Inside Cover: A Fragmenting Hybrid Approach for Targeted Delivery of Multiple Therapeutic Agents to the Malaria Parasite (ChemMedChem 3/2011)

The inside cover picture shows release of a Plasmodium falciparum DPAP1 inhibitor from a fragmenting hybrid. Iron(II)-promoted scission of a 1,2,4-trioxolane ring in the hybrid produces an initial cytotoxic effect while simultaneously precipitating release of the free DPAP1 inhibitor. Thus, two anti...

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Veröffentlicht in:ChemMedChem 2011-03, Vol.6 (3), p.382-382
Hauptverfasser: Mahajan, Sumit S., Deu, Edgar, Lauterwasser, Erica M. W., Leyva, Melissa J., Ellman, Jonathan A., Bogyo, Matthew, Renslo, Adam R.
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container_end_page 382
container_issue 3
container_start_page 382
container_title ChemMedChem
container_volume 6
creator Mahajan, Sumit S.
Deu, Edgar
Lauterwasser, Erica M. W.
Leyva, Melissa J.
Ellman, Jonathan A.
Bogyo, Matthew
Renslo, Adam R.
description The inside cover picture shows release of a Plasmodium falciparum DPAP1 inhibitor from a fragmenting hybrid. Iron(II)-promoted scission of a 1,2,4-trioxolane ring in the hybrid produces an initial cytotoxic effect while simultaneously precipitating release of the free DPAP1 inhibitor. Thus, two antiparasitic activities are conferred to the parasite in an iron(II)-dependent fashion. For more information, see the Communication by Matthew Bogyo, AdamR. Renslo, et al. on p.415ff.
doi_str_mv 10.1002/cmdc.201190006
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source Wiley Online Library Journals Frontfile Complete
subjects Antiparasitic agents
Chemical compounds
Cleavage
Cytotoxicity
drug delivery
Erythrocytes
hybrid drugs
Inhibitors
Iron
Malaria
Parasites
Pharmacology
Plasmodium falciparum
prodrugs
Vector-borne diseases
title Inside Cover: A Fragmenting Hybrid Approach for Targeted Delivery of Multiple Therapeutic Agents to the Malaria Parasite (ChemMedChem 3/2011)
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