Malaria is a global infectious disease that threatens the lives of millions of people. Transcriptomics, proteomics and functional genomics studies, as well as sequencing of the Plasmodium falciparum and Homo sapiens genomes, have shed new light on this host-parasite relationship. Recent advances in accurate mass measurement mass spectrometry, sophisticated data analysis software, and availability of biological pathway databases, have converged to facilitate our global, untargeted biochemical profiling study of in vitro P. falciparum-infected (IRBC) and uninfected (NRBC) erythrocytes. In order to expand the number of detectable metabolites, several key analytical steps in our workflows were optimized. Untargeted and targeted data mining resu...
Malaria is a life-threatening parasitic infection caused by Plasmodium species. The causal organism ...
ABSTRACT Metabolomics is increasingly popular for the study of pathogens. For the malaria parasite P...
Abstract Background Cultured human red blood cells (RBCs) provide a powerful ex vivo assay platform ...
<div><p>Malaria is a global infectious disease that threatens the lives of millions of people. Trans...
Malaria is a global infectious disease that threatens the lives of millions of people. Transcriptomi...
Metabolomics uses high-resolution mass spectrometry to provide a chemical fingerprint of thousands o...
The malaria parasite, Plasmodium falciparum, proliferates rapidly in human erythrocytes by actively ...
Abstract The malaria parasite, Plasmodium falciparum, proliferates rapidly in human erythrocytes by ...
Metabolomics is a reliable omics tool to study the metabolome, the assortment of metabolites that pr...
The malaria parasite, Plasmodium falciparum, proliferates rapidly in human erythrocytes by actively ...
Malaria is a life-threatening parasitic infection caused by Plasmodium species and transmitted by An...
Metabolomics offers a powerful means to investigate human malaria parasite biology and host-parasite...
Plasmodium sp. are obligate intracellular parasites that derive most of their nutrients from their h...
Plasmodium sp. are obligate intracellular parasites that derive most of their nutrients from their h...
BackgroundCurrent available malaria diagnostic methods each have some limitations to meet the need f...
Malaria is a life-threatening parasitic infection caused by Plasmodium species. The causal organism ...
ABSTRACT Metabolomics is increasingly popular for the study of pathogens. For the malaria parasite P...
Abstract Background Cultured human red blood cells (RBCs) provide a powerful ex vivo assay platform ...
<div><p>Malaria is a global infectious disease that threatens the lives of millions of people. Trans...
Malaria is a global infectious disease that threatens the lives of millions of people. Transcriptomi...
Metabolomics uses high-resolution mass spectrometry to provide a chemical fingerprint of thousands o...
The malaria parasite, Plasmodium falciparum, proliferates rapidly in human erythrocytes by actively ...
Abstract The malaria parasite, Plasmodium falciparum, proliferates rapidly in human erythrocytes by ...
Metabolomics is a reliable omics tool to study the metabolome, the assortment of metabolites that pr...
The malaria parasite, Plasmodium falciparum, proliferates rapidly in human erythrocytes by actively ...
Malaria is a life-threatening parasitic infection caused by Plasmodium species and transmitted by An...
Metabolomics offers a powerful means to investigate human malaria parasite biology and host-parasite...
Plasmodium sp. are obligate intracellular parasites that derive most of their nutrients from their h...
Plasmodium sp. are obligate intracellular parasites that derive most of their nutrients from their h...
BackgroundCurrent available malaria diagnostic methods each have some limitations to meet the need f...
Malaria is a life-threatening parasitic infection caused by Plasmodium species. The causal organism ...
ABSTRACT Metabolomics is increasingly popular for the study of pathogens. For the malaria parasite P...
Abstract Background Cultured human red blood cells (RBCs) provide a powerful ex vivo assay platform ...