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Andrew J Caton

Publications and source records attributed to Andrew J Caton.

22 records · Page 2Linked to original sources

Specialized CC-chemokine secretion by Th1 cells in destructive autoimmune myocarditis.

T helper (Th) 1-mediated immune responses are associated with adverse outcomes in a number of models of autoimmune disease. Previous work has focused on the role that cytokines secreted by Th1 cells play in mediating pathologic tissue injury. To evaluate other mechanisms by which Th1 cells may be specialized to coordinate the complex effector cell interactions of a destructive immune response, CD4+ T cells specific for influenza hemagglutinin (HA) were differentiated into Th1 or Th2 subsets and transferred into transgenic mice expressing HA under control of the beta myosin heavy chain promoter, which drives heart specific expression of HA. CD4+ T cells polarized to a Th1 phenotype mediated a more destructive myocarditis than Th2 cells. Strikingly, the Th1-mediated inflammation was comprised primarily of CD8+ T cells and macrophages, suggesting a specialized recruitment function for Th1 cells. Further studies revealed that Th1 and Th2 subsets had polarized secretion of certain CC-chemokines, including MIP-1alpha and RANTES, which have selective recruitment properties on effector cells. Th1 cell secreted factors were up to 1000-fold more potent in inducing CD8+ T cell migration compared to Th2 cell secreted factors, and this advantage was partially mediated by their specialized MIP-1alpha secretion. These findings indicate that Th subsets have distinct patterns of CC-chemokine secretion and this specialization by Th1 cells mediates the recruitment of cytotoxic effector cells into destructive inflammatory responses.

Animals↗

Mechanisms, manifestations, and failures of self-tolerance.

We have developed transgenic (Tg) mice that express the influenza virus A/PR/8/34 hemagglutinin (PR8 HA) as a well-characterized model antigen with which to analyze factors governing tolerance and autoreactivity among CD4+ T and B cells. To analyze how the expression of self-antigens in varying amounts and in different cell types and tissues affects these processes, we have used a variety of promoters and enhancers to drive HA expression. By mating these HA Tg mice with Tg mice-expressing HA-specific major histocompatibility complex (MHC) class II-restricted T cell receptors (TCRs), we have shown that variations in the expression of the HA in different HA Tg lineages can cause CD4+ T cells with identical specificity for a self-peptide either to be deleted (to varying degrees) or to undergo selection to become CD4+ CD25+ regulatory T cells. In addition, a high intrinsic affinity of the TCR for a self-peptide appears to be required for thymocytes to undergo selection to become CD4+ CD25+ regulatory T cells. We have also shown that separate populations of HA-specific B cells that participate at distinct phases of the immune response to the HA in BALB/c mice differ significantly in their sensitivity to negative selection by the neo-self HA. Together, these studies demonstrate that both the diversity of the CD4+ T cell and B cell responses to the HA and variations in the expression of the HA in HA Tg mice can significantly affect the mechanisms and extent of CD4+ T and B cell tolerance induction.

Animals↗

The regulation and activation potential of autoreactive B cells.

Anti-double-stranded DNA (dsDNA) B cells persist even in nonautoimmune- prone animals. In this review, we summarize data regarding the activation potential of these cells. Provision of cognate CD4 T cell help to anti-dsDNA B cells in nonautoimmune mice not only drives their maturation and entry into the B cell follicle, but also leads to secretion of anti-dsDNA autoantibodies. Intriguingly, if T regulatory cells are provided along with T helper cells, the antibody response of anti-dsDNA B cells is diminished. We have also found that T-independent stimulation with CpG oligodeoxynucleotides leads to the proliferation and enhanced recovery of antidsDNA B cells in vitro. These data suggest that control of anti-dsDNA antibody production may rely on elements from both the innate and adaptive arms of the immune system.

Animals↗

The impact of T helper and T regulatory cells on the regulation of anti-double-stranded DNA B cells.

Autoreactive B cells that appear to be inactivated can be found in healthy individuals. In this study, we examined the potential of these anergic cells to become activated. We show that anergy of anti-double-stranded DNA (dsDNA) B cells in BALB/c mice is readily reversed, requiring only the provision of T cell help. We further show that spontaneous loss of anergy among anti-dsDNA B cells in autoimmune lpr/lpr mice occurs in two phases: an abortive initial response to T help followed by full loss of tolerance. Strikingly, the abortive response can be reproduced in nonautoimmune mice when CD4+CD25+ T regulatory cells are administered in conjunction with CD4+ T helper cells, suggesting that loss of B cell tolerance may require both the production of T cell help and the overcoming of T suppression.

Abatacept↗