Home LiteratureArticle Details
PMID: 20357361 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Simultaneous detection of circulating autoreactive CD8+ T-cells specific for different islet cell-associated epitopes using combinatorial MHC multimers.

Diabetes ·Vol. 59 ·No. 7 ·2010-07-00 ·Pages 1721-30

Velthuis JH, Unger WW, Abreu JR, Duinkerken G, Franken K, Peakman M, Bakker AH, Reker-Hadrup S, Keymeulen B, Drijfhout JW, Schumacher TN, Roep BO

Abstract

Type 1 diabetes results from selective T-cell-mediated destruction of the insulin-producing beta-cells in the pancreas. In this process, islet epitope-specific CD8(+) T-cells play a pivotal role. Thus, monitoring of multiple islet-specific CD8(+) T-cells may prove to be valuable for measuring disease activity, progression, and intervention. Yet, conventional detection techniques (ELISPOT and HLA tetramers) require many cells and are relatively insensitive. Here, we used a combinatorial quantum dot major histocompatibility complex multimer technique to simultaneously monitor the presence of HLA-A2 restricted insulin B(10-18), prepro-insulin (PPI)(15-24), islet antigen (IA)-2(797-805), GAD65(114-123), islet-specific glucose-6-phosphatase catalytic subunit-related protein (IGRP)(265-273), and prepro islet amyloid polypeptide (ppIAPP)(5-13)-specific CD8(+) T-cells in recent-onset diabetic patients, their siblings, healthy control subjects, and islet cell transplantation recipients. Using this kit, islet autoreactive CD8(+) T-cells recognizing insulin B(10-18), IA-2(797-805), and IGRP(265-273) were shown to be frequently detectable in recent-onset diabetic patients but rarely in healthy control subjects; PPI(15-24) proved to be the most sensitive epitope. Applying the "Diab-Q-kit" to samples of islet cell transplantation recipients allowed detection of changes of autoreactive T-cell frequencies against multiple islet cell-derived epitopes that were associated with disease activity and correlated with clinical outcome. A kit was developed that allows simultaneous detection of CD8(+) T-cells reactive to multiple HLA-A2-restricted beta-cell epitopes requiring limited amounts of blood, without a need for in vitro culture, that is applicable on stored blood samples.

