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Citations to this article

Tissue-specific exosome biomarkers for noninvasively monitoring immunologic rejection of transplanted tissue
Prashanth Vallabhajosyula, … , Michael R. Rickels, Ali Naji
Prashanth Vallabhajosyula, … , Michael R. Rickels, Ali Naji
Published March 20, 2017
Citation Information: J Clin Invest. 2017;127(4):1375-1391. https://doi.org/10.1172/JCI87993.
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Research Article Immunology Article has an altmetric score of 83

Tissue-specific exosome biomarkers for noninvasively monitoring immunologic rejection of transplanted tissue

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Abstract

In transplantation, there is a critical need for noninvasive biomarker platforms for monitoring immunologic rejection. We hypothesized that transplanted tissues release donor-specific exosomes into recipient circulation and that the quantitation and profiling of donor intra-exosomal cargoes may constitute a biomarker platform for monitoring rejection. Here, we have tested this hypothesis in a human-into-mouse xenogeneic islet transplant model and validated the concept in clinical settings of islet and renal transplantation. In the xenogeneic model, we quantified islet transplant exosomes in recipient blood over long-term follow-up using anti-HLA antibody, which was detectable only in xenoislet recipients of human islets. Transplant islet exosomes were purified using anti-HLA antibody–conjugated beads, and their cargoes contained the islet endocrine hormone markers insulin, glucagon, and somatostatin. Rejection led to a marked decrease in transplant islet exosome signal along with distinct changes in exosomal microRNA and proteomic profiles prior to appearance of hyperglycemia. In the clinical settings of islet and renal transplantation, donor exosomes with respective tissue specificity for islet β cells and renal epithelial cells were reliably characterized in recipient plasma over follow-up periods of up to 5 years. Collectively, these findings demonstrate the biomarker potential of transplant exosome characterization for providing a noninvasive window into the conditional state of transplant tissue.

Authors

Prashanth Vallabhajosyula, Laxminarayana Korutla, Andreas Habertheuer, Ming Yu, Susan Rostami, Chao-Xing Yuan, Sanjana Reddy, Chengyang Liu, Varun Korutla, Brigitte Koeberlein, Jennifer Trofe-Clark, Michael R. Rickels, Ali Naji

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 Total
Citations: 3 9 13 13 10 19 11 10 6 94
Citation information
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Citations to this article in year 2022 (13)

Title and authors Publication Year
Extracellular Vesicles From Kidney Allografts Express miR-218-5p and Alter Th17/Treg Ratios
A Rutman, S Negi, N Saberi, K Khan, J Tchervenkov, S Paraskevas
Frontiers in immunology 2022
Circulating cell-specific extracellular vesicles as biomarkers for the diagnosis and monitoring of chronic liver diseases
L Newman, K Muller, A Rowland
Cellular and Molecular Life Sciences 2022
Non-coding RNAs as liquid biopsy biomarkers in cancer
S Toden, A Goel
British Journal of Cancer 2022
Extracellular Vesicles in Transplantation
N Sailliet, M Ullah, A Dupuy, A Silva, F Gazeau, H Mai, S Brouard
Frontiers in immunology 2022
Extracellular Vesicles in Type 1 Diabetes: A Versatile Tool
C Suire, M Hade
Bioengineering 2022
Extracellular Vesicles Mediate Immune Responses to Tissue-Associated Self-Antigens: Role in Solid Organ Transplantations
Ravichandran R, Bansal S, Rahman M, Sureshbabu A, Sankpal N, Fleming T, Bharat A, Mohanakumar T
Frontiers in immunology 2022
An imaging flow cytometry-based methodology for the analysis of single extracellular vesicles in unprocessed human plasma
Woud WW, van der Pol E, Mul E, Hoogduijn MJ, Baan CC, Boer K, Merino A
2022
Mitochondrial oxidative stress in the tumor microenvironment and cancer immunoescape: foe or friend?
Kuo CL, Ponneri Babuharisankar A, Lin YC, Lien HW, Lo YK, Chou HY, Tangeda V, Cheng LC, Cheng AN, Lee AY
Journal of biomedical science 2022
Extracellular vesicles derived from patients with antibody‐mediated rejection induce tubular senescence and endothelial to mesenchymal transition in renal cells
Franzin R, Stasi A, Sallustio F, Bruno S, Merlotti G, Quaglia M, Grandaliano G, Pontrelli P, Thurman JM, Camussi G, Stallone G, Cantaluppi V, Gesualdo L, Castellano G
American Journal of Transplantation 2022
Extracellular vesicles biogenesis, isolation, manipulation and genetic engineering for potential in vitro and in vivo therapeutics: An overview.
Hadizadeh N, Bagheri D, Shamsara M, Hamblin MR, Farmany A, Xu M, Liang Z, Razi F, Hashemi E
Frontiers in Bioengineering and Biotechnology 2022
Extracellular Vesicles Released During Normothermic Machine Perfusion Are Associated With Human Donor Kidney Characteristics.
Woud WW, Arykbaeva AS, Alwayn IPJ, Baan CC, Minnee RC, Hoogduijn MJ, Boer K
Transplantation 2022
Direct detection of circulating donor-derived extracellular vesicles in kidney transplant recipients
Woud WW, Hesselink DA, Hoogduijn MJ, Baan CC, Boer K
Scientific Reports 2022
MicroRNAs: emerging biomarkers and therapeutic targets of bone fragility in chronic kidney disease
Smout D, Van Craenenbroeck AH, Jørgensen HS, Evenepoel P
Clinical Kidney Journal 2022

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