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1.
J Appl Microbiol ; 118(4): 864-72, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25604161

ABSTRACT

AIMS: The interaction of quinolone and indoloquinazoline alkaloids concerning their antimycobacterial activity was studied. METHODS AND RESULTS: The antimycobacterial and modulating activity of evodiamine (1), rutaecarpine (2) and evocarpine (3) was tested on mycobacteria including three multidrug-resistant (MDR) clinical isolates of Mycobacterium tuberculosis. Antagonistic effects were concluded from fractional inhibitory concentration (FICI) values. Interaction energies of the compounds were calculated using GLUE docking module implemented in GRID. 1 and 2 exhibited weak inhibition of rapidly growing mycobacteria, however, 1 was active against Myco. tuberculosis H37Rv (MIC = 10 mg l(-1) ) while 2 was inactive. Both 1 and 2 showed a marked antagonistic effect on the susceptibility of different mycobacterial strains to 3 giving FICI values between 5 and 9. The interaction energies between compounds 1 and 2 with compound 3 suggested the possibility of complex formation in solution. CONCLUSIONS: Indoloquinazoline alkaloids markedly reduce the antimycobacterial effect of the quinolone alkaloid evocarpine. Complex formation may play a role in the attenuation of its antimycobacterial activity. SIGNIFICANCE AND IMPACT OF THE STUDY: This study gives a striking example of antagonism between compounds present in the same plant extract which should be considered in natural product based screening projects.


Subject(s)
Alkaloids/antagonists & inhibitors , Anti-Bacterial Agents/pharmacology , Drug Antagonism , Mycobacterium tuberculosis/drug effects , Quinazolines/antagonists & inhibitors , Quinolones/antagonists & inhibitors , Humans , Mycobacterium tuberculosis/physiology , Plant Extracts/antagonists & inhibitors , Tuberculosis/drug therapy , Tuberculosis/microbiology
2.
Phytomedicine ; 13(6): 452-6, 2006 Jun.
Article in English | MEDLINE | ID: mdl-16716917

ABSTRACT

Inhibition of leukotriene formation is one of the approaches to the treatment of asthma and other inflammatory diseases. We have investigated knipholone, isolated from the roots of Kniphofia foliosa, Hochst (Asphodelaceae), for inhibition of leukotriene biosynthesis in an ex vivo bioassay using activated human neutrophile granulocytes. Moreover, activities on 12-lipoxygenase from human platelets and cycloxygenase (COX)-1 and -2 from sheep cotyledons and seminal vesicles, respectively, have been evaluated. Knipholone was found to be a selective inhibitor of leukotriene metabolism in a human blood assay with an IC(50) value of 4.2microM. However, at a concentration of 10microg/ml, the compound showed weak inhibition of 12(S)-HETE production in human platelets and at a concentration of 50microM it produced no inhibition of COX-1 and -2. In our attempt to explain the mechanism of inhibition, we examined the antioxidant activity of knipholone using various in vitro assay systems including free radical scavenging, non-enzymatic lipid peroxidation, and metal chelation. Knipholone was found to be a weak dose-independent free radical scavenger and lipid peroxidation inhibitor, but not a metal chelator. Therefore, the leukotriene biosynthesis inhibitory effect of knipholone was evident by its ability either to inhibit the 5-lipoxygenase activating protein (FLAP) or as a competitive (non-redox) inhibitor of the enzyme. Cytotoxicity results also provided evidence that knipholone exhibits less toxicity for a mammalian host cell.


Subject(s)
Anthraquinones/pharmacology , Leukotrienes/biosynthesis , Magnoliopsida , Phytotherapy , Plant Extracts/pharmacology , Animals , Artemia/drug effects , Biphenyl Compounds , Free Radical Scavengers/pharmacology , Humans , Lipid Peroxidation/drug effects , Male , Picrates/chemistry , Placenta/drug effects , Plant Roots , Seminal Vesicles/drug effects , Sheep
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