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Biomedical subjects

A Mas

Publications and source records attributed to A Mas.

At least 181 records · Page 10Linked to original sources

[Oliguric and non-oliguric renal failure in high risk patient in intensive care units (author's transl)].

Oliguric and non-oliguric acute renal failure was studied in a group of 28 high risk patients in an intensive care unit. Of these, 15 (53.5%) presented oliguric and 13 (46.4%) non oliguric acute renal failure. Causal agents of the renal failure were postoperative in 14 cases, mainly peritonitis; medical in 10 and posttraumatic in 4. Oliguric renal failure was most commonly medical, while non-oliguric renal failure was predominantly postoperative in origin (p less than 0.05). Results of urinalysis indicative of renal failure were similar in both groups: NAO, osmolarity, FeNa, BUN o/p and creatinine o/p, as were degree and course of renal failure, and the appearance of complications and indications for dialysis. There was no significant difference in mortality rate between oliguric (93%) and non-oliguric (85%) patients; total mortality was 89%. The results of this study clearly show that non-oliguric acute renal failure carries the same poor prognosis in high risk patients in intensive care units as do the oliguric forms of the entity.

Acute Kidney Injury↗

Intracellular and exchangeable potassium in cirrhosis. Evidence against the occurrence of potassium depletion in cirrhosis with ascites.

The intracellular potassium content of leukocytes, the extracellular fluid volume (82Br space), and exchangeable potassium were determined in 28 patients with cirrhosis of the liver (18 with ascites) and in 15 hospitalized controls. No intracellular potassium depletion could be identified in these patients. Leukocyte potassium was similar in cirrhotic patients with and without ascites (355.9 +/- 25.3 and 348.1 +/- 31.9 mEq/kg of dry solids, respectively) and in hospitalized controls (359.7 +/- 27.4) (mean +/- SD). The extracellular fluid volume was similar in controls and cirrhotics without ascites, but markedly increased in cirrhotics with ascites. The exchangeable potassium (mEq/kg of body weight) was similar in nonascitic cirrhotics and in hospitalized controls, but significantly lower in patients with cirrhosis and ascites. However, when the estimated weight of the extracellular fluid volume was substrated from the total body weight, thus obviating the influence of the increased extracellular fluid volume of ascitic patients in the body weight, the exchangeable potassium (mEq/kg of "corrected" body weight) was similar in cirrhosis with ascites (52.9 +/- 6.7 mEq/kg), nonascitic cirrhotics (55.8 +/- 6.1 mEq/kg) and hospitalized controls (55.0 +/- 8.3 mEq/kg), and a significant correlation was obtained between the exchangeable potassium and the leukocyte potassium content. In five patients, the measurements were repeated after relieving ascites with diuretics. No change was observed in the leukocyte potassium, but exchangeable potassium (mEq/kg of body weight) increased, reaching values not significantly different from controls or nonascitic cirrhotics. The exchangeable potassium (mEq/kg of "correct" body weight) did not change. Our results strongly suggest that potassium depletion was not present in the series of cirrhotic patients studied.

Aged↗

Metabolic acidosis and coma due to an overdose of nalidixic acid.

A case of severe metabolic acidosis and coma after taking 28 g of nalidixic acid is described. After administration of 600 mEq of sodium bicarbonate the patient developed a respiratory alkalosis with secondary tetany. She recovered her state of consciousness nine hours later and the acid-base disturbance resolved after sixty hours.

Acidosis↗

Renin, aldosterone and renal haemodynamics in cirrhosis with ascites.

The interrelationships between the renin-angiotensin-aldosterone system, renal haemodynamics and urinary sodium excretion were investigated in fifty-six non-azotaemic cirrhotics with ascites. In twelve additional patients the renal renin secretion rate was also studied. Plasma renin activity and concentration and plasma aldosterone ranged from normal to very high values. There was a significant inverse relationship between plasma aldosterone and the urinary sodium excretion. Plasma aldosterone showed a highly significant direct correlation with plasma renin activity, and plasma renin concentration was closely and directly related to the estimated renin secretion rate. Neither plasma renin activity, plasma renin concnetration nor the estimated renin secretion rate correlated with the renal plasma flow or the glomerular filtration rate. These results suggest that in non-azotaemic cirrhosis with ascites the renin-angiotensin-aldosterone system is an important factor influencing sodium excretion, increased plasma renin and aldosterone concentrations are mainly due to an increased secretion rate, and total renal perfusion is not a major factor influencing renin secretion.

