2004
DOI: 10.4049/jimmunol.172.6.3469
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Indirect Minor Histocompatibility Antigen Presentation by Allograft Recipient Cells in the Draining Lymph Node Leads to the Activation and Clonal Expansion of CD4+ T Cells That Cause Obliterative Airways Disease

Abstract: Ag recognition by OVA-reactive OT-II (I-Ab restricted) and DO11.10 (I-Ad restricted) TCR-Tg CD4+ T cells after heterotopic transplantation of OVA transgene-expressing tracheal grafts was examined as a model of minor histocompatibility Ag (mHAg)-induced chronic allograft rejection. In response to airway allotransplantation with grafts expressing the OVA transgene, these TCR-Tg CD4+ T cells expressed the activation markers CD69 and CD44, demonstrated evidence of blastogenesis, underwent multiple rounds of cell d… Show more

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Cited by 43 publications
(40 citation statements)
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“…Moreover, the generation of OB among recipients of pure CD4 T-cell inocula here, as well as analogous findings in other murine model systems 6,7,33 illustrates the pathogenic potential of isolated T-cell subpopulations. Thus, the present studies corroborate and extend previous experimental findings that implicate the critical dependence of T-cell alloresponses in the development of OB.…”
Section: Discussionsupporting
confidence: 80%
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“…Moreover, the generation of OB among recipients of pure CD4 T-cell inocula here, as well as analogous findings in other murine model systems 6,7,33 illustrates the pathogenic potential of isolated T-cell subpopulations. Thus, the present studies corroborate and extend previous experimental findings that implicate the critical dependence of T-cell alloresponses in the development of OB.…”
Section: Discussionsupporting
confidence: 80%
“…A novel and potentially important feature of this model is that both the immune effector cells and the allograft target are of human derivation, and thus are singularly relevant to studies of pathogenic processes that occur in human lung transplant patients. Although useful information has been and will continue to be gleaned from traditional studies of airway and other transplantations among allogeneic mouse strains, [3][4][5][6][7] there are a considerable number of differences between mouse and human immune systems. 8,9 As one of many examples, oligoclonal daughter progeny of human T cells that have undergone repetitive, antigen-driven proliferations develop markedly dysregulated and pathogenic characteristics and functions, including increased expression of NK-cell receptors, absence of cell-surface CD28, discordant expression of many activation and maturation markers, telomere shortening, and diminished production of FoxP3.…”
Section: Discussionmentioning
confidence: 99%
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