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Biomedical subjects

G F Batstone

Publications and source records attributed to G F Batstone.

35 records · Page 2Linked to original sources

Metabolic effects of cortisol in man--studies with somatostatin.

The metabolic effects of chronic hypercortisolaemia were studied by administration of tetracosactrin-depot, 1 mg I.M. daily for 36-60 hr to normal subjects. Partial insulin and glucagon deficiency were induced at the end of the period by infusion of somatostatin, 100 micrograms/h for 210 min. Tetracosactrin alone induced a three fold rise in basal serum cortisol levels and fasting blood glucose concentration rose from 5.2 +/- 0.2 to 7.2 +/- 0.2 mmole/l (p less than 0.01) with a rise in fasting serum insulin from 5.2 +/- 1.2 to 13.1 +/- 1.9 mU/l (p less than 0.02). Concentrations of the gluconeogenic precursors lactate, pyruvate and alanine were also raised, but non-esterified fatty acid, glycerol and ketone body levels were unchanged. Somatostatin infusion caused a 30%-50% decrease in serum insulin and a 20%-60% decrease in plasma glucagon concentrations both before and after tetracosactrin administration. A similar rise in blood glucose concentration, relative to the saline control, occurred over the period of somatostatin infusion both with and without elevated cortisol levels. However, prior tetracosactrin administration caused a 100% greater rise in blood ketone body concentrations during infusion of somatostatin than was seen in the euadrenal state, despite similar plasma NEFA concentrations. Hypercortisolaemia causes hyperglycaemia and elevated gluconeogenic precursor concentrations but the associated rise in serum insulin concentrations limits lipolysis and ketosis. In insulin deficiency, a ketotic effort of glucocorticoid excess is evident which may be independent of lipolysis and occurs despite concurrent glucagon deficiency. These catabolic actions of cortisol are likely to be of major importance in the metabolic response to stress.

Adult↗

Urine cortisol levels after burn injury.

The urinary level of cortisol has been assayed in 19 patients with burn injuries of varying severity over a 10-day period. Urine cortisol was increased in all patients over the initial days post burn when compared to normal health volunteers. In patients with the more severe burns mean cortisol levels correlated with the percentage body surface area of the burn. The overall pattern of cortisol excretion was similar in extent and duration to the changes in the levels of serum cortisol described in a previous study (Batstone et al., 1976). Further, urine cortisol excretion correlated with the levels of urine creatinine, magnesium, potassium and the sodium: potassium ratio lending further evidence to an important role of cortisol in peripheral tissue (particularly muscle). Cortisol output was still significantly raised at the end of the study period emphasizing the duration of the cortisol-induced catabolic drive after burn injury.

Adolescent↗

Lipoprotein changes after burn injury in man.

Lipoprotein changes have been investigated in 16 patients with burn injury. Serum, urine, and blister fluid were examined for apoprotein content. In the group of patients with moderate burns serum High Density Lipoprotein (HDL) fell drastically, and Low Density Lipoprotein (LDL) decreased slightly, whilst Very Low Density Lipoprotein (VLDL) rose. In blister fluid there was a greater loss of HDL apoprotein than LDL apoprotein or apoprotein C, whilst in concentrated urine a small quantity of HDL apoprotein could be detected. The loss of HDL, which is necessary as an apoprotein C receptor in the conversion of VLDL leads to LDL, may lead to a block in the conversion of VLDL to LDL. This may in part contribute to the hypertriglyceridemia, hypocholesterolemia, and hypophospholipidemia noted after burn injury.

Apolipoproteins↗

Urine proteins after burn injury.

Two-dimensional immunoelectrophoresis was used to examine the proteins present in urine during the first week following burn injury. Of the "serum" proteins present in the urine some glycoproteins were found to be in different relative proportions from those observed in serum. In patients sustaining severe burns the amount of protein excreted was increased compared to patients with mild burns and to controls. alpha 1-Antichymotrypsin detected in the urine of patients with severe burns was at times seen as a twin peak. This altered peak was of slower electrophoretic mobility and may represent a polymer of the protein or a complex of the protein with some other, possibly tissue-derived, protein.

Blood Proteins↗

Observations on serum and urine alkaline ribonuclease activity and urate after burn injury in man.

In an investigation into the disturbances of body function associated with burn injury we have measured the activity of alkaline ribonuclease (EC 3.1.4.22) and the level of urate in the serum and urine of patients sustaining burn injury. Ribonuclease activity was elevated in all patients. The degree of elevation can be related to the percentage of the body surface area burned and to a predictive index of burn mortality. Increased serum ribonuclease activity was accompanied by increased urine ribonuclease output. The relationship between serum urea and ribonuclease activity has been investigated. A significant correlation between these two parameters was observed during the first week post burn. We suggest that this correlation shows as a result of increased protein catabolism and renal dysfunction. After the first week a significant correlation between serum urea and ribonuclease activity was not observed. It is possible that, at this stage, increased ribonuclease activity is perhaps a result of tissue repair. Serum urate was found to be decreased in all patients after burn injury. Serum urate decrease expressed as a percentage of initial value, correlated very strongly with the predictive index of burn mortality. In severely burned patients the decrease in serum urate was accompanied by increased urine urate output and may indicate a change in renal handling of urate after burn injury.

Burns↗

Reversible lactic acidosis associated with repeated intravenous infusions of sorbitol and ethanol.

Infusions of fructose or sorbitol are used commonly in parenteral nutrition and may cause lactic acidosis. A case is reported in whom blood lactate concentration was monitored frequently over a 5-day period during intravenous feeding with a sorbitol-ethanol-amino acid mixture. During the first five infusions blood lactate rose only moderately, but with the final infusion lactate rose to 11-1 mmol/l and the patient had a severe metabolic acidosis. In retrospect the patient had shown deterioration in renal and hepatic function tests during the preceding 24 hr. On terminating the infusions the blood lactate concentration fell rapidly. It is suggested that great care should be exercised when using such infusions in ill patients and acid base status and renal and hepatic function should be monitored frequently.

Acidosis↗