2009PubMedRequires access

[Comparison of curative effect of low flow rate plasma exchange combined with hemofiltration for treatment of liver failure].

Yongfeng Yang, Ping Huang, Ning Zhang, Xiao-dong Gai, Xiaoning Feng, Yan-Dan Zhong, Lirong Wang, Yi-jun Yang, Wei Zhao

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Abstract

OBJECTIVE: To investigate the effect of plasma exchange (PE) combined with hemofiltration (HF) on liver failure. METHODS: Seventy-seven inpatients with liver failure admitted during January 2006 to August 2007 were randomly assigned to receive PE combined with HF (PE+HF group, 38 cases), or PE alone (PE group, 39 cases). Forty-one inpatients with liver failure who had not received artificial liver support treatment were assigned to serve as control group. The survival rates and biochemical parameters of three groups were compared. RESULTS: There was no significant difference in biochemical parameters before treatment among three groups. Compared with pre-treatment values, albumin (Alb), cholinesterase (ChE) and prothrombin activity (PTA) of both PE group and PE+HF group were significantly increased after treatment, and total bilirubin (TBIL), alanine transaminase (ALT), aspartate transaminase (AST) of both PE group and PE+HF group were significantly decreased after treatment (P<0.05 or P<0.01). The survival rate of PE group, PE+HF group and control group was 48.7% (19/39), 68.4% (26/38), and 29.3% (12/41) respectively. The survival rate of PE+HF group was significantly higher than that of control group (chi(2)=12.11, P<0.01). The rate of recovery of consciousness of patients with hepatic encephalopathy in PE+HF group was higher than that of PE group (42.8% vs. 0, P<0.05). Compared with PE alone, the result was better when it was combined with HF in correction of electrolyte disturbance and acid-base imbalance (19/23 vs. 0/21, P<0.05). CONCLUSION: Treatment of liver failure by PE combined with HF is safe and effective, and its efficacy is higher than PE alone.

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What this paper is about

OBJECTIVE: To investigate the effect of plasma exchange (PE) combined with hemofiltration (HF) on liver failure. METHODS: Seventy-seven inpatients with liver failure admitted during January 2006 to August 2007 were randomly assigned to receive PE combined with HF (PE+HF group, 38 cases), or PE alone (PE group, 39 cases). Forty-one inpatients with liver failure who had not received artificial liver support treatment were assigned to serve as control group. The survival rates and biochemical parameters of three groups were compared. RESULTS: There was no significant difference in biochemical parameters before treatment among three groups. Compared with pre-treatment values, albumin (Alb), cholinesterase (ChE) and prothrombin activity (PTA) of both PE group and PE+HF group were significantly increased after treatment, and total bilirubin (TBIL), alanine transaminase (ALT), aspartate transaminase (AST) of both PE group and PE+HF group were significantly decreased after treatment (P<0.05 or P<0.01). The survival rate of PE group, PE+HF group and control group was 48.7% (19/39), 68.4% (26/38), and 29.3% (12/41) respectively. The survival rate of PE+HF group was significantly higher than that of control group (chi(2)=12.11, P<0.01). The rate of recovery of consciousness of patients with hepatic encephalopathy in PE+HF group was higher than that of PE group (42.8% vs. 0, P<0.05). Compared with PE alone, the result was better when it was combined with HF in correction of electrolyte disturbance and acid-base imbalance (19/23 vs. 0/21, P<0.05). CONCLUSION: Treatment of liver failure by PE combined with HF is safe and effective, and its efficacy is higher than PE alone.

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Available abstract

OBJECTIVE: To investigate the effect of plasma exchange (PE) combined with hemofiltration (HF) on liver failure. METHODS: Seventy-seven inpatients with liver failure admitted during January 2006 to August 2007 were randomly assigned to receive PE combined with HF (PE+HF group, 38 cases), or PE alone (PE group, 39 cases). Forty-one inpatients with liver failure who had not received artificial liver support treatment were assigned to serve as control group. The survival rates and biochemical parameters of three groups were compared. RESULTS: There was no significant difference in biochemical parameters before treatment among three groups. Compared with pre-treatment values, albumin (Alb), cholinesterase (ChE) and prothrombin activity (PTA) of both PE group and PE+HF group were significantly increased after treatment, and total bilirubin (TBIL), alanine transaminase (ALT), aspartate transaminase (AST) of both PE group and PE+HF group were significantly decreased after treatment (P<0.05 or P<0.01). The survival rate of PE group, PE+HF group and control group was 48.7% (19/39), 68.4% (26/38), and 29.3% (12/41) respectively. The survival rate of PE+HF group was significantly higher than that of control group (chi(2)=12.11, P<0.01). The rate of recovery of consciousness of patients with hepatic encephalopathy in PE+HF group was higher than that of PE group (42.8% vs. 0, P<0.05). Compared with PE alone, the result was better when it was combined with HF in correction of electrolyte disturbance and acid-base imbalance (19/23 vs. 0/21, P<0.05). CONCLUSION: Treatment of liver failure by PE combined with HF is safe and effective, and its efficacy is higher than PE alone.

Key concepts: Medicine, Internal medicine, Gastroenterology, Albumin, Hepatic encephalopathy, Bilirubin, Hemofiltration, Alanine transaminase

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