Literature DB >> 9917816

Response of a liver tissue slab to a hyperosmotic sucrose boundary condition: microscale cellular and vascular level effects.

S Bhowmick1, C A Khamis, J C Bischof.   

Abstract

Transport of a non-permeating CPA in liver tissue was studied by experimental and theoretical techniques. The system consisted of a 20 mm x 15 mm x 500 microns (thick) slab of liver tissue which was exposed to culture media and hyperosmotic sucrose (0.3 or 0.6 M) at the boundary. The volumetric changes of cell and vascular spaces within the tissue slab at 125 microns from one of the symmetric boundaries was studied by slam freezing followed by freeze substitution microscopy. The experimental data was then theoretically investigated using two models; one based on an effective diffusion coefficient for sucrose, and another which incorporated the convective flux of water out of the cells (and the tissue) while sucrose diffuses in. We estimate the effective diffusion of sucrose as 16-33% of the actual diffusivity of sucrose in bulk water. The role of convection of water out of the tissue is against the flow of sucrose and appears to be important in reducing the effective diffusivity of the sucrose. The role of vascular compliance, porosity and tortuosity are also discussed with respect to our results.

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Year:  1998        PMID: 9917816     DOI: 10.1111/j.1749-6632.1998.tb10149.x

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


  3 in total

1.  On-chip characterization of cryoprotective agent mixtures using an EWOD-based digital microfluidic device.

Authors:  Sinwook Park; Pavithra A L Wijethunga; Hyejin Moon; Bumsoo Han
Journal:  Lab Chip       Date:  2011-05-20       Impact factor: 6.799

2.  General tissue mass transfer model for cryopreservation applications.

Authors:  Ross M Warner; Robyn Shuttleworth; James D Benson; Ali Eroglu; Adam Z Higgins
Journal:  Biophys J       Date:  2021-10-16       Impact factor: 4.033

3.  Mathematical Modeling of Protectant Transport in Tissues.

Authors:  Ross M Warner; Adam Z Higgins
Journal:  Methods Mol Biol       Date:  2021
  3 in total

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