Literature DB >> 16222738

Porcine acute liver failure model established by two-phase surgery and treated with hollow fiber bioartificial liver support system.

Yi Gao1, Ning Mu, Xiao-Ping Xu, Yan Wang.   

Abstract

AIM: To establish a highly reproducible animal model of acute liver failure (ALF), for assessing the effect of bioartificial liver support system (BALSS).
METHODS: A two-phase complete liver devascularization procedure was performed in eight loco-hybrid pigs. Blood biochemical index and liver biopsy were studied every 2 h after surgery, and survival time was recorded. The BALSS constructed with high volume recirculating technique was a hollow fiber circulating system consisting of a hepatocyte reactor-hollow fiber module inoculated with microcarrier-adhering hepatocytes, and a double pump, heparinized, thermostabilized, micro-capsulized activated carbon-adsorbing plasmapheresis system. Twelve pigs undergoing two-phase surgery were randomized into: control group (perfused without hepatocytes, n = 6) and treatment group (perfused with hepatocytes, n = 6). Intergroup liver biochemical indexes, survival time, and liver pathological changes were analyzed at regular intervals.
RESULTS: Two-phase surgery was performed in all the experimental pigs, and there was no obvious difference between their biochemical indexes. After 3 h of phase II surgery, ammonia (Amm) increased to (269+/-37) micromol/L. After 5 h of the surgery, fibrinogen (Fib) decreased to (1.5+/-0.2) g/L. After 7 h of the surgery, ALT, AST, Tbil and PT were (7.6+/-1.8) nka/L, (40+/-5) nka/L, (55+/-8) micromol/L and (17.5+/-1.7) nka/L respectively. After 9 h of surgery, ALB and Cr were (27+/-4) g/L and (87+/-9) micromol/L. After 13 h of surgery, BUN was (3.5+/-0.9) micromol/L. All the above values were different from those determined before surgery. Survival time of pigs averaged 13.5+/-1.4 h. ALF pigs in the other group were treated with BALSS. The comparison analysis between the treated and control animals showed the changes of Tbil, PT, Alb, BUN, Cr, Fib, and Amm (P<0.01), but there was no change of ALT and AST. The survival time was statistically different (P<0.01), and there was no significant difference in histological changes.
CONCLUSION: The porcine ALF model established by two-phase devascularized surgery is valid and reproducible. The hollow fiber BALSS can meet the needs of life support and is effective in treating ALF.

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Year:  2005        PMID: 16222738      PMCID: PMC4320355          DOI: 10.3748/wjg.v11.i35.5468

Source DB:  PubMed          Journal:  World J Gastroenterol        ISSN: 1007-9327            Impact factor:   5.742


  20 in total

1.  Apoptosis by gel-entrapped hepatocytes in a bioartificial liver.

Authors:  D J Rivera; G J Gores; S P Misra; J A Hardin; S L Nyberg
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2.  Microcapsules with improved mechanical stability for hepatocyte culture.

Authors:  Chao Yin; Ser Mien Chia; Chai Hoon Quek; Hanry Yu; Ren-Xi Zhuo; Kam W Leong; Hai-Quan Mao
Journal:  Biomaterials       Date:  2003-05       Impact factor: 12.479

3.  Xenotransplantation of isolated encapsulated porcine hepatocytes in the treatment of a highly fulminant hepatic failure model.

Authors:  P A Rivas-Vetencourt; E D Aranda; L Sorio; Z Quero; A Martinez; A M Vegas; M J Zerpa
Journal:  Transplant Proc       Date:  1997 Feb-Mar       Impact factor: 1.066

Review 4.  Which hepatocyte will it be? Hepatocyte choice for bioartificial liver support systems.

Authors:  J Tsiaoussis; P N Newsome; L J Nelson; P C Hayes; J N Plevris
Journal:  Liver Transpl       Date:  2001-01       Impact factor: 5.799

5.  Replacement of liver function in rats by transplantation of microcarrier-attached hepatocytes.

Authors:  A A Demetriou; J F Whiting; D Feldman; S M Levenson; N R Chowdhury; A D Moscioni; M Kram; J R Chowdhury
Journal:  Science       Date:  1986-09-12       Impact factor: 47.728

6.  Bioartificial liver support system using porcine hepatocytes entrapped in a three-dimensional hollow fiber module with collagen gel: An evaluation in the swine acute liver failure model.

Authors:  S Naka; K Takeshita; T Yamamoto; T Tani; M Kodama
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7.  Novel bioartificial liver support system: preclinical evaluation.

Authors:  J F Patzer; G V Mazariegos; R Lopez; E Molmenti; D Gerber; F Riddervold; A Khanna; W Y Yin; Y Chen; V L Scott; S Aggarwal; D J Kramer; R A Wagner; Y Zhu; M L Fulmer; G D Block; B P Amiot
Journal:  Ann N Y Acad Sci       Date:  1999-06-18       Impact factor: 5.691

8.  Evaluation of a novel bioartificial liver in rats with complete liver ischemia: treatment efficacy and species-specific alpha-GST detection to monitor hepatocyte viability.

Authors:  L M Flendrig; R A Chamuleau; M A Maas; J Daalhuisen; B Hasset; C G Kilty; S Doyle; N C Ladiges; G G Jörning; J W la Soe; D Sommeijer; A A te Velde
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9.  Devascularization surgical model of acute liver failure in minipigs.

Authors:  M Ryska; E Kieslichová; T Pantoflícek; O Ryska; R Zazula; J Skibová; M Hájek
Journal:  Eur Surg Res       Date:  2004 May-Jun       Impact factor: 1.745

10.  [Isolation and culture of pig hepatocyte in large scale for the application of bioartificial liver system].

Authors:  Yu Jeong Chung; Hyuk Joon Lee; Young Taeg Koh; Sang Beom Kim; Seong Hoon Kim; Seok Ho Choi; Nam Joon Yi; Seong Hwan Chang; Eun Lan Yang; Kyung Suk Suh; Yoon Shin Lee; Kuhn Uk Lee
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  4 in total

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Review 2.  An overview of animal models for investigating the pathogenesis and therapeutic strategies in acute hepatic failure.

Authors:  María-Jesús Tuñón; Marcelino Alvarez; Jesús-M Culebras; Javier González-Gallego
Journal:  World J Gastroenterol       Date:  2009-07-07       Impact factor: 5.742

3.  Establishment of a Novel Simplified Surgical Model of Acute Liver Failure in the Cynomolgus Monkey.

Authors:  Lei Cai; Jun Weng; Lei Feng; Guolin He; Jiasheng Qin; Zhi Zhang; Yang Li; Qing Peng; Zesheng Jiang; Mingxin Pan; Yi Gao
Journal:  Biomed Res Int       Date:  2016-12-21       Impact factor: 3.411

Review 4.  Applications of Nanobiomaterials in the Therapy and Imaging of Acute Liver Failure.

Authors:  Yuanyuan Jin; Haixia Wang; Ke Yi; Shixian Lv; Hanze Hu; Mingqiang Li; Yu Tao
Journal:  Nanomicro Lett       Date:  2020-11-19
  4 in total

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