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Andrew J Leishman

Publications and source records attributed to Andrew J Leishman.

5 recordsLinked to original sources

7th EFIS Tatra Immunology Conference. Molecular determinants of T-cell immunity. 24-28 June 2006, High Tatra Mountains, Slovakia.

This meeting was hosted by the European Federation of Immunological Societies celebrating its 7th meeting in the High Tatra Mountains of Slovakia on 24-28 June 2006. Entitled molecular determinants of T-cell immunity, the meeting covered a wide range of novel methods to regulate an unwanted immune response in autoimmunity and boost the immune system to combat viral infection and cancer.

Allergy and Immunology↗

Immunology: turning basic research into a therapy.

One of the driving forces in the field of immunology is the ambition to translate experimental research into novel useful therapies. Therefore, the aim of this mini-review is to exemplify emerging therapies as well as highlight hurdles that need to be overcome before they can be introduced into the clinic.

Animals↗

TNF-blocking therapies: an alternative mode of action?

Despite expanding use of drugs blocking tumour necrosis factor (TNF), their precise mechanisms of action remain unclear. Early assumptions that they act by direct neutralization of the toxic inflammatory effects of TNF might be too simplistic because they explain neither the range of effects observed nor the varying properties of different TNF-blocking agents. Recent studies have demonstrated a key role for mast cell-derived TNF in the increase in lymph node size and the organizational complexity that accompanies a developing immune response. Regulation of this phenomenon might comprise a novel mode of action for TNF-directed therapy: by preventing this lymph node hyperplasia, TNF blockade could modulate immune responses, ameliorating pathology in autoimmune diseases, such as rheumatoid arthritis.

Antirheumatic Agents↗

NIK-dependent RelB activation defines a unique signaling pathway for the development of V alpha 14i NKT cells.

A defect in RelB, a member of the Rel/nuclear factor (NF)-kappa B family of transcription factors, affects antigen presenting cells and the formation of lymphoid organs, but its role in T lymphocyte differentiation is not well characterized. Here, we show that RelB deficiency in mice leads to a selective decrease of NKT cells. RelB must be expressed in an irradiation-resistant host cell that can be CD1d negative, indicating that the RelB expressing cell does not contribute directly to the positive selection of CD1d-dependent NKT cells. Like RelB-deficient mice, aly/aly mice with a mutation for the NF-kappa B-inducing kinase (NIK), have reduced NKT cell numbers. An analysis of NK1.1 and CD44 expression on NKT cells in the thymus of aly/aly mice reveals a late block in development. In vitro, we show that NIK is necessary for RelB activation upon triggering of surface receptors. This link between NIK and RelB was further demonstrated in vivo by analyzing RelB+/- x aly/+ compound heterozygous mice. After stimulation with alpha-GalCer, an antigen recognized by NKT cells, these compound heterozygotes had reduced responses compared with either RelB+/- or aly/+ mice. These data illustrate the complex interplay between hemopoietic and nonhemopoietic cell types for the development of NKT cells, and they demonstrate the unique requirement of NKT cells for a signaling pathway mediated by NIK activation of RelB in a thymic stromal cell.

Animals↗

Precursors of functional MHC class I- or class II-restricted CD8alphaalpha(+) T cells are positively selected in the thymus by agonist self-peptides.

The origin and specificity of alphabeta TCR(+) T cells that express CD8alphaalpha have been controversial issues. Here we provide direct evidence that precursors of functional CD8alphaalpha T cells are positively selected in the thymus in the presence of agonist self-peptides. Like conventional positive selection, this agonist selection process requires functional TCR alpha-CPM, whereas it is independent of CD8beta expression. Furthermore, CD8alphaalpha expression on mature, agonist-selected T cells does not imply selection by MHC class I, and CD8alphaalpha(+) T cells can be either class I or class II restricted. Our data define a distinct agonist-dependent, positive selection process in the thymus, and they suggest a function for CD8alphaalpha distinct from the conventional TCR coreceptor function of CD8alphabeta or CD4.

Animals↗