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Biomedical subjects

I Rubecz

Publications and source records attributed to I Rubecz.

At least 37 records · Page 2Linked to original sources

Energy metabolism, substrate utilization, and nitrogen balance in parenterally fed postoperative neonates and infants. The effect of glucose, glucose + amino acids, lipid + amino acids infused in isocaloric amounts.

In ten postoperative neonates and young infants the effect of three isocaloric, isovolemic intravenous nutritional regimens (glucose alone, amino acids + glucose, amino acids + lipid) on nitrogen balance, energy, and substrate metabolism were tested. Each regimen was given for 24 hours to each infant through three consecutive days, providing the same daily amino acid intake when the amino acid mixture was combined with glucose or lipid. Oxygen consumption and RQ were followed through three or four hours during each study period. The participation of three main nutrients in energy metabolism was calculated from the urinary N excretion and nonprotein RQ. Administration of glucose infusion alone was associated with a negative N balance. Addition of amino acids with glucose produced a marked N retention. This positive N balance remained unchanged when lipid was substituted for glucose as a nonprotein energy source. Alpha amino-nitrogen excretion and participation of protein catabolism in total energy metabolism were found to be identical during the three nutritional regimens, indicating that the amino acids together with glucose or lipid were either retained in nonprotein pools or were utilized for protein synthesis.

Energy Metabolism↗

Growth and metabolic and hormonal profiles during transpyloric and nasogastric feeding in preterm infants.

The effect of transpyloric and nasogastric feeding on the blood concentration of glucose, lactate, pyruvate, glycerol, hydroxybutyrate, acetoacetate, alanine, insulin, pancreatic and total glucagon was determined in 20 preterm infants. The babies were studied on the last day of transpyloric feeding and the first and fifth days of ensuing nasogastric feeding. In 9 infants hourly measurements of hormones and metabolites were made at 1000, 1100, 1200, 1300 and 1400 hours. The blood concentrations of glucose, alanine, pancreatic and total glucagon were stable, the concentration of the other metabolites and insulin, less so. No significant difference in mean metabolite or hormone concentration was noted by time of day or type of feeding. Measurements made on the fifth day of nasogastric feeding showed no significant differences from those at the time of changeover. The infants were clinically well and growing normally at the time of study, but had low plasma insulin and high plasma glucagon concentrations. We conclude (i) the site of presentation of milk in the gastrointestinal tract has no effect on the circulating concentration of selected metabolites and hormones in the preterm infants, (ii) the preterm infant grows at a normal rate with a plasma insulin/glucagon ratio that in the adult would be expected to favour catabolism.

Alanine↗

Metabolic and hormonal responses of low birthweight infants to intravenously infused calories not exceeding the maintenance energy expenditure.

Eithe low birthweight infants were studied for their metabolic and hormonal responses to intravenous alimentation when the caloric input was varied. The study was made during three consecutive 12-hour periods, when solutions of glucose, glucose and amino-acids, and glucose and amino-acid and lipids were successively infused. Hypertonic glucose led to a fall in plasma free fatty acids and amino-acids. Supplementation with an amino-acid mixture increased the concentration of amino-acids but not above the fasting level. Thus, hypertonic glucose was an effective means for avoiding hyperaminoacidaemia. Blood urea was little changed, also indicating satisfactory use of amino-acids. The number and distribution of calories infused throughout the third 12-hour period, when lipid was infused, were also important factors contributing to the avoidance of hyperaminoacidaemia. The caloric needs of low birthweight infants kept at neutral temperatures should be individually assessed in the light of recent data. The administration of an unnecessarily large load of calories and nutrients to parenterally-fed infants can thereby be avoided.

Amino Acids↗

The elimination of free fatty acids, free glycerol and triglycerides from the plasma of low-birth-weight infants receiving intravenous fat emulsion and glucose.

The disappearance rate of plasma. free glycerol, free fatty acids and triglycerides following the termination of short-term (6-hr) infusion of fat emulsion (Intralipid) was studied in 12 low-birth-weight infants. The mean K values for each lipid component were found to be higher in infants receiving 10% glucose. Owing to the wide individual variation of responses and the small number of infants studied, only the disappearance rate of free fatty acids reached the level of significance. It is concluded that increased amounts of glucose given simultaneously with fat emulsion could diminish hyperlipidaemia by increasing the clearance of lipids from the plasma.

