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Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis

Accurate determination of urinary stone composition has significant bearing on understanding pathophysiology, choosing treatment modalities and preventing recurrence. A need exists for improved methods to determine stone composition. Urine of 31 patients with known renal calculi was examined with na...

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Autores principales: Gavin, Carson T, Ali, Sohrab N, Tailly, Thomas, Olvera-Posada, Daniel, Alenezi, Husain, Power, Nicholas E, Hou, Jinqiang, St. Amant, Andre H, Luyt, Leonard G, Wood, Stephen, Wu, Charles, Razvi, Hassan, Leong, Hon S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4725893/
https://www.ncbi.nlm.nih.gov/pubmed/26771074
http://dx.doi.org/10.1038/srep19328
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author Gavin, Carson T
Ali, Sohrab N
Tailly, Thomas
Olvera-Posada, Daniel
Alenezi, Husain
Power, Nicholas E
Hou, Jinqiang
St. Amant, Andre H
Luyt, Leonard G
Wood, Stephen
Wu, Charles
Razvi, Hassan
Leong, Hon S
author_facet Gavin, Carson T
Ali, Sohrab N
Tailly, Thomas
Olvera-Posada, Daniel
Alenezi, Husain
Power, Nicholas E
Hou, Jinqiang
St. Amant, Andre H
Luyt, Leonard G
Wood, Stephen
Wu, Charles
Razvi, Hassan
Leong, Hon S
author_sort Gavin, Carson T
collection PubMed
description Accurate determination of urinary stone composition has significant bearing on understanding pathophysiology, choosing treatment modalities and preventing recurrence. A need exists for improved methods to determine stone composition. Urine of 31 patients with known renal calculi was examined with nanoscale flow cytometry and the calculi collected during surgery subsequently underwent petrographic thin sectioning with polarized and fluorescent microscopy. Fluorescently labeled bisphosphonate probes (Alendronate-fluorescein/Alendronate-Cy5) were developed for nanoscale flow cytometry to enumerate nanocrystals that bound the fluorescent probes. Petrographic sections of stones were also imaged by fluorescent and polarized light microscopy with composition analysis correlated to alendronate +ve nanocrystal counts in corresponding urine samples. Urine samples from patients with Ca(2+) and Mg(2+) based calculi exhibited the highest alendronate +ve nanocrystal counts, ranging from 100–1000 nm in diameter. This novel urine based assay was in agreement with composition determined by petrographic thin sections with Alendronate probes. In some cases, high alendronate +ve nanocrystal counts indicated a Ca(2+) or Mg(2+) composition, as confirmed by petrographic analysis, overturning initial spectrophotometric diagnosis of stone composition. The combination of nanoscale flow cytometry and petrographic thin sections offer an alternative means for determining stone composition. Nanoscale flow cytometry of alendronate +ve nanocrystals alone may provide a high-throughput means of evaluating stone burden.
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spelling pubmed-47258932016-01-28 Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis Gavin, Carson T Ali, Sohrab N Tailly, Thomas Olvera-Posada, Daniel Alenezi, Husain Power, Nicholas E Hou, Jinqiang St. Amant, Andre H Luyt, Leonard G Wood, Stephen Wu, Charles Razvi, Hassan Leong, Hon S Sci Rep Article Accurate determination of urinary stone composition has significant bearing on understanding pathophysiology, choosing treatment modalities and preventing recurrence. A need exists for improved methods to determine stone composition. Urine of 31 patients with known renal calculi was examined with nanoscale flow cytometry and the calculi collected during surgery subsequently underwent petrographic thin sectioning with polarized and fluorescent microscopy. Fluorescently labeled bisphosphonate probes (Alendronate-fluorescein/Alendronate-Cy5) were developed for nanoscale flow cytometry to enumerate nanocrystals that bound the fluorescent probes. Petrographic sections of stones were also imaged by fluorescent and polarized light microscopy with composition analysis correlated to alendronate +ve nanocrystal counts in corresponding urine samples. Urine samples from patients with Ca(2+) and Mg(2+) based calculi exhibited the highest alendronate +ve nanocrystal counts, ranging from 100–1000 nm in diameter. This novel urine based assay was in agreement with composition determined by petrographic thin sections with Alendronate probes. In some cases, high alendronate +ve nanocrystal counts indicated a Ca(2+) or Mg(2+) composition, as confirmed by petrographic analysis, overturning initial spectrophotometric diagnosis of stone composition. The combination of nanoscale flow cytometry and petrographic thin sections offer an alternative means for determining stone composition. Nanoscale flow cytometry of alendronate +ve nanocrystals alone may provide a high-throughput means of evaluating stone burden. Nature Publishing Group 2016-01-14 /pmc/articles/PMC4725893/ /pubmed/26771074 http://dx.doi.org/10.1038/srep19328 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Gavin, Carson T
Ali, Sohrab N
Tailly, Thomas
Olvera-Posada, Daniel
Alenezi, Husain
Power, Nicholas E
Hou, Jinqiang
St. Amant, Andre H
Luyt, Leonard G
Wood, Stephen
Wu, Charles
Razvi, Hassan
Leong, Hon S
Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis
title Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis
title_full Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis
title_fullStr Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis
title_full_unstemmed Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis
title_short Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis
title_sort novel methods of determining urinary calculi composition: petrographic thin sectioning of calculi and nanoscale flow cytometry urinalysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4725893/
https://www.ncbi.nlm.nih.gov/pubmed/26771074
http://dx.doi.org/10.1038/srep19328
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