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Biomedical subjects

N Lea

Publications and source records attributed to N Lea.

4 recordsLinked to original sources

Effect of costimulation and the microenvironment on antigen presentation by leukemic cells.

Costimulatory signals supplied by genetically modified tumor cells can enable T-cell recognition of tumor-associated antigens that were previously silent when presented by unmodified tumor cells. Although the mechanism of the CD80/CD28 costimulation has been studied extensively in the normal T-cell/antigen-presenting cell (APC) interactions, it is unclear how expression of CD80 by tumor cells mediates its effect. We demonstrate here that optimal CD80 expression on a leukemic cell enhances T-cell recognition of alloantigen primarily by lowering the level of T-cell receptor (TCR) stimulation required for activation. CD80 expression by leukemic cells leads to increased survival of activated T cells by inducing upregulation of the antiapoptotic protein BCL-2, but not BCL-X(L). The cytokine microenvironment in which T cells are activated is crucial in determining their differentiation and consequently the nature of the immune response generated. Many tumor cells produce immunosuppressive cytokines that may not favor the induction of cell-mediated immunity. In this study, the presence of CD80 on leukemic cells increased T-cell activation in vitro, but this did not result in the production of Th1 cytokines. We show that this is due to a leukemia-derived soluble factor that inhibits the production of Th1 cytokines. Optimal expression of a costimulatory molecule, therefore, enhances the ability of leukemic cells to present antigen by amplifying TCR signals, but the microenvironment generated by leukemic cells may suppress the immune response required for their eradication. Thus, strategies aimed at inducing antileukemic immunity by providing leukemic cells with costimulatory functions must ensure the presence of an appropriate microenvironment.

Antigen Presentation↗

Comparison of ribosome-inactivating proteins in the induction of apoptosis.

The aim of this study was to evaluate the ability of verocytotoxin-1 (VT1), VT1 B chain alone, ricin and a hybrid toxin (RASTA2) consisting of ricin A chain linked to VT1 B chain to inhibit protein synthesis and to induce apoptosis. The lethal effects of the toxins were compared using vero cells (originating from green African monkey kidney tissue). As previously described cell death occurred through apoptosis which was quantified using the diphenylamine assay. DNA fragmentation was seen with VT1 at 10 pg/ml but there was no effect with B chain alone. Fragmentation with ricin was seen at 10 ng/ml and with RASTA2 at 1 ng/ml. Protein synthesis inhibition was measured by [(35)S]methionine incorporation. VT1 had an IC50 of 0.0024 ng/ml, B chain alone was ineffective at inhibiting protein synthesis. Ricin had an IC50 of 0.39 ng/ml and RASTA2 of 1.7 ng/ml. In vero cells the B chain of these toxins does not participate in cell killing.

Animals↗