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alkalosis/carbohydrate

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The aim of this study was to observe the intracellular heat shock protein 72 (HSP72) and heme oxygenase-1 (HSP32) response to prolonged interval cycling following the ingestion of carbohydrates (CHO) and sodium bicarbonate (NaHCO(3)). Six recreationally active males (mean ± SD; age 23.2 ± 2.9 years,

The effects of alkalosis upon ketone body production and carbohydrate metabolism in man.

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The Effect of Alkalosis on the Excretion of Chloride and on Carbohydrate Metabolism.

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The effects of respiratory and metabolic alkalosis on coronary flow, hemodynamics and myocardial carbohydrate metabolism.

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[Disorders of carbohydrate metabolism and metabolic alkalosis].

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Cerebral carbohydrate metabolism of man during respiratory and etabolic alkalosis.

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Examining the parameters of the blood oxygen-transport system and oxygen tissue balance in 71 patients with bronchial asthma (BA) and in 60 patients with BA concurrent with varying carbohydrate metabolic disturbances (CMDs) revealed differences in oxygen transport. In asthmatic patients without
We conducted this study to quantify the oxidation of exogenous acetate and to determine the effect of increased acetate availability upon fat and carbohydrate utilization in humans at rest. Eight healthy volunteers (6 males and 2 females) completed 2 separate trials, 7 d apart in a single-blind,

Carbohydrate metabolism in potassium-depleted rats.

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Carbohydrate metabolism was examined in different organs of rats with dietary potassium deprivation for 4 weeks. Thereafter, a 24- or 48-hour starvation period caused a significant decrease of skeletal muscle and liver glycogen content in K+-depleted (KD) rats, whereas kidney glycogen concentration

[Metabolic effect of a carbohydrate combination during simultaneous amino acid infusion].

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During a period of 12 hours, eight normal subjects were infused with an electrolyte containing combined 24% carbohydrate solution of fructose, glucose, and xylitol at a ratio of 2:1:1 (Triofusin E 1000 Pfrimmer) with a rate of supply of 0.6 gm/kg/h. Lamino acids (Aminofusin L 10% carbohydrate-free

[Effects of the metabolic alkalosis induced by the diet in the high intensity anaerobic performance].

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OBJECTIVE The purpose of this study is to compare the effects of two diets, one acidifier and the other alkalizer, on the sport performance in an extreme anaerobic stress test. METHODS For that purpose thirteen individuals were subjected to two such diets in a crossed test for two and a half days.

[The mechanisms of disorders of carbohydrate metabolism in changes to the acid-base balance].

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Experiments on white rats found that both chronic acidosis and chronic alkalosis cause fasting hyperglycemia and decreases glucose tolerance. In hypophysectomized animals, alkalosis causes similar effects and acidosis leads to hypoglycemia. Acute acidosis stimulates insulin and corticotropin

Could the defect in type II diabetes mellitus be the absence of a postprandial alkalosis?

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Perhaps the liver following a meal has a significant change in pH. Insulin binding and several enzymes important in the postprandial state for processing lipids, proteins and carbohydrates all appear to have alkaline optimal pH levels. Diabetes mellitus type II could be due to the liver failing to

Carbohydrate metabolism and its response to catecholamines as modified in alkalotic rat.

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Metabolic activities and their responses to catecholamines were studied in fasted rats exposed to simulated altitudes. Analysis of hepatic levels of gluconeogenic intermediates revealed the inhibition of gluconeogenesis between glyceric acid 3-P and fructose 6-P associated with a rise of the ratios

Hyperphosphatemia

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Phosphate is an abundant mineral found in the body. The body store of phosphate is 500 to 800 g, with 85% of the total body phosphate present in crystals of hydroxyapatite in the bone — about 10% found in muscles and bones in association with proteins, carbohydrates, and lipids. The rest gets
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