Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation, which are a part of the macrophage (Mφ) anti-microbial response. Mφs infected with Trypanosoma cruzi (Tc) produce insufficient levels of oxidative species and lower levels of glycolysis compared to classical Mφs. How Mφs fail to elicit a potent ROS/NO response during infection and its link to glycolysis is unknown. Herein, we evaluated for ROS, NO, and cytokine production in the presence of metabolic modulators of glycolysis and the Krebs cycle. Metabolic status was analyzed by Seahorse Flux Analyzer and mass spectrometry and validated by RNAi. Tc infection of RAW264.7 or bone marrow-derived Mφs elicited a substantial increase in peroxisome pr...
BALB/c mice are highly susceptible while C57BL/6 mice are relatively resistant to experimental Trypa...
There is increasing evidence that Trypanosoma cruzi antioxidant enzymes play a key immune evasion ro...
Trypanosoma cruzi is highly sensitive to oxidative stress caused by reactive oxygen species. Trypano...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
The activation of macrophage respiratory burst in response to infection with Trypanosoma cruzi infli...
Trypanosoma cruzi infection triggers substantial production of nitric oxide (NO), which has been sho...
Trypanosoma cruzi infection triggers substantial production of nitric oxide (NO), which has been sho...
Chagas disease is a neglected tropical disease, which affects an estimate of 6-7 million people worl...
The hemoflagellate protozoan parasite Trypanosoma cruzi is the causative agent of Chagas disease, a ...
This study was carried out to determine the role of reactive nitrogen intermediates in Trypanosoma c...
NO is considered to be a key macrophage-derived cytotoxic effector during Trypanosoma cruzi infectio...
The production of nitric oxide (NO) is a key defense mechanism against intracellular pathogens but i...
BALB/c mice are highly susceptible while C57BL/6 mice are relatively resistant to experimental Trypa...
There is increasing evidence that Trypanosoma cruzi antioxidant enzymes play a key immune evasion ro...
Trypanosoma cruzi is highly sensitive to oxidative stress caused by reactive oxygen species. Trypano...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
<p>Metabolism provides substrates for reactive oxygen species (ROS) and nitric oxide (NO) generation...
The activation of macrophage respiratory burst in response to infection with Trypanosoma cruzi infli...
Trypanosoma cruzi infection triggers substantial production of nitric oxide (NO), which has been sho...
Trypanosoma cruzi infection triggers substantial production of nitric oxide (NO), which has been sho...
Chagas disease is a neglected tropical disease, which affects an estimate of 6-7 million people worl...
The hemoflagellate protozoan parasite Trypanosoma cruzi is the causative agent of Chagas disease, a ...
This study was carried out to determine the role of reactive nitrogen intermediates in Trypanosoma c...
NO is considered to be a key macrophage-derived cytotoxic effector during Trypanosoma cruzi infectio...
The production of nitric oxide (NO) is a key defense mechanism against intracellular pathogens but i...
BALB/c mice are highly susceptible while C57BL/6 mice are relatively resistant to experimental Trypa...
There is increasing evidence that Trypanosoma cruzi antioxidant enzymes play a key immune evasion ro...
Trypanosoma cruzi is highly sensitive to oxidative stress caused by reactive oxygen species. Trypano...