Enhancement of the anti-oxidant metabolism of Leishmania parasites, dependent upon the unique dithiol trypanothione, has been implicated in laboratory-generated antimony resistance. Here, the role of the trypanothione-dependent anti-oxidant pathway is studied in antimony-resistant clinical isolates. Elevated levels of tryparedoxin and tryparedoxin peroxidase, key enzymes in hydroperoxide detoxification, were observed in antimonial resistant parasites resulting in an increased metabolism of peroxides. These data suggest that enhanced anti-oxidant defences may play a significant role in clinical resistance to antimonials. (C) 2010 Elsevier B.V. All rights reserved.</p
<div><p> BACKGROUND Treatment-refractory visceral leishmaniasis (VL) has become an important problem...
NOTE: THE CHARACTERS (SbIII) IN THIS ABSTRACT CANNOT BE DISPLAYED CORRECTLY ON THIS PAGE. PLEASE REF...
Ascorbate peroxidase (APX) is a redox enzyme of the trypanothione pathway that converts hydrogen per...
Enhancement of the anti-oxidant metabolism of Leishmania parasites, dependent upon the unique dithio...
Enhancement of the anti-oxidant metabolism of Leishmania parasites, dependent upon the unique dithio...
The clinical value of antimonial drugs, the mainstay therapy for leishmaniasis, is now threatened by...
The clinical value of antimonial drugs, the mainstay therapy for leishmaniasis, is now threatened by...
BACKGROUND: Tryparedoxin peroxidase (TXNPx) participates in defence against oxidative stress as an a...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
Leishmania donovani, the causative agent of visceral leishmaniasis, uses a cascade of enzymes that i...
Clinical resistance to pentavalent antimonial compounds has long been recognized as a major problem ...
Leishmania donovani, the causative agent of visceral leishmaniasis, uses a cascade of enzymes that i...
<div><p> BACKGROUND Treatment-refractory visceral leishmaniasis (VL) has become an important problem...
NOTE: THE CHARACTERS (SbIII) IN THIS ABSTRACT CANNOT BE DISPLAYED CORRECTLY ON THIS PAGE. PLEASE REF...
Ascorbate peroxidase (APX) is a redox enzyme of the trypanothione pathway that converts hydrogen per...
Enhancement of the anti-oxidant metabolism of Leishmania parasites, dependent upon the unique dithio...
Enhancement of the anti-oxidant metabolism of Leishmania parasites, dependent upon the unique dithio...
The clinical value of antimonial drugs, the mainstay therapy for leishmaniasis, is now threatened by...
The clinical value of antimonial drugs, the mainstay therapy for leishmaniasis, is now threatened by...
BACKGROUND: Tryparedoxin peroxidase (TXNPx) participates in defence against oxidative stress as an a...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
The current trend of antimony (Sb) unresponsiveness in the Indian subcontinent is a major impediment...
Leishmania donovani, the causative agent of visceral leishmaniasis, uses a cascade of enzymes that i...
Clinical resistance to pentavalent antimonial compounds has long been recognized as a major problem ...
Leishmania donovani, the causative agent of visceral leishmaniasis, uses a cascade of enzymes that i...
<div><p> BACKGROUND Treatment-refractory visceral leishmaniasis (VL) has become an important problem...
NOTE: THE CHARACTERS (SbIII) IN THIS ABSTRACT CANNOT BE DISPLAYED CORRECTLY ON THIS PAGE. PLEASE REF...
Ascorbate peroxidase (APX) is a redox enzyme of the trypanothione pathway that converts hydrogen per...