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Selection of Plasmodium falciparum Parasites for Cytoadhesion to Human Brain Endothelial Cells
Published on: January 3, 2012
Protection against cerebral malaria by the low-molecular-weight thiol pantethine
Marie-France Penet1, Mhamad Abou-Hamdan, Nicolas Coltel
1Centre de Résonance Magnétique Biologique et Médicale, Unite Mixte de Recherche Centre National de la Recherche Scientifique 6612, Université de la Méditerranée, 13005 Marseille, France.
Abstract:
We report that administration of the low-molecular-weight thiol pantethine prevented the cerebral syndrome in Plasmodium berghei ANKA-infected mice. The protection was associated with an impairment of the host response to the infection, with in particular a decrease of circulating microparticles and preservation of the blood-brain barrier integrity. Parasite development was unaffected. Pantethine modulated one of the early steps of the inflammation-coagulation cascade, i.e., the transbilayer translocation of phosphatidylserine at the cell surface that we demonstrated on red blood cells and platelets. In this, pantethine mimicked the inactivation of the ATP-binding-cassette transporter A1 (ABCA1), which also prevents the cerebral syndrome in this malaria model. However, pantethine acts through a different pathway, because ABCA1 activity was unaffected by the treatment. The mechanisms of pantethine action were investigated, using the intact molecule and its constituents. The disulfide group (oxidized form) is necessary to lower the platelet response to activation by thrombin and collagen. Thio-sensitive mechanisms are also involved in the impairment of microparticle release by TNF-activated endothelial cells. In isolated cells, the effects were obtained by cystamine that lacks the pantothenic moiety of the molecule; however, the complete molecule is necessary to protect against cerebral malaria. Pantethine is well tolerated, and it has already been administered in other contexts to man with limited side effects. Therefore, trials of pantethine treatment in adjunctive therapy for severe malaria are warranted.
Insights
Pantethine, a thiol compound, prevents cerebral malaria in mice by modulating inflammation and preserving the blood-brain barrier. This suggests pantethine as a potential adjunctive therapy for severe malaria.
Area of Science:
- Biomedical Science
- Infectious Disease Research
- Pharmacology
Background:
- Cerebral malaria is a severe complication of Plasmodium infection.
- The exact mechanisms leading to cerebral malaria are not fully understood.
- Current treatments for severe malaria have limitations.
Purpose of the Study:
- To investigate the protective effect of pantethine against cerebral malaria.
- To elucidate the mechanisms by which pantethine exerts its protective effects.
- To evaluate pantethine as a potential adjunctive therapy for severe malaria.
Main Methods:
- Administration of pantethine to Plasmodium berghei ANKA-infected mice.
- Assessment of cerebral syndrome development, parasite load, and blood-brain barrier integrity.
- Investigation of pantethine's effects on cellular responses, including microparticle release and phosphatidylserine translocation.
Main Results:
- Pantethine administration prevented cerebral syndrome in infected mice.
- Protection was associated with reduced circulating microparticles and preserved blood-brain barrier integrity.
- Pantethine modulated early inflammation-coagulation cascade steps, specifically phosphatidylserine translocation, independent of ABCA1 activity.
Conclusions:
- Pantethine demonstrates significant protective effects against cerebral malaria in a mouse model.
- The mechanism involves modulating host inflammatory responses and maintaining blood-brain barrier integrity.
- Pantethine is well-tolerated and warrants clinical trials as an adjunctive therapy for severe malaria.
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