Intracellular pathogens such as viruses and bacteria subvert all the major cellular functions of their hosts. Targeted host processes include protein synthesis, membrane trafficking, modulation of gene expression, antigen presentation, and apoptosis. In recent years, it has become evident that protozoan pathogens, including members of the phylum Apicomplexa, also hijack their host cell's functions to access nutrients and to escape cellular defenses and immune responses. These obligate intracellular parasites provide superb illustrations of the subversion of host cell processes such as the recruitment and reorganization of host cell compartments without fusion around the parasitophorous vacuole of Toxoplasma gondii; the export of Plasmodium ...
Apicomplexans are a diverse group of obligate parasites occupying different intracellular niches tha...
Plasmodium and Theileria parasites are obligate intracellular protozoa of the phylum Apicomplexa. Th...
(malaria) use unique secretory organelles for migration, cell invasion, manipulation of host cell fu...
Plasmodium, Toxoplasma, Cryptosporidium, Babesia, and Theileria are the major apicomplexan parasites...
The intracellular stages of apicomplexan parasites are known to extensively modify their host cells ...
Intracellular life-style has been adopted by many pathogens as a successful immune evasion mechanism...
The phylum Apicomplexa includes a large and diverse group of obligate intracellular parasites that r...
The phylum Apicomplexa includes a large and diverse group of obligate intracellular parasites that r...
Apicomplexan parasites are the causative agents of diseases that include malaria, toxoplasmosis, and...
Intracellular single-celled parasites belonging to the large phylum Apicomplexa are amongst the most...
Invasive stages of apicomplexan parasites require a host cell to survive, proliferate and advance to...
Intracellular single-celled parasites belonging to the large phylum Apicomplexa are amongst the most...
Members of the phylum Apicomplexa are obligate intracellular parasites that invade erythrocytes, lym...
Pathogenic intracellular bacteria, parasites and viruses have evolved sophisticated mechanisms to ma...
Apicomplexans are a diverse group of obligate parasites occupying different intracellular niches tha...
Apicomplexans are a diverse group of obligate parasites occupying different intracellular niches tha...
Plasmodium and Theileria parasites are obligate intracellular protozoa of the phylum Apicomplexa. Th...
(malaria) use unique secretory organelles for migration, cell invasion, manipulation of host cell fu...
Plasmodium, Toxoplasma, Cryptosporidium, Babesia, and Theileria are the major apicomplexan parasites...
The intracellular stages of apicomplexan parasites are known to extensively modify their host cells ...
Intracellular life-style has been adopted by many pathogens as a successful immune evasion mechanism...
The phylum Apicomplexa includes a large and diverse group of obligate intracellular parasites that r...
The phylum Apicomplexa includes a large and diverse group of obligate intracellular parasites that r...
Apicomplexan parasites are the causative agents of diseases that include malaria, toxoplasmosis, and...
Intracellular single-celled parasites belonging to the large phylum Apicomplexa are amongst the most...
Invasive stages of apicomplexan parasites require a host cell to survive, proliferate and advance to...
Intracellular single-celled parasites belonging to the large phylum Apicomplexa are amongst the most...
Members of the phylum Apicomplexa are obligate intracellular parasites that invade erythrocytes, lym...
Pathogenic intracellular bacteria, parasites and viruses have evolved sophisticated mechanisms to ma...
Apicomplexans are a diverse group of obligate parasites occupying different intracellular niches tha...
Apicomplexans are a diverse group of obligate parasites occupying different intracellular niches tha...
Plasmodium and Theileria parasites are obligate intracellular protozoa of the phylum Apicomplexa. Th...
(malaria) use unique secretory organelles for migration, cell invasion, manipulation of host cell fu...