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Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation

We aimed to discover and validate urinary exosomal proteins as biomarkers for antibody−mediated rejection (ABMR) after kidney transplantation. Urine and for-cause biopsy samples from kidney transplant recipients were collected and categorized into the discovery cohort (n = 36) and a validation cohor...

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Autores principales: Kim, Mi Joung, Lim, Seong Jun, Ko, Youngmin, Kwon, Hye Eun, Jung, Joo Hee, Kwon, Hyunwook, Go, Heounjeong, Park, Yangsoon, Kim, Tae-Keun, Jung, MinKyo, Pack, Chan-Gi, Kim, Young Hoon, Kim, Kyunggon, Shin, Sung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598834/
https://www.ncbi.nlm.nih.gov/pubmed/36289608
http://dx.doi.org/10.3390/biomedicines10102346
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author Kim, Mi Joung
Lim, Seong Jun
Ko, Youngmin
Kwon, Hye Eun
Jung, Joo Hee
Kwon, Hyunwook
Go, Heounjeong
Park, Yangsoon
Kim, Tae-Keun
Jung, MinKyo
Pack, Chan-Gi
Kim, Young Hoon
Kim, Kyunggon
Shin, Sung
author_facet Kim, Mi Joung
Lim, Seong Jun
Ko, Youngmin
Kwon, Hye Eun
Jung, Joo Hee
Kwon, Hyunwook
Go, Heounjeong
Park, Yangsoon
Kim, Tae-Keun
Jung, MinKyo
Pack, Chan-Gi
Kim, Young Hoon
Kim, Kyunggon
Shin, Sung
author_sort Kim, Mi Joung
collection PubMed
description We aimed to discover and validate urinary exosomal proteins as biomarkers for antibody−mediated rejection (ABMR) after kidney transplantation. Urine and for-cause biopsy samples from kidney transplant recipients were collected and categorized into the discovery cohort (n = 36) and a validation cohort (n = 65). Exosomes were isolated by stepwise ultra-centrifugation for proteomic analysis to discover biomarker candidates for ABMR (n = 12). Of 1820 exosomal proteins in the discovery cohort, four proteins were specifically associated with ABMR: cystatin C (CST3), serum paraoxonase/arylesterase 1, retinol-binding protein 4, and lipopolysaccharide−binding protein (LBP). In the validation cohort, the level of urinary exosomal LBP was significantly higher in the ABMR group (n = 25) compared with the T-cell-mediated rejection (TCMR) group and the no major abnormality (NOMOA) group. Urinary exosomal CST3 level was significantly higher in the ABMR group compared with the control and NOMOA groups. Immunohistochemical staining showed that LBP and CST3 in the glomerulus were more abundant in the ABMR group compared with other groups. The combined prediction probability of urinary exosomal LBP and CST3 was significantly correlated with summed LBP and CST3 intensity scores in the glomerulus and peritubular capillary as well as Banff g + ptc scores. Urinary exosomal CST3 and LBP could be potent biomarkers for ABMR after kidney transplantation.
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spelling pubmed-95988342022-10-27 Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation Kim, Mi Joung Lim, Seong Jun Ko, Youngmin Kwon, Hye Eun Jung, Joo Hee Kwon, Hyunwook Go, Heounjeong Park, Yangsoon Kim, Tae-Keun Jung, MinKyo Pack, Chan-Gi Kim, Young Hoon Kim, Kyunggon Shin, Sung Biomedicines Article We aimed to discover and validate urinary exosomal proteins as biomarkers for antibody−mediated rejection (ABMR) after kidney transplantation. Urine and for-cause biopsy samples from kidney transplant recipients were collected and categorized into the discovery cohort (n = 36) and a validation cohort (n = 65). Exosomes were isolated by stepwise ultra-centrifugation for proteomic analysis to discover biomarker candidates for ABMR (n = 12). Of 1820 exosomal proteins in the discovery cohort, four proteins were specifically associated with ABMR: cystatin C (CST3), serum paraoxonase/arylesterase 1, retinol-binding protein 4, and lipopolysaccharide−binding protein (LBP). In the validation cohort, the level of urinary exosomal LBP was significantly higher in the ABMR group (n = 25) compared with the T-cell-mediated rejection (TCMR) group and the no major abnormality (NOMOA) group. Urinary exosomal CST3 level was significantly higher in the ABMR group compared with the control and NOMOA groups. Immunohistochemical staining showed that LBP and CST3 in the glomerulus were more abundant in the ABMR group compared with other groups. The combined prediction probability of urinary exosomal LBP and CST3 was significantly correlated with summed LBP and CST3 intensity scores in the glomerulus and peritubular capillary as well as Banff g + ptc scores. Urinary exosomal CST3 and LBP could be potent biomarkers for ABMR after kidney transplantation. MDPI 2022-09-21 /pmc/articles/PMC9598834/ /pubmed/36289608 http://dx.doi.org/10.3390/biomedicines10102346 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, Mi Joung
Lim, Seong Jun
Ko, Youngmin
Kwon, Hye Eun
Jung, Joo Hee
Kwon, Hyunwook
Go, Heounjeong
Park, Yangsoon
Kim, Tae-Keun
Jung, MinKyo
Pack, Chan-Gi
Kim, Young Hoon
Kim, Kyunggon
Shin, Sung
Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation
title Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation
title_full Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation
title_fullStr Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation
title_full_unstemmed Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation
title_short Urinary Exosomal Cystatin C and Lipopolysaccharide Binding Protein as Biomarkers for Antibody−Mediated Rejection after Kidney Transplantation
title_sort urinary exosomal cystatin c and lipopolysaccharide binding protein as biomarkers for antibody−mediated rejection after kidney transplantation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9598834/
https://www.ncbi.nlm.nih.gov/pubmed/36289608
http://dx.doi.org/10.3390/biomedicines10102346
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