network was created in 1994, to ascertain the accuracy of the susceptibility test methods used in different laboratories across the world, and to allow comparability of the surveillance data gathered in countries participating in the Global Project on Anti-tuberculosis Drug Resistance Surveillance. Today, the network has evolved and 23 SRLs actively participate. Results of five rounds of proficiency testing in the SRL network suggest that performance of the network has improved substantially through the years. This progress has been particularly evident for streptomycin and ethambutol sensitivity, which was very low in the first rounds of proficiency testing. In 1998 sensitivity for these two drugs was higher than 95%. For isoniazid and rifampin, sensitivity has been consistently high since the beginning of the Global Project. This indeed reflects the enhanced efforts made by the SRLs to improve their individual performance.

Bacteriological Techniques↗

Metabolic activation of carcinogenic diethylstilbestrol in rodents and humans.

In vivo biotransformation of diethylstilbestrol (DES) was studied by radio-GLC and GLC-mass spectrometry using both radioactively and deuterium-labeled DES. Among the urinary and biliary metabolites identified in intact Wistar rat and Syrian golden hamsters are dienestrol and hydroxy and methoxy derivatives of dienestrol and DES. The identification of 4'-hydroxypropiophenone as a urinary metabolite of DES in the rat is consistent with the hypothesis that dienestrol is formed via an epoxide-diol pathway. Some of the metabolites imply electrophilic reactivity according to their chemical structure and may represent proximate carcinogens of DES. In humans, dienestrol and hydroxy dienestrol constitute the major urinary DES metabolites in men and were also identified in the urine of a woman. Considerable species differences in DES metabolism between humans and rats were found with regard to the route of excretion and the pattern of urinary metabolites.

Adult↗

Lipase-catalyzed chemo- and enantioselective acetylation of 2-alkyl/aryl-3-hydroxypropiophenones.

The chemo- and enantioselective capabilities of porcine pancreatic lipase (PPL) in tetrahydrofuran, and Candida rugosa lipase (CRL) in diisopropyl ether have been investigated for the acetylation of racemic 2-alkyl/aryl-3-hydroxypropiophenones, which are important precursors in the synthesis of biologically active chromanones and isoflavanones. A highly chemoselective acetylation of primary hydroxy group in preference to phenolic hydroxy group leading to the formation of enantiomerically enriched monoacetates has been observed.

Acetates↗