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A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli

Increased urinary albumin excretion is a key feature of glomerular disease but has limitations as a measure of glomerular permeability. Here we describe a novel assay to measure the apparent albumin permeability of single capillaries in glomeruli, isolated from perfused kidneys cleared of red blood...

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Autores principales: Desideri, Sara, Onions, Karen L., Qiu, Yan, Ramnath, Raina D., Butler, Matthew J., Neal, Christopher R., King, Matthew L.R., Salmon, Andrew E., Saleem, Moin A., Welsh, Gavin I., Michel, C. Charles, Satchell, Simon C., Salmon, Andrew H.J., Foster, Rebecca R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5912930/
https://www.ncbi.nlm.nih.gov/pubmed/29433915
http://dx.doi.org/10.1016/j.kint.2017.12.003
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author Desideri, Sara
Onions, Karen L.
Qiu, Yan
Ramnath, Raina D.
Butler, Matthew J.
Neal, Christopher R.
King, Matthew L.R.
Salmon, Andrew E.
Saleem, Moin A.
Welsh, Gavin I.
Michel, C. Charles
Satchell, Simon C.
Salmon, Andrew H.J.
Foster, Rebecca R.
author_facet Desideri, Sara
Onions, Karen L.
Qiu, Yan
Ramnath, Raina D.
Butler, Matthew J.
Neal, Christopher R.
King, Matthew L.R.
Salmon, Andrew E.
Saleem, Moin A.
Welsh, Gavin I.
Michel, C. Charles
Satchell, Simon C.
Salmon, Andrew H.J.
Foster, Rebecca R.
author_sort Desideri, Sara
collection PubMed
description Increased urinary albumin excretion is a key feature of glomerular disease but has limitations as a measure of glomerular permeability. Here we describe a novel assay to measure the apparent albumin permeability of single capillaries in glomeruli, isolated from perfused kidneys cleared of red blood cells. The rate of decline of the albumin concentration within the capillary lumen was quantified using confocal microscopy and used to calculate apparent permeability. The assay was extensively validated and provided robust, reproducible estimates of glomerular albumin permeability. These values were comparable with previous in vivo data, showing this assay could be applied to human as well as rodent glomeruli. To confirm this, we showed that targeted endothelial glycocalyx disruption resulted in increased glomerular albumin permeability in mice. Furthermore, incubation with plasma from patients with post-transplant recurrence of nephrotic syndrome increased albumin permeability in rat glomeruli compared to remission plasma. Finally, in glomeruli isolated from rats with early diabetes there was a significant increase in albumin permeability and loss of endothelial glycocalyx, both of which were ameliorated by angiopoietin-1. Thus, a glomerular permeability assay, producing physiologically relevant values with sufficient sensitivity to measure changes in glomerular permeability and independent of tubular function, was developed and validated. This assay significantly advances the ability to study biology and disease in rodent and human glomeruli.
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spelling pubmed-59129302018-05-01 A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli Desideri, Sara Onions, Karen L. Qiu, Yan Ramnath, Raina D. Butler, Matthew J. Neal, Christopher R. King, Matthew L.R. Salmon, Andrew E. Saleem, Moin A. Welsh, Gavin I. Michel, C. Charles Satchell, Simon C. Salmon, Andrew H.J. Foster, Rebecca R. Kidney Int Article Increased urinary albumin excretion is a key feature of glomerular disease but has limitations as a measure of glomerular permeability. Here we describe a novel assay to measure the apparent albumin permeability of single capillaries in glomeruli, isolated from perfused kidneys cleared of red blood cells. The rate of decline of the albumin concentration within the capillary lumen was quantified using confocal microscopy and used to calculate apparent permeability. The assay was extensively validated and provided robust, reproducible estimates of glomerular albumin permeability. These values were comparable with previous in vivo data, showing this assay could be applied to human as well as rodent glomeruli. To confirm this, we showed that targeted endothelial glycocalyx disruption resulted in increased glomerular albumin permeability in mice. Furthermore, incubation with plasma from patients with post-transplant recurrence of nephrotic syndrome increased albumin permeability in rat glomeruli compared to remission plasma. Finally, in glomeruli isolated from rats with early diabetes there was a significant increase in albumin permeability and loss of endothelial glycocalyx, both of which were ameliorated by angiopoietin-1. Thus, a glomerular permeability assay, producing physiologically relevant values with sufficient sensitivity to measure changes in glomerular permeability and independent of tubular function, was developed and validated. This assay significantly advances the ability to study biology and disease in rodent and human glomeruli. Elsevier 2018-05 /pmc/articles/PMC5912930/ /pubmed/29433915 http://dx.doi.org/10.1016/j.kint.2017.12.003 Text en © 2018 International Society of Nephrology. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Desideri, Sara
Onions, Karen L.
Qiu, Yan
Ramnath, Raina D.
Butler, Matthew J.
Neal, Christopher R.
King, Matthew L.R.
Salmon, Andrew E.
Saleem, Moin A.
Welsh, Gavin I.
Michel, C. Charles
Satchell, Simon C.
Salmon, Andrew H.J.
Foster, Rebecca R.
A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli
title A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli
title_full A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli
title_fullStr A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli
title_full_unstemmed A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli
title_short A novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli
title_sort novel assay provides sensitive measurement of physiologically relevant changes in albumin permeability in isolated human and rodent glomeruli
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5912930/
https://www.ncbi.nlm.nih.gov/pubmed/29433915
http://dx.doi.org/10.1016/j.kint.2017.12.003
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