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At least 19 recordsLinked to original sources

A novel method for regional citrate anticoagulation in continuous venovenous hemofiltration (CVVHF).

BACKGROUND: Continuous renal replacement therapy (CRRT) is increasingly used in managing acute renal failure (ARF) as it offers hemodynamic stability and significant solute clearance in this setting. However, it also requires anticoagulation. Traditionally, heparin has been the anticoagulant of choice but this increases hemorrhagic risk in already high-risk ARF patients. Regional citrate anticoagulation offsets this risk. However, it can be difficult to manipulate regional anticoagulation in CRRT. Moreover, citrate CRRT has been plagued by short optimal filter patency times. METHODS: We designed a novel citrate-based anticoagulation schema for continuous venovenous hemofiltration (CVVHF). We implemented this schema prospectively in caring for 24 individuals admitted to the intensive care unit with ARF requiring CRRT. Each individual had a contraindication to systemic anticoagulation. We evaluated filter patency using Kaplan-Meier methodology, comparing the effect of this citrate-CVVHF system to historical, saline-flush control CVVHF systems. RESULTS: 58 filters ran for a total of 2637.5 h. Average filter patency time was 45.4 +/- 25.5 h. At 48 h, 70% of the CVVHF-citrate system filters remained patent compared to only 16% of historical control saline-flush systems (p = 0.0001). The average filtered urea nitrogen/blood urea nitrogen ratio was 0.84 +/- 0.06 with an average urea clearance of 28.5 +/- 4.1 mL/min for CVVHF-citrate-treated individuals. Only three patients experienced transient complications related to CVVHF-citrate with resolution of these complications within 24 h. Ultimately, 58.3% of the CVVHF-citrate-treated patients survived to ICU discharge. CONCLUSIONS: This novel CVVHF-citrate system achieved excellent clearance and dramatically improved filter patency compared to saline-flush systems. Moreover, it did so with minimal toxicity.

Acute Kidney Injury↗

Continuous venovenous haemodialysis: a study of 84 cases.

UNLABELLED: Slow continuous therapies are the choice treatment in critically ill patients with acute renal failure (ARF). Over 4 years (1994-97) we retrospectively studied 84 intensive-care unit patients suffering from ARF and multiple organ failure, and treated with continuous venonenous haemodialysis (CVV-HD). The main cause of ARF was sepsis (59.3%). The global mortality was 88% and the patients who died were older than the survivors (p = 0.004). The main cause of dialyser change was the ratio FUN/BUN < or = 0.8 (61.6%); this ratio was calculated from the quotient filtrate urea nitrogen/blood urea nitrogen (urea nitrogen = urea/2.14). Most patients (94.8%) treated with initial replacement fluid infusion didn't show falls in blood pressure (BP). CONCLUSIONS: 1. The mortality was higher in elderly patients. 2. In most cases the monitoring FUN/BUN ratio allowed recovery of the patient's blood before clotting in the extracorporeal circuit. 3. The replacement fluid infusion at the beginning of the CVV-HD procedure contributes to patient's haemodynamic stability, because BP usually falls due to excessive ultrafiltration.

Acute Kidney Injury↗

Serum proteins and blood alpha amino nitrogen in cerebral palsy.

The mean serum proteins of 30 children over the age of 3 suffering from cerebral palsy was 7.20 with a standard deviation of 0.49 g. per 100 ml. No difference was found between children with the spastic and athetoid types of cerebral palsy. The electrophoretic pattern of the serum proteins did not differ in the two types, but the alpha 2 globulin diminished significantly with increasing age. There was no difference that could be considered "clinically significant" between the total serum proteins or their electrophoretic pattern in children with cerebral palsy and in four published series of normal children. The plasma and whole blood alpha amino nitrogen showed no significant difference between the two types of cerebral palsy.

Blood Proteins↗