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P M Newman

Publications and source records attributed to P M Newman.

5 recordsLinked to original sources

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Endotoxaemia in multiple organ failure due to sepsis.

Patients with multiple organ failure secondary to intraabdominal sepsis are often blood culture negative despite exhibiting the features of septic shock. This study examined the possible central role of endotoxin in such patients. In 15 consecutive intensive care patients with the above clinical picture endotoxin was measured by a chromogenic limulus (LAL) assay; on admission and thereafter 4 hourly. Regular blood cultures and cultures of any primary septic focus were also performed and liver function was assessed by measurement of indocyanine-green clearance from plasma (ICGC). All 15 patients had significant endotoxaemia at least intermittently. No significant difference was observed between survivors (n = 5) and non-survivors (n = 10) in either initial or peak endotoxin levels, although the pattern of endotoxaemia differed with non-survivors exhibiting consistently high or steadily increasing levels. Of 5 patients with an intra-abdominal (I/A) septic focus only one had a positive blood culture while 5 of 10 patients with extra-abdominal (E/A) infection had positive cultures. Despite this the I/A group had higher initial and peak endotoxin levels. 3 patients with Gram-positive septicaemia had significant endotoxaemia in the absence of any gram-negative infection. Changes in ICGC appeared to be of useful prognostic significance. ICGC was significantly lower in the I/A group and in both groups there was a significant negative correlation between ICGC and the level of endotoxaemia. These results suggest that endotoxin may play a central role in the syndrome of multiple organ failure and further suggest that the endotoxin is endogenous (gut-derived) secondary to failure of hepatic filtration.

Adult

Sedation in intensive care: morphine and renal function.

Intravenous morphine infusions have been administered to 12 critically-ill patients during controlled ventilation. Acute oliguric renal failure was present in 4 patients, who were treated with a combination of haemofiltration and haemodialysis. Severity of physiological disturbance was assessed using a modified APACHE Score, level of sedation by a linear-analogue scale, and blood morphine levels by high-pressure liquid chromatography. Morphine clearance was impaired in renal failure, and was dependent on haemofiltration volumes; accumulation of morphine did not occur during this form of treatment. Conscious level was clearly more closely related to the degree of physiological disturbance than blood morphine levels; and for a given blood morphine level, depression of consciousness was more pronounced the greater the degree of physiological disturbance. Use of a physiological sickness score may help to clarify some of the factors influencing cerebral function during critical illness. Careful clinical monitoring of level of sedation is important in patients with oliguric renal failure receiving morphine, and haemofiltration appears to reduce the risk of morphine accumulation in these patients.

Acute Kidney Injury

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