AbstractA lack of molecular understanding of the targets and mechanisms of artemisinin action has impeded the improvisation of more efficient antimalarials based on this class of endoperoxide drugs. We have synthesized a heme-artemisinin adduct designated as “hemart” to discover if it mediates the ability of artemisinin to inhibit heme polymerization. Hemart mimics heme in binding to Plasmodium falciparum histidine-rich protein II (PfHRP II) but cannot self-polymerize. Instead, it inhibits all heme polymerizations, including basal and those triggered by PfHRP II, Monooleoyl glycerol (MOG), or P. yoelii extract. Hemart has an edge over heme in displacing heme from PfHRP II, and either low pH or chloroquine dissociates heme but not hemart fro...
Artemisinin and its analogues are currently the most effective anti-malarial drugs. The activation o...
AbstractThe emergence of drug resistant strains of Plasmodium spp. creates a critical need for the d...
Digestion of hemoglobin in the food vacuole of the malaria parasite produces very high quantities of...
AbstractA lack of molecular understanding of the targets and mechanisms of artemisinin action has im...
A lack of molecular understanding of the targets and mechanisms of artemisinin action has impeded th...
Endoperoxide antimalarials based on the ancient Chinese drug Qinghaosu (artemisinin) are currently o...
Endoperoxide antimalarials based on the ancient Chinese drug Qinghaosu (artemisinin) are currently o...
Endoperoxide antimalarials based on the ancient Chinese drug Qinghaosu (artemisinin) are currently o...
Fast spreading drug resistance to commonly used antimalarial drugs like chloroquine and pyrimethamin...
The isolation of artemisinin from the traditional medicinal herb qīng hāo (Artemisia annua), its cha...
Malaria, one of the most deadly infectious diseases in the world, is caused by a protozoan parasite,...
AbstractIn vitro, the heme cofactor of human iron(II) hemoglobin was efficiently and quickly alkylat...
The polymerization of hemoglobin-derived ferric-protoporphyrin IX [Fe(III)PPIX] to inert hemozoin (m...
Plasmodium has evolved to regulate the levels and oxidative states of iron protoporphyrin IX (Fe-PPI...
[14C]Artemisinin was taken up by Plasmodium falciparum in culture and concentrated in hemozoin. In v...
Artemisinin and its analogues are currently the most effective anti-malarial drugs. The activation o...
AbstractThe emergence of drug resistant strains of Plasmodium spp. creates a critical need for the d...
Digestion of hemoglobin in the food vacuole of the malaria parasite produces very high quantities of...
AbstractA lack of molecular understanding of the targets and mechanisms of artemisinin action has im...
A lack of molecular understanding of the targets and mechanisms of artemisinin action has impeded th...
Endoperoxide antimalarials based on the ancient Chinese drug Qinghaosu (artemisinin) are currently o...
Endoperoxide antimalarials based on the ancient Chinese drug Qinghaosu (artemisinin) are currently o...
Endoperoxide antimalarials based on the ancient Chinese drug Qinghaosu (artemisinin) are currently o...
Fast spreading drug resistance to commonly used antimalarial drugs like chloroquine and pyrimethamin...
The isolation of artemisinin from the traditional medicinal herb qīng hāo (Artemisia annua), its cha...
Malaria, one of the most deadly infectious diseases in the world, is caused by a protozoan parasite,...
AbstractIn vitro, the heme cofactor of human iron(II) hemoglobin was efficiently and quickly alkylat...
The polymerization of hemoglobin-derived ferric-protoporphyrin IX [Fe(III)PPIX] to inert hemozoin (m...
Plasmodium has evolved to regulate the levels and oxidative states of iron protoporphyrin IX (Fe-PPI...
[14C]Artemisinin was taken up by Plasmodium falciparum in culture and concentrated in hemozoin. In v...
Artemisinin and its analogues are currently the most effective anti-malarial drugs. The activation o...
AbstractThe emergence of drug resistant strains of Plasmodium spp. creates a critical need for the d...
Digestion of hemoglobin in the food vacuole of the malaria parasite produces very high quantities of...