[p-Hydroxypropiophenone, mitotic poison; comparative study of the action of p-hydroxypropiophenone and of some related substances on cell division in Allium cepa L..].
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This study is an evaluation of a rapid technique for the differentiation of the Mycobacterium tuberculosis complex from other mycobacteria, using p-nitro-alpha-acetylamino-beta- hydroxypropiophenone (NAP) as a selective inhibitory agent. A total of 416 coded cultures, 234 cultures belonging to the M. tuberculosis complex and 182 cultures belonging to 35 other mycobacterial species, were tested in two laboratories for p-nitro-alpha-acetylamino-beta- hydroxypropiophenone inhibition to concentrations of 5 and 10 micrograms of NAP per ml in Middlebrook 7H12 liquid medium. Two testing modes were compared: the indirect, in which a large bacterial inoculum was used from an isolated culture on a solid medium, and the direct, which used a small inoculum from 7H12 medium. A decrease or no increase in daily 14CO2 output as measured by a BACTEC system was considered evidence of inhibition. The data presented show that a concentration of 5 micrograms of NAP per ml can effectively separate the M. tuberculosis complex from other mycobacterial species in 4 to 6 days. The direct test data show that, unlike other conventional biochemical tests, it does not require a heavy inoculum of mycobacteria and can therefore be performed soon after growth is detected by the radiometric method.
The p-nitro-alpha-acetylamino-beta-hydroxypropiophenone (NAP) differential test for the identification of Mycobacterium tuberculosis recovered from clinical specimens was evaluated by two laboratories and found to be a rapid and accurate procedure with a specificity exceeding 99%.
Within the framework of the study of the structure-effect relationship, a series of novel potential beta-adrenolytic agents derived from p-hydroxyacetophenone and p-hydroxypropiophenone with an alyloxymethyl and a cycloalkyloxymethyl group in the lipophilic part of the molecule and an isopropyl and a tert-butyl group in the hydrophilic part on the basic nitrogen were prepared by means of a well-tried method. The structure of the prepared drugs was confirmed on the basis of interpretation of the IR, UV, 1H-NMR and mass spectra. The results of pharmacological evaluation of selected drugs show that the agents poses beta-adrenolytic and antiarrhythmic activity. From the viewpoint of comparison of the individual drugs subjected to testing the presence of an alyl seems more advantageous than that of a cyclohexyl. The characteristic of the prepared drugs was supplemented by the determination of their partition coefficients, surface tension and acute toxicity.
The present paper carries out the pharmacological evaluation of 4-(2-hydroxy-3-isopropylaminopropoxy)-3-(alkoxymethyl) propiophenones with an ethoxy, propoxy and butoxy-group, whose structures are typical of the blockers of beta-adrenergic receptors. In the above-mentioned compounds the anticalcium effect on the frequency and the amplitude and the negative chronotropic and the negative inotropic effects were evaluated by means of the method of spontaneously pulsing guinea-pig atria within a concentration range of 4-16 microgram.cm-3. The obtained results confirmed a significant anticalcium effect on the heart rate in the compounds with a propoxy and a butoxy group, and in the standard verapamil. In all three compounds as well as in the standard verapamil, no anticalcium effect on the amplitude was found. The results of this membrane efficacy are in agreement with the preceding evaluation of the antidysrhythmic and anti-isoprenaline activity with the most marked effect in the compound with a propoxy group. On the basis of these results it is possible to conclude that in these derivatives of 4-hydroxypropiophenone also the anticalcium effect can participate, besides the beta-adrenolytic and the membranostabilizing effects, in the antidysrhythmic activity.
Compared with conventional culture media, the TB BACTEC system has demonstrated improved isolation rates as well as an earlier detection time for mycobacterial species. However, the identification of M. tuberculosis by the rho-nitro-alpha-acetylamino-beta-hydroxypropiophenone (NAP) test in the TB BACTEC 460 system may require 6 days for interpretable results. We evaluated the usefulness of a polymerase chain reaction (PCR) assay for earlier identification of M. tuberculosis in positive BACTEC 12B cultures. A total of 262 TB BACTEC culture specimens with GIs > or = 10 were assayed by PCR, and the results were compared with those of the NAP test. The aliquot from BACTEC 12B vials was boiled for 10 min, and 2 microliters of the boiled suspension was used for the PCR assay. One set of primers based on the IS 6110 sequence of M. tuberculosis was used to amplify a 457 bp fragment of DNA. Of the 173 TB BACTEC culture specimens which were identified as M. tuberculosis by the NAP test. 171 were PCR positive. Of the 21 TB BACTEC cultures identified as MOTT by the NAP test. 19 were PCR negative, but 2 were PCR positive: these two cultures were shown to grow both M. tuberculosis and MOTT in BACTEC 12B vials. Of the remaining 68 cultures which were contaminated with AFB-negative bacteria, the PCR identified M. tuberculosis in 13, in agreement with the NAP results in the reprocessed specimens. Overall, the PCR results in the 262 BACTEC culture specimens with GIs > or = 10 were sensitive in 99.5% (186/187) and specific in 100% (68/68). The mean time for the identification of M. tuberculosis in TB BACTEC cultures with GIs > or = 10 was 7 h by the PCR compared to 5.9 days by the NAP test. These results suggest that the PCR could be used as an alternative to the NAP test for the rapid identification of M. tuberculosis in BACTEC 12B cultures, particularly in those which contained both M. tuberculosis and MOTT or M. tuberculosis and AFB-negative bacteria.
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