2016
DOI: 10.4254/wjh.v8.i33.1442
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Performance of cold-preserved rat liver Microorgans as the biological component of a simplified prototype model of bioartificial liver

Abstract: AIMTo develop a simplified bioartificial liver (BAL) device prototype, suitable to use freshly and preserved liver Microorgans (LMOs) as biological component.METHODSThe system consists of 140 capillary fibers through which goat blood is pumped. The evolution of hematocrit, plasma and extra-fiber fluid osmolality was evaluated without any biological component, to characterize the prototype. LMOs were cut and cold stored 48 h in BG35 and ViaSpan® solutions. Fresh LMOs were used as controls. After preservation, L… Show more

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Cited by 1 publication
(7 citation statements)
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“…Testing with LMOs as a biological component to determine the influence of the BAL configuration and design over the LMO ammonia detoxification capacity. Other parameters remained similar to the values encountered for the cylindrical BAL and were already published[ 15 ].…”
Section: Methodssupporting
confidence: 71%
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“…Testing with LMOs as a biological component to determine the influence of the BAL configuration and design over the LMO ammonia detoxification capacity. Other parameters remained similar to the values encountered for the cylindrical BAL and were already published[ 15 ].…”
Section: Methodssupporting
confidence: 71%
“…Ammonia detoxification was the key task that LMOs could not perform in the cylindrical shape BAL. When they were evaluated in the “flat bottom” BAL, fresh LMOs were able to metabolize 32.1% ± 2.2% and 49.3% ± 8.8% of the initial NH 4 + dose at 60 min and 120 min, respectively ( n = 6 different LMO preparations in independent runs)[ 15 ], results that support the importance of architecture.…”
Section: Resultsmentioning
confidence: 98%
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