Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Methylene blue inhibits lumefantrine-resistant Plasmodium berghei

Domaine:

healthcare

Type de record:

paper
Créateur:
VicRutDanSab
Éditeur:
Jou
Hôte:
Introduction: Chemotherapy still is the most effective way to control malaria, a major public health problem in sub-Saharan Africa. The large-scale use of the combination therapy artemether-lumefantrine for malaria treatment in Africa predisposes lumefantrine to emergence of resistance. There is need to identify drugs that can be used as substitutes to lumefantrine for use in combination therapy. Methylene blue, a synthetic anti-methemoglobinemia drug, has been shown to contain antimalarial properties, making it a candidate for drug repurposing. The present study sought to determine antiplasmodial effects of methylene blue against lumefantrine- and pyrimethamine-resistant strains of P. berghei. Methodology: Activity of methylene blue was assessed using the classical four-day test on mice infected with lumefantrine-resistant and pyrimethamine-resistant P. berghei. A dose of 45 mg/kg/day was effective for testing ED90. Parasitemia and mice survival was determined. Results: At 45 mg/kg/day, methylene blue sustained significant parasite inhibition, over 99%, for at least 6 days post-treatment against lumefantrine-resistant and pyrimethamine-resistant P. berghei (p = 0.0086 and p = 0.0191, respectively). No serious adverse effects were observed. Conclusions: Our results indicate that methylene blue at a concentration of 45 mg/kg/day confers over 99% inhibition against lumefantrine- and pyrimethamine-resistant P. berghei for six days. This shows the potential use methylene blue in the development of antimalarials against lumefantrine- and pyrimethamine-resistant parasites.

Visit

doi.org

Similaires

Efficacy and safety of methylene blue in the treatment of malaria: a systematic reviewAfrican Silk Biomaterials as Efficient Eco-Friendly Sorbents for Adsorption of Methylene Blue DyeRemoval of methylene blue from textile waste water using kaolin and zeolite-x synthesized from Ethiopian kaolinEnhanced Adsorption Capacity of Methylene Blue Dye onto Kaolin through Acid Treatment: Batch Adsorption and Machine Learning StudiesAntimalarial Effect of the Root of Silene macrosolen A. Rich (Caryophyllaceae) on Plasmodium-berghei-Infected MiceDecreased susceptibility of Plasmodium falciparum to both dihydroartemisinin and lumefantrine in northern Uganda

Efficacy and safety of methylene blue in the treatment of malaria: a systematic review

Abstract Background Methylene blue (MB) was the first synthetic antimalarial to be discovered and wa

African Silk Biomaterials as Efficient Eco-Friendly Sorbents for Adsorption of Methylene Blue Dye

Methylene blue (MB) dye–contaminated wastewater, particularly from the textile industries, contribut

Removal of methylene blue from textile waste water using kaolin and zeolite-x synthesized from Ethiopian kaolin

The wastewater generated from textile factories is linked to one of the main water pollution problem

Enhanced Adsorption Capacity of Methylene Blue Dye onto Kaolin through Acid Treatment: Batch Adsorption and Machine Learning Studies

International audience Algerian kaolinite, sourced from Djebel Debbagh nuance 3 (DD3)

Antimalarial Effect of the Root of Silene macrosolen A. Rich (Caryophyllaceae) on Plasmodium-berghei-Infected Mice

Background. Malaria remains a major public health problem globally. Poor access to antimalarial drug

Decreased susceptibility of Plasmodium falciparum to both dihydroartemisinin and lumefantrine in northern Uganda

Abstract Artemisinin resistance may facilitate selection of Plasmodium falciparum resist