Abstract:We report herein the design, synthesis, and biological screening of a series of 15 disulfide prodrugs as precursors of albitiazolium bromide (T3/SAR97276, compound 1), a choline analogue which is currently being evaluated in clinical trials (phase II) for severe malaria. The corresponding prodrugs are expected to revert back to the active bis-thiazolium salt through an enzymatic reduction of the disulfide bond. To enhance aqueous solubility of these prodrugs, an amino acid residue (valine or lysine) or a phosp… Show more
“…[1][2][3][4][5][6][7][8] Owing to the increasing importance of the disulfides (disulfanes) in chemistry [9][10][11][12][13][14] and biology, [15][16][17] synthetic approaches for their preparation have been extensively studied. [18][19][20][21][22] According to the literature, disulfides can be obtained directly from *Corresponding author.…”
Heterocyclic azo compounds, prepared from corresponding amines in one step, are used as effective oxidants for the conversion of thiols into symmetrical disulfides in high yields. Among the studied azo compounds, 4,4 -azopyridine was found to be very efficient for the odorless conversion of alkyl halides into disulfides in the presence of thiourea. An attractive feature of this azo compound is that its obtained solid side product hydrazine is easily separated by filtration and can be recycled to its azo compound for further use.
“…[1][2][3][4][5][6][7][8] Owing to the increasing importance of the disulfides (disulfanes) in chemistry [9][10][11][12][13][14] and biology, [15][16][17] synthetic approaches for their preparation have been extensively studied. [18][19][20][21][22] According to the literature, disulfides can be obtained directly from *Corresponding author.…”
Heterocyclic azo compounds, prepared from corresponding amines in one step, are used as effective oxidants for the conversion of thiols into symmetrical disulfides in high yields. Among the studied azo compounds, 4,4 -azopyridine was found to be very efficient for the odorless conversion of alkyl halides into disulfides in the presence of thiourea. An attractive feature of this azo compound is that its obtained solid side product hydrazine is easily separated by filtration and can be recycled to its azo compound for further use.
“…Data are reported for artemisinin, 29 artesunate, 29,30 lumefantrine, 31,32 piperaquine, 31,33 sulfadoxine, 34 pyrimethamine, 35,36 and chloroquine. 29,37,38 …”
Section: Methodsmentioning
confidence: 99%
“…98,101 This indicates a 2–3-fold improvement in mouse oral bioavailability; the rat bioavailability is 15%. 100 In spite of numerous efforts made in the last few years, 37,102–105 the bioavailability of these bis-cations has not been improved yet.…”
This digest covers some of the most relevant progress in malaria drug disco very published betwe en 2010 and 2012. There is an urgent need to develop new antimalarial drugs. Such drugs can target the blood stage of the disease to alleviate the symptoms, the liver stage to prevent relapses, and the transmission stage to protect other humans. The pipeline for the blood stage is becoming robust, but this should not be a source of complacency, as the current therapies set a high standard. Drug disco very efforts directed towards the liver and transmission stages are in their infancy but are receiving increasing attention as targeting these stages could be instrumental in eradicating malaria.
“…An important property of albitiazolium is that it accumulates irreversibly in the Plasmodium up to 1000-fold. Albitiazolium inhibits parasite growth and halts disease progression in mice without recrudescence [16]. DSM265 (Phase I) inhibits Pf DHODH (Dihydroo rotate dehydrogenase (DHODH) is the enzyme which catalyzes the rate-limiting step of the de novo pyrimidine biosynthetic pathway) selectively over its human counterpart.…”
Section: Department Of Pharmacology Institute Of Post Graduate Medicmentioning
Increasing incidence of artemisin resistance endangers very foundations of current guideline based antimalarial therapy. There is an unmet need to develop newer strategies, targeting novel pathophysiology to set high standards in antimalaria care. Of late, the antimalarial drug pipeline is becoming increasingly robust, and promises healthier outcomes. We discuss few drugs currently under pre-clinical development that have shown encouraging results.
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