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malaria/triacylglycerol

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12 結果

Effect of Azadirachta indica extract on plasma lipid levels in human malaria.

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Plasma lipid levels (cholesterol, HDL-cholesterol, LDL-cholesterol, and triacylglycerol) were estimated in patients with different antimalarial drugs. The lipid levels especially cholesterol and LDL-cholesterol were found to be lower (p > 0.01) during therapy when compared to the control group

Plasmodium Infection Induces Dyslipidemia and a Hepatic Lipogenic State in the Host through the Inhibition of the AMPK-ACC Pathway.

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Malaria is a major parasitic disease of humans and is a health public problem that affects more than 100 countries. In 2017, it caused nearly half a million deaths out of 219 million infections. Malaria is caused by the protozoan parasites of the genus Plasmodium and is transmitted by female

Octadecenoic fatty acids and their association with hemolysis in malaria.

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Octadecenoic fatty acids have been implicated in prehemolytic and hemolytic phenomena associated with malaria. Oleic [18:1 (n-9)] and cis-vaccenic [18:1 (n-7)] acids were found and quantified in the major neutral and phospholipids of the erythrocytes and plasmas of normal and Plasmodium

Uninfected red cells from malaria-infected blood: alteration of fatty acid composition involving a serum protein: an in vivo and in vitro study.

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Alteration of uninfected erythrocytes from Plasmodium (the malaria parasite)-infected blood remained an open question. In this study we compared the in vivo fatty acid compositions of control and uninfected monkey erythrocytes. A large (40%) increase in the linoleic acid level was observed, which

Glycerol metabolism in severe falciparum malaria.

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Gluconeogenesis and liver blood flow (LBF) in severe falciparum malaria were assessed from the clearance and metabolic response to intravenously administered glycerol (0.3 g/kg) and Indocyanine Green ([ICG] 0.4 mg/kg), respectively. Fasting baseline blood glycerol concentrations (mean +/- SD) were

Hepatic blood flow and metabolism in severe falciparum malaria: clearance of intravenously administered galactose.

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1. Hypoglycaemia and lactic acidosis are important manifestations of severe falciparum malaria. To investigate hepatic gluconeogenesis in acute falciparum malaria, liver blood flow and galactose clearance were estimated in seven adult patients with moderately severe infection and seven patients with

Food vacuole-associated lipid bodies and heterogeneous lipid environments in the malaria parasite, Plasmodium falciparum.

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The malaria parasite Plasmodium falciparum induces a sixfold increase in the phospholipid content of infected erythrocytes during its intraerythrocytic growth. We have characterized the lipid environments in parasitized erythrocyte using the hydrophobic probe, Nile Red. Spectral imaging with a

A female gametocyte-specific ABC transporter plays a role in lipid metabolism in the malaria parasite.

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ATP-binding cassette (ABC) transporters serve a variety of physiological functions as well as play key roles in drug resistance. The genome of the human malaria parasite, Plasmodium falciparum, encodes multiple members of this family, one of which, gABCG2, is transcribed predominantly in the

Lipid Compositions in Infant Formulas Affect the Solubilization of Antimalarial Drugs Artefenomel (OZ439) and Ferroquine during Digestion

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Recent studies have shown that the solubilization of two antimalarial drug candidates, artefenomel (OZ439) and ferroquine (FQ), designed to provide a single-dose combination therapy for uncomplicated malaria can be enhanced using milk as a lipid-based formulation. However, milk as an excipient faces

Lipids of Plasmodium lophurae, and of erythrocytes and plasma of normal and P. lophurae-infected Pekin ducklings.

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A lipid analysis was performed on the avian malaria parasite Plasmodium lophurae, freed from duckling erythrocytes by immune hemolysis, and on the erythrocytes and plasmas of normal and P. lophurae-infected ducklings. Major lipids of normal erythrocytes were: phosphatidylcholine (40% of total

Seagrass as a potential source of natural antioxidant and anti-inflammatory agents.

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BACKGROUND Halophila spp. is a strong medicine against malaria and skin diseases and is found to be very effective in early stages of leprosy. Seagrasses are nutraceutical in nature and therefore of importance as food supplements. OBJECTIVE The antibacterial, antioxidant, and anti-inflammatory

Lipid metabolism in insect disease vectors.

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More than a third of the world population is at constant risk of contracting some insect-transmitted disease, such as Dengue fever, Zika virus disease, malaria, Chagas' disease, African trypanosomiasis, and others. Independent of the life cycle of the pathogen causing the disease, the insect vector
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