Aldosterone↗

Functional renal failure and haemorrhagic gastritis associated with endotoxaemia in cirrhosis.

Forty-three patients with cirrhosis and ascites, 21 with normal renal function, 10 with a progressive functional renal failure (FRF), and 12 with a steady FRF, were investigated for the presence of endotoxaemia by the Limulus lysate test. Endotoxaemia was found in nine patients with FRF and in none of the 21 with normal renal function (P less than 0-01). A positive Limulus test was almost exclusively associated with a progressive FRF (eight of 10 patients) and all but one of them died. Renal function improved as endotoxaemia disappeared in the survivor. Endotoxaemia was also associated with haemorrhage due to acute erosions of the gastric mucosa, being present in six of the seven patients who had this complication. Intravascular coagulation was not found in any patient. The Limulus test was positive in the ascitic fluid in 18 of 21 patients tested, although only two of them had peritonitis. These results suggest that endotoxaemia may play a critical role in the development of progressive renal failure and haemorrhagic gastritis in cirrhosis, and emphasise the potential risk of procedures involving reinfusion of ascitic fluid.

Blood Coagulation Tests↗

Renal failure associated with demeclocycline in cirrhosis.

Three patients with cirrhosis, ascites, and dilutional hyponatremia were treated with demeclocycline in an attempt to correct the abnormal water retention. Demeclocycline administration (600 to 900 mg/day for 8 to 9 days) resulted in [a] increased blood urea nitrogen and plasma creatinine concentrations; [b] reduction of the inulin clearance by between 63% to 78% and of paraaminophippurate clearance by 36% to 77%; and [c] an impairment of the renal concentrating ability. Urine osmolality decreased to hypotonic levels, but polyuria did not appear, probably because it was prevented by the reduction of the glomerular filtration rate. Renal failure was reversible on withdrawal of demeclocycline. No other causes than demeclocycline administration could be found to explain the reduction of the glomerular filtration rate and the estimated renal plasma flow.

Blood Urea Nitrogen↗

Role of glutathione in selenite binding by human plasma.

The erythrocyte-mediated reduction of selenite has been reproduced by the addition of reduced glutathione to plasma at levels comparable to those present in the erythrocyte. The reaction has been followed by chromatography and ultraviolet (UV) absorption spectroscopy (in the absence of plasma). The first detectable compound, selenium diglutathione, is very unstable in physiological conditions. The product of the reaction does not contain glutathione and is able to react and incorporate selenium into plasma proteins without the participation of hemoglobin or glutathione reductase. A saturable low molecular weight compound is also able to bind selenium, which may be relevant in the initial distribution and excretion of selenium after selenite administration.

Blood Proteins↗

Selenite metabolism in rat and human blood.

The binding of selenite, the form of selenium used in the treatment of Keshan disease, to plasma proteins and the role of erythrocytes in this process have been studied. The experiments were carried out by incubating 75Se as selenite with plasma and whole blood in vitro (human and rat) and in vivo (rat) and subsequent fractionation by Sephadex G-150 gel filtration. Human and rat plasma proteins were unable to incorporate selenium from selenite, as shown by the negligible amount present in proteins after incubation of plasma with selenite. The incorporation can be carried out after internalization of selenite by the erythrocytes in a fast, temperature dependent process. Hemoglobin, being the major binding protein for the newly reduced selenium in the erythrocyte, might have a role in the uptake of selenite by erythrocytes. The greater affinity of plasma proteins for the final selenium compound resulting from reduction could be the cause of the efflux. However, this is minimal in the absence of plasma, as is evident from the results obtained from blood reconstituted with saline solution instead of plasma. At least two proteins, one albumin like, probably albumin itself and the other of molecular weight close to or greater than 200,000 in the plasma, are involved in the binding and efflux processes.

Animals↗