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hymenolepis/carbohydrate

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Effects of 5-hydroxytryptamine on carbohydrate metabolism in Hymenolepis diminuta (Cestoda).

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Under in vitro anaerobic and aerobic incubations the presence of 5-hydroxytryptamine (5-HT) resulted in an accelerated rate of carbon transfer through the carbohydrate metabolic pathways of Hymenolepis diminuta resulting in an increase in worm tissue total carbon pools. Under aerobic incubation,

Partial characterization of the carbohydrates of the eggs (oncospheres) of the tapeworm, Hymenolepis diminuta.

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The carbohydrate constituents of whole eggs and fractions derived from the eggs of Hymenolepis diminuta were partly characterized. Whole eggs contained 9.6 ng of carbohydrate (phenol-sulphuric acid-positive material) per egg, and 3.6 ng of glucose. Analysis of hydrolysed eggs by HPLC demonstrated

Temporal changes in glucose and carbohydrate metabolism in the oncospheres of the cyclophyllidean tapeworm, Hymenolepis diminuta.

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When incubated in vitro for 24 h, oncospheres of Hymenolepis diminuta absorb and metabolize radioactive glucose. Between 0 and 12 h post-activation, oncospheres absorb glucose, but glucose is neither metabolized into other carbohydrates nor incorporated into the ethanol-precipitable fraction (which

Quantification of the control of carbohydrate catabolism in the tapeworm Hymenolepis diminuta.

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The elasticities for the different steps of carbohydrate catabolism in the tapeworm Hymenolepis diminuta were estimated from perturbation experiments. These data were then used to calculate flux and metabolite control coefficients. Enzyme elasticities were also calculated from the rate equations and

Effect of metacestodes of Hymenolepis diminuta on storage and circulating carbohydrates in the intermediate host, Tenebrio molitor.

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The metamorphosis of oncospheres of the rat tapeworm, Hymenolepis diminuta, to mature metacestodes induces several pathophysiological effects in the intermediate host, Tenebrio molitor (Coleoptera). Previous investigations have failed to elucidate the mechanism responsible for changes in the host
Diets of rats infected with Hymenolepis diminuta (CESTODA: Cyclophyllidea) were altered with respect to carbohydrate content and to roughage, and the effects on worm growth and development were studied. Compared to worms from rats fed a 56% glucose diet, those on a 56% starch diet were heavier at 10

Complex carbohydrates in shell precursor globules of the vitellarium and at the eggshell of Hymenolepis microstoma (Cestoda).

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The vitellocytes of Hymenolepis microstoma contain protein globules as building material for the shell of egg cocoons. Complex carbohydrates were detected as an additive component, dispersed in the matrix of the shell globules. Similar glycans were found at newly formed shells, suggesting that these

Application of metabolic control analysis to the pathways of carbohydrate breakdown in Hymenolepis diminuta.

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The application of metabolic control theory to carbohydrate breakdown in the tapeworm Hymenolepis diminuta shows that it is not necessary for both phosphoenolpyruvate carboxykinase and pyruvate kinase to be modulated in order to control the relative fluxes through the two arms of the

A study of carbohydrate metabolism in the eggs (oncospheres) of the tapeworm, Hymenolepis diminuta, with special reference to glucose.

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When incubated in vitro for 24 h, intact eggs, chemically shelled eggs (obtained by treating intact eggs with NaOCl), activated larvae (eggs in which the outer shell and inner envelope were removed), and oncospheres (activated larvae treated with papain to remove the embryophore) absorb and

Partial characterization of the protein and carbohydrate constituents of the egg shell of Hymenolepis diminuta (Cestoda).

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The egg shell of Hymenolepis diminuta is composed of 31.7% protein and 2.9% carbohydrate (by weight), as determined using the Lowry and phenol-sulfuric acid assays and bovine serum albumin and glucose, respectively, as standards. Amino acid analyses of egg shells demonstrated the presence of 16

Effect of dietary carbohydrate intake on the growth of Hymenolepis dimiuta (Cestoda) in the laboratory rat.

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Hymenolepis diminuta: migration, and the rat host's intestinal and blood plasma glucose levels following dietary carbohydrates intake.

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