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Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation

INTRODUCTION: Measuring the chemokine CXCL9 in urine by enzyme-linked immunosorbent assay (ELISA) can diagnose acute cellular rejection (ACR) noninvasively after kidney transplantation, but the required 12- to 24-hour turnaround time is not ideal for rapid, clinical decision-making. METHODS: We deve...

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Autores principales: Gandolfini, Ilaria, Harris, Cynthia, Abecassis, Michael, Anderson, Lisa, Bestard, Oriol, Comai, Giorgia, Cravedi, Paolo, Cremaschi, Elena, Duty, J. Andrew, Florman, Sander, Friedewald, John, La Manna, Gaetano, Maggiore, Umberto, Moran, Thomas, Piotti, Giovanni, Purroy, Carolina, Jarque, Marta, Nair, Vinay, Shapiro, Ron, Reid-Adam, Jessica, Heeger, Peter S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5733675/
https://www.ncbi.nlm.nih.gov/pubmed/29270527
http://dx.doi.org/10.1016/j.ekir.2017.06.010
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author Gandolfini, Ilaria
Harris, Cynthia
Abecassis, Michael
Anderson, Lisa
Bestard, Oriol
Comai, Giorgia
Cravedi, Paolo
Cremaschi, Elena
Duty, J. Andrew
Florman, Sander
Friedewald, John
La Manna, Gaetano
Maggiore, Umberto
Moran, Thomas
Piotti, Giovanni
Purroy, Carolina
Jarque, Marta
Nair, Vinay
Shapiro, Ron
Reid-Adam, Jessica
Heeger, Peter S.
author_facet Gandolfini, Ilaria
Harris, Cynthia
Abecassis, Michael
Anderson, Lisa
Bestard, Oriol
Comai, Giorgia
Cravedi, Paolo
Cremaschi, Elena
Duty, J. Andrew
Florman, Sander
Friedewald, John
La Manna, Gaetano
Maggiore, Umberto
Moran, Thomas
Piotti, Giovanni
Purroy, Carolina
Jarque, Marta
Nair, Vinay
Shapiro, Ron
Reid-Adam, Jessica
Heeger, Peter S.
author_sort Gandolfini, Ilaria
collection PubMed
description INTRODUCTION: Measuring the chemokine CXCL9 in urine by enzyme-linked immunosorbent assay (ELISA) can diagnose acute cellular rejection (ACR) noninvasively after kidney transplantation, but the required 12- to 24-hour turnaround time is not ideal for rapid, clinical decision-making. METHODS: We developed a biolayer interferometry (BLI)−based assay to rapidly measure urinary CXCL9 in <1 hour. We validated this new assay versus standard ELISA in 86 urine samples from kidney transplantation recipients with various diagnoses. We then used BLI to analyze samples from 56 kidney transplantation recipients, including 46 subjects who experienced an acute rise in serum creatinine associated with biopsy-proven ACR (n = 22), subclinical rejection (n = 15), or no infiltrates (n = 9), and 10 stable kidney transplantation recipients with surveillance biopsies. To assess its usefulness in detecting adequacy of therapy we serially measured serum creatinine and urinary CXCL9 in 6 subjects after treatment for ACR, and correlated the results with histological diagnoses on follow-up biopsies. RESULTS: BLI accurately and reproducibly detected urinary CXCL9 in <1 hour. BLI-based results showed that urinary CXCL9 was >200 pg/ml in subjects with ACR and ≤100 pg/ml in subjects with stable kidney function without cellular infiltrates. In samples obtained after treatment for ACR, BLI CXCL9 measurements detected biopsy-proven intragraft infiltrates despite treatment-induced reduction in serum creatinine. DISCUSSION: Together, our proof-of-principle results demonstrate that BLI-based urinary CXCL9 detection has potential as a point-of-care noninvasive biomarker to diagnose and guide therapy for ACR in kidney transplantation recipients.
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spelling pubmed-57336752017-12-21 Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation Gandolfini, Ilaria Harris, Cynthia Abecassis, Michael Anderson, Lisa Bestard, Oriol Comai, Giorgia Cravedi, Paolo Cremaschi, Elena Duty, J. Andrew Florman, Sander Friedewald, John La Manna, Gaetano Maggiore, Umberto Moran, Thomas Piotti, Giovanni Purroy, Carolina Jarque, Marta Nair, Vinay Shapiro, Ron Reid-Adam, Jessica Heeger, Peter S. Kidney Int Rep Translational Research INTRODUCTION: Measuring the chemokine CXCL9 in urine by enzyme-linked immunosorbent assay (ELISA) can diagnose acute cellular rejection (ACR) noninvasively after kidney transplantation, but the required 12- to 24-hour turnaround time is not ideal for rapid, clinical decision-making. METHODS: We developed a biolayer interferometry (BLI)−based assay to rapidly measure urinary CXCL9 in <1 hour. We validated this new assay versus standard ELISA in 86 urine samples from kidney transplantation recipients with various diagnoses. We then used BLI to analyze samples from 56 kidney transplantation recipients, including 46 subjects who experienced an acute rise in serum creatinine associated with biopsy-proven ACR (n = 22), subclinical rejection (n = 15), or no infiltrates (n = 9), and 10 stable kidney transplantation recipients with surveillance biopsies. To assess its usefulness in detecting adequacy of therapy we serially measured serum creatinine and urinary CXCL9 in 6 subjects after treatment for ACR, and correlated the results with histological diagnoses on follow-up biopsies. RESULTS: BLI accurately and reproducibly detected urinary CXCL9 in <1 hour. BLI-based results showed that urinary CXCL9 was >200 pg/ml in subjects with ACR and ≤100 pg/ml in subjects with stable kidney function without cellular infiltrates. In samples obtained after treatment for ACR, BLI CXCL9 measurements detected biopsy-proven intragraft infiltrates despite treatment-induced reduction in serum creatinine. DISCUSSION: Together, our proof-of-principle results demonstrate that BLI-based urinary CXCL9 detection has potential as a point-of-care noninvasive biomarker to diagnose and guide therapy for ACR in kidney transplantation recipients. Elsevier 2017-06-21 /pmc/articles/PMC5733675/ /pubmed/29270527 http://dx.doi.org/10.1016/j.ekir.2017.06.010 Text en © 2017 International Society of Nephrology. Published by Elsevier Inc. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Translational Research
Gandolfini, Ilaria
Harris, Cynthia
Abecassis, Michael
Anderson, Lisa
Bestard, Oriol
Comai, Giorgia
Cravedi, Paolo
Cremaschi, Elena
Duty, J. Andrew
Florman, Sander
Friedewald, John
La Manna, Gaetano
Maggiore, Umberto
Moran, Thomas
Piotti, Giovanni
Purroy, Carolina
Jarque, Marta
Nair, Vinay
Shapiro, Ron
Reid-Adam, Jessica
Heeger, Peter S.
Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation
title Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation
title_full Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation
title_fullStr Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation
title_full_unstemmed Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation
title_short Rapid Biolayer Interferometry Measurements of Urinary CXCL9 to Detect Cellular Infiltrates Noninvasively After Kidney Transplantation
title_sort rapid biolayer interferometry measurements of urinary cxcl9 to detect cellular infiltrates noninvasively after kidney transplantation
topic Translational Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5733675/
https://www.ncbi.nlm.nih.gov/pubmed/29270527
http://dx.doi.org/10.1016/j.ekir.2017.06.010
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