MeSH Terms
Adolescent CD8-Positive T-Lymphocytes/immunology Child Child, Preschool Diabetes Mellitus, Type 1/immunology Epitopes/immunology Female Flow Cytometry HLA-A Antigens/immunology Humans Infant Insulin-Secreting Cells/immunology Islets of Langerhans/immunology Islets of Langerhans Transplantation/immunology Major Histocompatibility Complex/immunology Male Statistics, Nonparametric
Chemicals
Epitopes HLA-A Antigens
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Velthuis Jurjen H
Department of Immunohematology and Blood Transfusion, Leiden University Medical Center, Leiden, the Netherlands.
Unger Wendy W
Abreu Joana R F
Duinkerken Gaby
Franken Kees
Peakman Mark
Bakker Arnold H
Reker-Hadrup Sine
Keymeulen Bart
Drijfhout Jan Wouter
Schumacher Ton N
Roep Bart O
References (37)
37 references, click to expand
  1. Parallel detection of antigen-specific T-cell responses by multidimensional encoding of MHC multimers.
    Nat Methods. 2009 Jul;6(7):520-6 PMID: 19543285
  2. Phenotypic analysis of antigen-specific T lymphocytes.
    Science. 1996 Oct 4;274(5284):94-6 PMID: 8810254
  3. Recognition of HLA class I-restricted beta-cell epitopes in type 1 diabetes.
    Diabetes. 2006 Nov;55(11):3068-74 PMID: 17065344
  4. In situ characterization of autoimmune phenomena and expression of HLA molecules in the pancreas in diabetic insulitis.
    N Engl J Med. 1985 Aug 8;313(6):353-60 PMID: 3159965
  5. CTLs are targeted to kill beta cells in patients with type 1 diabetes through recognition of a glucose-regulated preproinsulin epitope.
    J Clin Invest. 2008 Oct;118(10):3390-402 PMID: 18802479
  6. Human clonal CD8 autoreactivity to an IGRP islet epitope shared between mice and men.
    Ann N Y Acad Sci. 2007 Apr;1103:192-5 PMID: 17376840
  7. Recognition of a subregion of human proinsulin by class I-restricted T cells in type 1 diabetic patients.
    Proc Natl Acad Sci U S A. 2005 Jul 26;102(30):10581-6 PMID: 16030147
  8. Beta-cell-cytotoxic CD8+ T cells from nonobese diabetic mice use highly homologous T cell receptor alpha-chain CDR3 sequences.
    J Immunol. 1995 Mar 1;154(5):2494-503 PMID: 7868915
  9. Identification of naturally processed HLA-A2--restricted proinsulin epitopes by reverse immunology.
    Diabetes. 2005 Jul;54(7):2053-9 PMID: 15983206
  10. Defective suppressor function in CD4(+)CD25(+) T-cells from patients with type 1 diabetes.
    Diabetes. 2005 Jan;54(1):92-9 PMID: 15616015
  11. Precursor frequencies of T-cells reactive to insulin in recent onset type 1 diabetes mellitus.
    J Autoimmun. 2004 Aug;23(1):55-61 PMID: 15236753
  12. Analysis of T-cell assays to measure autoimmune responses in subjects with type 1 diabetes: results of a blinded controlled study.
    Diabetes. 2006 Sep;55(9):2588-94 PMID: 16936208
  13. Correlation between beta cell mass and glycemic control in type 1 diabetic recipients of islet cell graft.
    Proc Natl Acad Sci U S A. 2006 Nov 14;103(46):17444-9 PMID: 17090674
  14. Identification of a beta-cell-specific HLA class I restricted epitope in type 1 diabetes.
    Diabetes. 2003 Nov;52(11):2647-51 PMID: 14578281
  15. Implantation of standardized beta-cell grafts in a liver segment of IDDM patients: graft and recipients characteristics in two cases of insulin-independence under maintenance immunosuppression for prior kidney graft.
    Diabetologia. 1998 Apr;41(4):452-9 PMID: 9562350
  16. Homeostatic proliferation is a barrier to transplantation tolerance.
    Nat Med. 2004 Jan;10(1):87-92 PMID: 14647496
  17. Autoreactive CD8 T cells associated with beta cell destruction in type 1 diabetes.
    Proc Natl Acad Sci U S A. 2005 Dec 20;102(51):18425-30 PMID: 16339897
  18. Translational mini-review series on type 1 diabetes: Systematic analysis of T cell epitopes in autoimmune diabetes.
    Clin Exp Immunol. 2007 Apr;148(1):1-16 PMID: 17349009
  19. Functional evidence for the mediation of diabetogenic T cell responses by HLA-A2.1 MHC class I molecules through transgenic expression in NOD mice.
    Proc Natl Acad Sci U S A. 2002 Oct 15;99(21):13753-8 PMID: 12361980
  20. Cytotoxic T cells to an epitope in the islet autoantigen IA-2 are not disease-specific.
    Clin Immunol. 2001 Jun;99(3):360-4 PMID: 11358432
  21. Five-year follow-up after clinical islet transplantation.
    Diabetes. 2005 Jul;54(7):2060-9 PMID: 15983207
  22. The peptide ligands mediating positive selection in the thymus control T cell survival and homeostatic proliferation in the periphery.
    Immunity. 1999 Aug;11(2):173-81 PMID: 10485652
  23. Low-affinity ligands for the TCR drive proliferation of mature CD8+ T cells in lymphopenic hosts.
    Immunity. 1999 Aug;11(2):183-90 PMID: 10485653
  24. Requirements for success in clinical islet transplantation.
    Transplantation. 2005 May 27;79(10):1298-300 PMID: 15912093
  25. HLA-A*0201-restricted T cells from humanized NOD mice recognize autoantigens of potential clinical relevance to type 1 diabetes.
    J Immunol. 2006 Mar 1;176(5):3257-65 PMID: 16493087
  26. Cellular islet autoimmunity associates with clinical outcome of islet cell transplantation.
    PLoS One. 2008 Jun 18;3(6):e2435 PMID: 18560516
  27. The histopathology of the pancreas in type 1 (insulin-dependent) diabetes mellitus: a 25-year review of deaths in patients under 20 years of age in the United Kingdom.
    Diabetologia. 1986 May;29(5):267-74 PMID: 3522324
  28. Islet transplantation in seven patients with type 1 diabetes mellitus using a glucocorticoid-free immunosuppressive regimen.
    N Engl J Med. 2000 Jul 27;343(4):230-8 PMID: 10911004
  29. Cytotoxic T cells specific for glutamic acid decarboxylase in autoimmune diabetes.
    J Exp Med. 1995 May 1;181(5):1923-7 PMID: 7722468
  30. Transplantation of cultured islets from two-layer preserved pancreases in type 1 diabetes with anti-CD3 antibody.
    Am J Transplant. 2004 Mar;4(3):390-401 PMID: 14961992
  31. CD8 T cell clones from young nonobese diabetic (NOD) islets can transfer rapid onset of diabetes in NOD mice in the absence of CD4 cells.
    J Exp Med. 1996 Jan 1;183(1):67-76 PMID: 8551245
  32. Screening for insulitis in adult autoantibody-positive organ donors.
    Diabetes. 2007 Sep;56(9):2400-4 PMID: 17563060
  33. The impact of memory T cells on rejection and the induction of tolerance.
    Transplantation. 2006 Jul 15;82(1):1-9 PMID: 16861933
  34. HLA-DQ-regulated T-cell responses to islet cell autoantigens insulin and GAD65.
    Diabetes. 2004 Jul;53(7):1692-9 PMID: 15220192
  35. Identification of a CD8 T cell that can independently mediate autoimmune diabetes development in the complete absence of CD4 T cell helper functions.
    J Immunol. 2000 Apr 1;164(7):3913-8 PMID: 10725754
  36. Islet transplantation in patients with autoimmune diabetes induces homeostatic cytokines that expand autoreactive memory T cells.
    J Clin Invest. 2008 May;118(5):1806-14 PMID: 18431516
  37. Pancreatic islet transplantation.
    PLoS Med. 2004 Dec;1(3):e58; quiz e75 PMID: 15630467
Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
1939-327X
Published
2010-07-00
Epub
2010-00-31
Pages
1721-30
Language
English
Region
United States
NLM ID
0372763
PMCID
PMC2889772
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com