Circulating exosomes with lung self-antigens as a biomarker for chronic lung allograft dysfunction: A retrospective analysis

被引:29
|
作者
Sharma, Monal [1 ]
Gunasekaran, Muthukumar [1 ]
Ravichandran, Ranjithkumar [1 ]
Fisher, Cynthia E. [2 ]
Limaye, Ajit P. [2 ]
Hu, Chengcheng [3 ]
McDyer, John [4 ]
Kaza, Vaidehi [5 ]
Bharat, Ankit [6 ]
Tokman, Sofya [1 ]
Omar, Ashraf [1 ]
Arjuna, Ashwini [1 ]
Walia, Rajat [1 ]
Bremner, Ross M. [1 ]
Smith, Michael A. [1 ]
Hachem, Ramsey R. [7 ]
Mohanakumar, Thalachallour [1 ]
机构
[1] St Josephs Hosp, Norton Thorac Inst, 124 W Thomas Rd,Suite 105, Phoenix, AZ 85013 USA
[2] Univ Washington, Deparment Med, Seattle, WA 98195 USA
[3] Univ Arizona, Dept Epidemiol & Biostat, Phoenix, AZ USA
[4] Univ Pittsburgh, Div Pulm Allergy & Crit Care Med, Pittsburgh, PA USA
[5] Univ Texas Southwestern, Internal Med Pulm Dis, Dallas, TX USA
[6] Northwestern Univ, Dept Surg Thorac, Chicago, IL 60611 USA
[7] Washington Univ, Dept Internal Med, Med Sch, St Louis, MO 63110 USA
来源
JOURNAL OF HEART AND LUNG TRANSPLANTATION | 2020年 / 39卷 / 11期
关键词
circulating exosomes; biomarker; lung self-antigens; chronic lung allograft dysfunction; human lung transplant; BRONCHIOLITIS-OBLITERANS; BRONCHOALVEOLAR LAVAGE; CHRONIC REJECTION; HEART-LUNG; ANTIBODIES; TRANSPLANTATION; INFECTION; IMMUNITY;
D O I
10.1016/j.healun.2020.07.001
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND: Exosomes isolated from plasma of lung transplant recipients (LTxRs) with bronchioli-tis obliterans syndrome (BOS) contain human leukocyte antigens and lung self-antigens (SAgs), K-alpha 1 tubulin (K alpha 1T) and collagen type V (Col-V). The aim was to determine the use of circulating exosomes with lung SAgs as a biomarker for BOS. METHODS: Circulating exosomes were isolated retrospectively from plasma from LTxRs at diagnosis of BOS and at 6 and 12 months before the diagnosis (n = 41) and from stable time-matched controls (n = 30) at 2 transplant centers by ultracentrifugation. Exosomes were validated using Nanosight, and lung SAgs (K alpha 1T and Col-V) were detected by immunoblot and semiquantitated using ImageJ software. RESULTS: Circulating exosomes from BOS and stable LTxRs demonstrated 61 to 181-nm vesicles with markers Alix and CD9. Exosomes from LTxRs with BOS (n = 21) showed increased levels of lung SAgs compared with stable (n = 10). A validation study using 2 separate cohorts of LTxRs with BOS and stable time-matched controls from 2 centers also demonstrated significantly increased lung SAgs-containing exosomes at 6 and 12 months before BOS. CONCLUSIONS: Circulating exosomes isolated from LTxRs with BOS demonstrated increased levels of lung SAgs (K alpha 1T and Col-V) 12 months before the diagnosis (100% specificity and 90% sensitivity), indicating that circulating exosomes with lung SAgs can be used as a non-invasive biomarker for identifying LTxRs at risk for BOS. (C) 2020 International Society for Heart and Lung Transplantation. All rights reserved.
引用
收藏
页码:1210 / 1219
页数:10
相关论文
共 50 条
  • [1] CIRCULATING EXOSOMES WITH LUNG SELF-ANTIGENS Ka1 TUBULIN AND COLLAGEN V AS A BIOMARKER FOR CHRONIC LUNG ALLOGRAFT DYSFUNCTION
    Mohanakumar, Thalachallour
    Ravichandran, Ranjithkumar
    Sharma, Monal
    Gunasekaran, Muthukumar
    Fisher, Cynthia
    Limaye, Ajit
    Hachem, Ramsey
    Bremner, Ross M.
