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Biomedical subjects

E Baus

Publications and source records attributed to E Baus.

4 recordsLinked to original sources

Dexamethasone inhibits the early steps of antigen receptor signaling in activated T lymphocytes.

Glucocorticoids are very effective in inhibiting inflammatory and immune responses. In particular, the synthetic analogue dexamethasone has been shown to inhibit T cell proliferation and IL-2 production by interfering with the transcriptional activation of the IL-2 gene. The experiments described in this report were performed to determine whether dexamethasone treatment affects the early steps of TCR signal transduction in T cell hybrids. Incubation of murine T cell hybrids in the presence of dexamethasone prevents the intracellular calcium increase that normally follows TCR/CD3 aggregation. Accordingly, dexamethasone treatment decreases inositol phosphates production and phospholipase-Cgamma1 tyrosine phosphorylation induced after TCR/CD3 stimulation. Dexamethasone has no effect on cell surface expression of TCR-associated structures nor does it inhibit calcium responses induced by a heterologous G protein-coupled muscarinic receptor, suggesting that this hormone analogue specifically inhibits the TCR signaling pathway at a postreceptor stage. We also show that inhibition of membrane proximal events by dexamethasone requires binding to the intracellular glucocorticoid receptor and de novo protein synthesis. When splenic T cells were assayed, only activated but not resting T cells were found to be sensitive to this new immunomodulatory effect of dexamethasone. These findings indicate that in addition to their previously described inhibitory effects on cytokine gene transcription, glucocorticoids block IL-2 production in activated T cells by interfering with an early step of the signal transduction cascade initiated by TCR/CD3 cross-linking.

Animals↗

Induction of T cell unresponsiveness by anti-CD3 antibodies occurs independently of co-stimulatory functions.

Antibodies to the T cell receptor (TcR)-associated CD3 molecules represent potent immunosuppressive agents in vivo in both human and animals models, in spite of their well-characterized mitogenic properties. We demonstrate in this report that antibodies to the B7.2 molecule inhibit IL-2 production in vivo caused by anti-CD3 administration, suggesting that anti-CD3 monoclonal antibodies (mAb) stimulate naive T cells in vivo in a co-stimulation-dependent fashion. To characterize better the mechanisms by which antibodies to CD3 induce antigen unresponsiveness in naive T cells, we developed a model of activation-induced T cell unresponsiveness in vitro. Our data indicate that following interaction with mitogenic anti-CD3 mAb in vitro, naive purified CD4+ T cells become refractory to a further stimulus. This unresponsive state develops independently of co-stimulatory functions, as neither B7-expressing antigen-presenting cells nor anti-CD28 mAb are able to prevent anergy induction in this model. We therefore conclude that induction of unresponsiveness in naive T cells by anti-CD3 mAb is not a consequence of co-stimulus-deficient stimulation, but may develop following a productive response both in vivo and in vitro. Unresponsive T cells display a defective calcium mobilization upon TcR triggering, suggesting that anergy is maintained in these cells through receptor desensitization. The potential role of co-stimulation-independent TcR desensitization in the down-regulation of immune responses in vivo is briefly discussed.

Adjuvants, Immunologic↗

Multidisciplinary discharge planning: developing a process.

In today's health care environment, Frankford Health Care System identified the need for a discharge planning process. A multidisciplinary task force developed and implemented a system that decreased length of stay and duplication of services, improved timeliness of intervention and fostered communication and respect among team members. The process included assessment of patient/family needs and coordination of care, services and referrals for all patients.

Continuity of Patient Care↗

Flow cytometric measurement of calcium influx in murine T cell hybrids using Fluo-3 and an organic-anion transport inhibitor.

A method is described to facilitate flow cytometric analysis of calcium mobilization upon stimulation of murine T cell hybrids. In these transformed cell lines, the accuracy of cytometric measurement of free cytoplasmic calcium with Fluo-3 is compromised by the rapid loss of the intracellular dye. We have found that the addition of sulfinpyrazone, a known organic-anion transporter inhibitor in epithelial cells and in macrophages, severely impairs the leakage of the Fluo-3 probe from the cytoplasmic matrix. Under appropriate conditions, sulfinpyrazone has little effect on the cell physiology and permits the detection of calcium influx in a variety of murine T cell hybrids.

Aniline Compounds↗