Literature DB >> 10415580

Novel bioartificial liver support system: preclinical evaluation.

J F Patzer1, 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.   

Abstract

Preclinical safety and efficacy evaluation of a novel bioartificial liver support system (BLSS) was conducted using a D-galactosamine canine liver failure model. The BLSS houses a suspension of porcine hepatocytes in a hollow fiber cartridge with the hepatocytes on one side of the membrane and whole blood flowing on the other. Porcine hepatocytes harvested by a collagenase digestion technique were infused into the hollow fiber cartridge and incubated for 16 to 24 hours prior to use. Fifteen purpose-bred male hounds, 1-3 years old, 25-30 kg, were administered a lethal dose, 1.5 g/kg, of D-galactosamine. The animals were divided into three treatment groups: (1b) no BLSS treatment (n = 6); (2b) BLSS treatment starting at 24-26 h post D-galactosamine (n = 5); and (2c) BLSS treatment starting at 16-18 h post D-galactosamine (n = 4). While maintained under isoflurane anesthesia, canine supportive care was guided by electrolyte and invasive physiologic monitoring consisting of arterial pressure, central venous pressure, extradural intracranial pressure (ICP), pulmonary artery pressure, urinary catheter, and end-tidal CO2. All animals were treated until death or death-equivalent (inability to sustain systolic blood pressure > 80 mmHg for 20 minutes despite massive fluid resuscitation and/or dopamine administration), or euthanized at 60 hours. All animals developed evidence of liver failure at 12-24 hours as evidenced by blood pressure lability, elevated ICP, marked hepatocellular enzyme elevation with microscopic massive hepatocyte necrosis and cerebral edema, elevated prothrombin time, and metabolic acidosis. Groups 2b and 2c marginally prolong survival compared with Group 1b (pairwise log rank censored survival time analysis, p = 0.096 and p = 0.064, respectively). Since survival times for Groups 2b and 2c are not significantly different (p = 0.694), the groups were combined for further statistical analysis. Survival times for the combined active treatment Groups 2b and 2c are significantly prolonged versus Group 1b (p = 0.047). These results suggest the novel BLSS reported here can have a significant impact on the course of liver failure in the D-galactosamine canine liver failure model. The BLSS is ready for Phase I safety evaluation in a clinical setting.

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Year:  1999        PMID: 10415580     DOI: 10.1111/j.1749-6632.1999.tb08516.x

Source DB:  PubMed          Journal:  Ann N Y Acad Sci        ISSN: 0077-8923            Impact factor:   5.691


  5 in total

Review 1.  Extracorporeal bioartificial liver for treating acute liver diseases.

Authors:  Ashok Kumar; Anuj Tripathi; Shivali Jain
Journal:  J Extra Corpor Technol       Date:  2011-12

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

Authors:  Yi Gao; Ning Mu; Xiao-Ping Xu; Yan Wang
Journal:  World J Gastroenterol       Date:  2005-09-21       Impact factor: 5.742

Review 3.  Clinical application of bioartificial liver support systems.

Authors:  Maarten Paul van de Kerkhove; Ruurdtje Hoekstra; Robert A F M Chamuleau; Thomas M van Gulik
Journal:  Ann Surg       Date:  2004-08       Impact factor: 12.969

4.  Improved survival of porcine acute liver failure by a bioartificial liver device implanted with induced human functional hepatocytes.

Authors:  Xiao-Lei Shi; Yimeng Gao; Yupeng Yan; Hucheng Ma; Lulu Sun; Pengyu Huang; Xuan Ni; Ludi Zhang; Xin Zhao; Haozhen Ren; Dan Hu; Yan Zhou; Feng Tian; Yuan Ji; Xin Cheng; Guoyu Pan; Yi-Tao Ding; Lijian Hui
Journal:  Cell Res       Date:  2016-01-15       Impact factor: 25.617

Review 5.  The Roles of Membrane Technology in Artificial Organs: Current Challenges and Perspectives.

Authors:  Bao Tran Duy Nguyen; Hai Yen Nguyen Thi; Bich Phuong Nguyen Thi; Dong-Ku Kang; Jeong F Kim
Journal:  Membranes (Basel)       Date:  2021-03-28
  5 in total

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