Dietary Fats↗

Acid-base status and urinary hydrogen ion excretion pattern in low-birth-weight infants receiving intravenous fat emulsion and glucose.

The acidifying effect of short-term (6-hr) infusion of intralipid was studied in 12 low-birth-weight infants by following the changes in acidbase status and urinary H+ excretion pattern. The infants received 5% or 10% glucose as a base-line calorie supply. Intravenous fat emulsion induced a transient metabolic acidosis. The slightly affected pH and BE recovered in the first two hours following Intralipi d infusion. Parallel to the recovery, urinary net acid excretion increased. NH+4 excretion responded rapidly, titratable acid showed a progressively increasing response and was the major component of net acid excretion. As to the mechanism involved in the activation of NH+4 production in the kidney, it is suggested that in addition to acidaemia increased fatty acid oxidation might contrbute to stimulation of renal gluconeogenesis and ammoniagenesis.

Acid-Base Equilibrium↗

The partition of maintenance energy expenditure and the pattern of substrate utilization in intrauterine malnourisheed newborn infants before and during recovery.

Total heat production and its major components, as well as the pattern of substrate utilization were measured by indirect calorimetry during a period of several hours in 15 small-for-gestational-age infants between the 2nd and 15th postnatal day (non-growing period) and between 16th and 39th day (growing period). 1. Mean total heat production of the non-growing infants did not exceed 50 Cal/kg/24 hrs. Mean basal metabolism in this period was not higher than that reported for premature infants of similar body size and postnatal age. It is concluded that the caloric input necessary to meet the cost of maintenance was less than that calculated from the components of energy metabolism. 2. Total energy expenditure was significantly higher in the growing period, and its partitioning showed that all the three components (basal-, resting-, and activity metabolism) were contributing to the increment. 3. The increase in total heat production, as well as that of the components, was closely related to the difference in age and body weight at the first and second examination. The individual increment in heat production during growth was determined chiefly by postnatal age and weight gain. 4. Carbohydrate utilization was the dominant component of the total energy expended by the non-growing infants. During recovery, a further rise occurred in carbohydrate oxidation, while there was a moderate decrease in the participation of fat and protein.

Birth Weight↗

Activity, energy metabolism and postnatal age relationship in low-birth-weight infants.

The relationship between heat production and different activity levels was examined in 30 low-birth-weight (premature and small-for-gestational age) infants. A low level of spontaneous activity was preponderant, with a gradual shift from activity scores near zero to higher intensities with increasing postnatal age. There was a close correlation between activity and heat production. Older infants displayed a greater amount of spontaneous activity and a larger variation in heat production and activity-intensity relationship. The rise in heat production at a given activity intensity was greater in older than in younger infants indicating that the energy cost of identical activity increases with postnatal age. "Maximum" oxygen consumption increased with postnatal age.

Birth Weight↗

Metabolic and hormonal effects of alternate infusion of hypertonic glucose and aminosol-glucose in premature infants.

The metabolic and hormonal effects of a short term (24-36 hrs), alternating intravenous administration of hypertonic (16%) glucose and Aminosol-glucose were investigated in premature infants. The majority of the infants under 1 500 g showed pathological signs and did not tolerate oral feeding. The purpose of the study was to explore an intravenous alimentation program capable of ensuring an improved amino acid utilization in terms of nitrogen balance, and to prevent some of the adverse effects of the amino acid mixture. It was thought that the hormonal state created by 16% glucose might increase the capacity of the tissues to utilize the amino acids. The relevant findings were as follows. 1. Plasma free fatty acids and amino acids decreased, plasma insulin and growth hormone increased markedly in response to 16% glucose. The plasma aminogram indicated a profound redistribution of amino acids. 2. Aminosol-glucose infusion after the 16% glucose, increased the concentration of amino acids, but only to the starting level. Thus the previously decreased alpha-amino nitrogen content allowed to avoid a hyperaminoacidaemia and a marked distortion of the plasma amino acid pattern. Administration of the amino acid-glucose mixture usually failed to maintain the previously stimulated insulin and growth hormone secretion. 3. The hormonal and metabolis responses to the intermittent infusion of hypertonic glucose and Aminosol-glucose were not associated with an improved nitrogen utilization. More than 50% of the administered amino acid nitrogen was excreted. 4. The metabolic acidosis observed under these condition was found to be variable, and practically compensated.

Amino Acids↗