    Smith, Michael
    HUMAN IMMUNOLOGY, 2020, 81 : 20 - 21
  • [2] Chronic Lung Allograft Dysfunction: Immune Responses Induced by Circulating Exosomes with Lung-Associated Self-Antigens
    Rahman, Mohammad
    Sureshbabu, Angara
    Tokman, Sofya
    Mohanakumar, Thalachallour
    CRITICAL REVIEWS IN IMMUNOLOGY, 2019, 39 (02) : 123 - 134
  • [3] Antibodies to Self-Antigens Predispose to Primary Lung Allograft Dysfunction and Chronic Rejection
    Bharat, Ankit
    Saini, Deepti
    Steward, Nancy
    Hachem, Ramsey
    Trulock, Elbert P.
    Patterson, Alexander
    Meyers, Bryan F.
    Mohanakumar, Thalachallour
    ANNALS OF THORACIC SURGERY, 2010, 90 (04): : 1094 - 1100
  • [4] Donor-Derived Exosomes With Lung Self-Antigens in Human Lung Allograft Rejection
    Gunasekaran, M.
    Xu, Z.
    Nayak, D. K.
    Sharma, M.
    Hachem, R.
    Walia, R.
    Bremner, R. M.
    Smith, M. A.
    Mohanakumar, T.
    AMERICAN JOURNAL OF TRANSPLANTATION, 2017, 17 (02) : 474 - 484
  • [5] Antibodies to Self-Antigens Predispose to Primary Lung Allograft Dysfunction and Chronic Rejection DISCUSSION
    Waddell, Thomas K.
    Bharat
    ANNALS OF THORACIC SURGERY, 2010, 90 (04): : 1100 - 1101
  • [6] Antibodies to Hla Molecules Lead to Induction and Release of Circulating Exosomes with Lung Self-Antigens
    Ravichandran, R.
    Smith, M.
    Bremner, R.
    Mohanakumar, T.
    AMERICAN JOURNAL OF TRANSPLANTATION, 2021, 21 : 527 - 527
  • [7] Circulating Exosomes with Lung Self-Antigens, Kα1Tubulin and Collagen V, and Immune Responses to Lung Self-Antigens Precedes Histological Evidence of Chronic Rejection Following Orthotopic Murine Lung Transplantation
    Rahman, M.
    Sharma, M.
    Liu, W.
    Smith, M. A.
    Bremner, R. M.
    Mohanakumar, T.
    JOURNAL OF HEART AND LUNG TRANSPLANTATION, 2019, 38 (04): : S157 - S157
  • [8] A new biomarker for chronic lung allograft dysfunction
    Pain, Mallory
    Royer, Pierre-Joseph
    Loy, Jennifer
    Fieux, Maxime
    Tissot, Adrien
    Lacoste, Philippe
    Reboulleau, Damien
    Pares, Sandie
    Botturi, Karine
    Magnan, Antoine
    EUROPEAN RESPIRATORY JOURNAL, 2014, 44
  • [9] Circulating Exosomes with Cardiac Self-Antigens (Cardiac Myosin and Vimentin) and De Novo Development of Antibodies to Cardiac Self-Antigens Precedes Chronic Cardiac Allograft Rejection.
    Ravichandran, R.
    Itabashi, Y.
    Liu, W.
    Mohanakumar, T.
    AMERICAN JOURNAL OF TRANSPLANTATION, 2019, 19 : 1052 - 1052
  • [10] Circulating Exosomes with Lung Self-Antigens, Ka1Tubulin and Collagen V, and Immune Regulatory Proteins in Lung Transplant Recipient with Primary Graft Dysfunction.
    Sharma, M.
    Roy, S. Biswas
    Walia, R.
    Omar, A.
    Bremner, R.
    Smith, M.
    Mohanakumar, T.
    AMERICAN JOURNAL OF TRANSPLANTATION, 2018, 18 : 322 - 322