Half the world's population is at risk of developing a malaria infection, which is caused by parasites of the genus . Currently, resistance has been identified to all clinically available antimalarials, highlighting an urgent need to develop novel compounds and better understand common mechanisms of resistance. We previously identified a novel tetrahydro-β-carboline compound, PRC1590, which potently kills the malaria parasite.
View Article and Find Full Text PDFPlumerianoids A-D (1-4) with a new intact spirocyclic iridoid alkaloid skeleton, along with a new degraded alkaloid 8--plumerianine (5), and a known one (6), were isolated and characterized from . The structure of 6 was revised as (8,13)-plumerianine. These alkaloids consist of three epimeric pairs (1/2, 3/4, and 5/6), exhibiting virtually identical NMR spectra within each pair.
View Article and Find Full Text PDFThe development of parasite resistance to both artemisinin derivatives and their partner drugs jeopardizes the effectiveness of the artemisinin combination therapy. Thus, the discovery of new antimalarial drugs, with new mechanisms of action, is urgently needed. We recently disclosed that β-carboline was orally efficacious in -infected mice and that it showed low cross-resistance between susceptible and four different drug-resistant strains.
View Article and Find Full Text PDFCalophyllum tomentosum belonging to Clusiaceae family is an Indian medicinal plant used as folklore medicine to cure various kinds of diseases reported in Ayurveda, and the leaves of the plant are also used as an active ingredient for the preparation of a botanical medicine known as 'Punnaga', 'Surapunnaga' and 'Tamoil' among other common names. Chemical profiling of the methanol extract of the defatted leaf revealed the presence of amentoflavone (1) as one of the constituents along with coumarins, terpenoids, steroids, and apetalic acids. Structural determination of amentoflavone (1) has been conducted by chemical, spectral, and spectrometric methods in comparison with spectral values available in the literature and confirmed by a single crystal X-ray diffraction study.
View Article and Find Full Text PDFDolichols are isoprenoid end-products of the mevalonate and 2-methyl-D-erythritol-4-phosphate pathways. The synthesis of dolichols is initiated with the addition of several molecules of isopentenyl diphosphate to farnesyl diphosphate. This reaction is catalyzed by a -prenyltransferase and leads to the formation of polyprenyl diphosphate.
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