2018
DOI: 10.4254/wjh.v10.i10.719
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Experimental bio-artificial liver: Importance of the architectural design on ammonia detoxification performance

Abstract: AIMTo determine the influence of the construction design over the biological component’s performance in an experimental bio-artificial liver (BAL) device.METHODSTwo BAL models for liver microorgans (LMOs) were constructed. First, we constructed a cylindrical BAL and tested it without the biological component to establish its correct functioning. Samples of blood and biological compartment (BC) fluid were taken after 0, 60, and 120 min of perfusion. Osmolality, hematocrit, ammonia and glucose concentrations, la… Show more

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Cited by 3 publications
(3 citation statements)
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“…A rapid technical progress in the perfusion devices has enabled small liver slices to be likened to living liver organ. [ 21 ]…”
Section: Autophagic Activity Can Be Determined By Measuring Free Aminmentioning
confidence: 99%
“…A rapid technical progress in the perfusion devices has enabled small liver slices to be likened to living liver organ. [ 21 ]…”
Section: Autophagic Activity Can Be Determined By Measuring Free Aminmentioning
confidence: 99%
“…Although several prototypes have been tested in clinical trials, BALs are not in use in clinical settings or commercially available. 73 The use of liver micro-organs as the biologic component for BAL devices is intriguing because they harbor all hepatic cellular types and microarchitecture and can easily be obtained. 73 As a result, further research is warranted in these areas.…”
Section: Current Treatments and Future Strategiesmentioning
confidence: 99%
“… 73 The use of liver micro-organs as the biologic component for BAL devices is intriguing because they harbor all hepatic cellular types and microarchitecture and can easily be obtained. 73 As a result, further research is warranted in these areas.…”
Section: Current Treatments and Future Strategiesmentioning
confidence: 99%