Antimalarial Agents

- Design and Mechanism of Action

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Antimalarial Agents: Design and Mechanism of Action seeks to support medicinal chemists in their work toward antimalarial solutions, providing practical guidance on past and current developments and highlighting promising leads for the future. Malaria is a deadly disease which threatens half of the world’s population. Advances over several decades have seen vast improvements in the eff ectiveness of both preventative measures and treatments, but the rapid adaptability of the disease means that the ongoing search for improved and novel antimalarial drugs is essential. Beginning with a historical overview of malaria and antimalarial research, this book goes on to describe the biological aspects of malaria, highlighting the lifecycle of the parasite responsible for malaria, the problem of resistance, genetic mapping of the parasite’s genome, established drug targets, and potential drug targets for the future. This sets the scene for the following chapters which provide a detailed study of the medicinal chemistry of antimalarial agents, with a focus on the design of antimalarial drugs. Drawing on the knowledge of its experienced authors, and coupling historic research with current fi ndings to provide a full picture of both past and current milestones, Antimalarial Agents: Design and Mechanism of Action is a comprehensive yet accessible guide for all those involved in the design, development, and administration of antimalarial drugs, including student academic researchers, medicinal chemists, malaria researchers, and pharmaceutical scientists.

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Detaljer
  • SprogEngelsk
  • Sidetal622
  • Udgivelsesdato02-06-2020
  • ISBN139780081012109
  • Forlag Elsevier / The Lancet
  • FormatPaperback
Størrelse og vægt
  • Vægt1420 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Ubiquitin Pharmacokinetics Protein kinases Mechanism of action Plasmodium falciparum Phosphorylation Aminopeptidases Amino acids Hemoglobin Mitochondria Structure-activity relationships Quinine Drug Resistance Life cycle Cystatins Aldehydes Medicinal chemistry Proteasome ATP binding Drug targets Merozoites Sporozoites Kinases Cyclic peptides Mutations? Plasmodium vivax Glyceraldehyde 3-phosphate dehydrogenase Kinase Inhibitors Oocysts Dapsone Limonene Cysteine protease aminopyrazole antimalarial agents apicoplast Aspartyl Protease ATP4ase Aminoquinolines atovaquone Antimalarial bestatin arylthiophenes asparagine ethylenediamines cipargamin dihydrofolate reductase Cytochrome bc1 complex caseinolytic protease complex de novo pyrimidine biosynthesis calpain inhibitors Dipeptidyl Aminopeptidase dihydroisoquinolones dihydroorotate dehydrogenase (DHODH) ethylenediamines fosmidomycin farnesyl pyrophosphate/geranylgeranyl pyrophosphate synthase farnesyltransferases glucose-6-phosphate dehydrogenase FR900098 fumagillin imidazolopiperazines histo-aspartic protease dihydropteroate synthase epoxyketones falcilysin falcipains Exopeptidase gallinamide fumarranol Mitochondrial Electron Transport Chain glutamate dehydrogenase peptide boronates Plasmodium malariae Plasmodium ovale pyrimethamine Prenylation schizonts serine hydroxymethyltransferase licochalcone malarone<ce:sup>TM</ce:sup> tetrahydrofolate sulfadoxine thiapilidiaquinones medicagenin vinyl sulfones type II NADH dehydrogenase (NDH2) ß lactones mallatojaponins munchiwaren plasmepsins Plasmodium knowlesi non-mevalonate pathway trophozoites sulfonyl fluorides symplostatin proguanil quinoline methanols scabellones tetrahydroquinolines spiroindolones tectol

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