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parasitemia/allium sativum

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Assessment of in vivo antimalarial activity of arteether and garlic oil combination therapy.

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The study evaluates in vivo antimalarial activity of arteether and garlic pearl oil combination in Plasmodium berghei-infected mouse model of malaria. 72 h (Day 3) post infection, at 2-4% parasitemia, mice were treated with single dose intramuscular injection of α-β arteether, at 750 μg, in
Many reports indicate medicinal value of garlic (Allium sativum), a popular herbal medicine used worldwide, and its therapeutic effect against several diseases. Earlier studies in our laboratory have shown a potential therapeutic role of garlic-artemisinin combination in mice infected with

Antimalarial activity of allicin, a biologically active compound from garlic cloves.

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The incidence of malaria is increasing, and there is an urgent need to identify new drug targets for both prophylaxis and chemotherapy. Potential new drug targets include Plasmodium proteases that play critical roles in the parasite life cycle. We have previously shown that the major surface protein

Inhibitory effect of allicin on the growth of Babesia and Theileria equi parasites.

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Allicin is an active ingredient of garlic that has antibacterial, antifungal, antiviral, and antiprotozoal activity. However, the inhibitory effects of allicin on Babesia parasites have not yet been examined. In the present study, allicin was tested as a potent inhibitor against the in vitro growth

In vivo activity of ajoene against rodent malaria.

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Ajoene (4,5,9-trithiadodeca-1,6,11-triene 9-oxide), a product initially isolated from extracts of garlic (Allium sativum), was tested for its antimalarial activity in vivo in a well-characterized murine model. A single ajoene dose of 50 mg/kg, on the day of infection, suppressed the development of
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