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T Cell Clones Generated from Patients with Type 1 Diabetes Using Interleukin-2 Proliferate to Human Islet Antigens

 

作者: PeakmanMark,   WenLi,   McNabGillian L.,   WatkinsPeter J.,   TanKai C.,   VerganiDiego,  

 

期刊: Autoimmunity  (Taylor Available online 1994)
卷期: Volume 17, issue 1  

页码: 31-39

 

ISSN:0891-6934

 

年代: 1994

 

DOI:10.3109/08916939409014656

 

出版商: Taylor&Francis

 

关键词: T cell clones;human islet antigens;interleukin-2;Type 1 diabetes

 

数据来源: Taylor

 

摘要:

T lymphocytes are implicated in the pathogenesis of Type 1 (insulin dependent) diabetes. Activated T lymphocytes expressing IL-2 receptors are found at increased levels in the peripheral blood in the prediabetic period, at diagnosis and for several months after the onset of the disease, but their role in the pathogenesis of the disease is not known. We have used co-culture of peripheral blood lymphocytes with IL-2 alone to selectively generate T cell clones from thein vivoactivated T cell population, and examined the phenotype and antigen specificity of the clones derived. From 3 patients with newly-diagnosed Type 1 diabetes 184 clones were generated, the majority of which (39%) were CD4+TCRaβ+, whilst 31% were CD8+TCRαβ+. From 2 healthy control subjects 90 clones were obtained, of which 62% were CD4+TCRαβ+and 33% were CD8+TCRαβ+. Antigen specificity was examined in 46 clones from the patients and 44 from the control subjects in proliferation assays, using as antigens homogenate of human islets of Langerhans, human islet membrane preparation and human liver membrane preparation. Three clones (all CD4+TCRap+) from the patients, but none from the control subjects, proliferated in a dose dependent fashion in response to stimulation with human islet homogenate presented by autologous APCs, but to neither of the other autoantigen preparations. Our results demonstrate that a relatively high proportion (7%) of T lymphocytes activatedin vivorecognise human islet antigens, indicating that they may have a role in the pathogenesis of the disease.

 

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