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S P Weber

Publications and source records attributed to S P Weber.

12 recordsLinked to original sources

The effect of partial in vivo depletion of CD4 T cells by monoclonal antibody. Evidence that incomplete depletion increases IgG production and augments in vitro thymic-dependent antibody responses.

In vivo depletion or inactivation of CD4 T cells by monoclonal antibody inhibits of T-cell-dependent immune responses and, in some cases, ameliorates clinical autoimmune disease. Impairment of T cell function occurs in situations where mice are treated with relatively large doses of anti-CD4 antibody. When adult (C57BL/6xDBA/2)F1 mice were treated with a low dose of anti-CD4 antibody augmentation of certain thymic-dependent responses occurred. Twice-weekly injections of 50 micrograms of monoclonal antibody GK1.5 for a period of three weeks resulted in a 50% reduction of splenic CD4 T cells. Mice that were partially depleted of CD4 T cells exhibited a 55% increase in serum IgG levels with a 165% increase in serum IgG1. Simulation of spleen cells from these mice with LPS resulted in a significant increase in differentiation of IgG secretion. When spleen cells from partially CD4-depleted mice were challenged in vitro with SRBC, they mounted a direct PFC response that was more than four times the observed PFC response of mice that received either saline or rat IgG. These findings indicate that partial depletion/inactivation of CD4 T cells by in vivo administration of anti-CD4 monoclonal antibody results in a significant augmentation of certain T-cell-dependent humoral responses.

Animals

Chronic in vivo depletion of CD4 T cells begun in utero inhibits gut B cell differentiation.

We studied the role of CD4 T cells on the ontogeny of mucosal IgA compartment. We treated C57 BL/6 mice, beginning in utero and for 4 weeks thereafter, with anti-CD4 monoclonal antibody. Mice were evaluated at 1, 3, and 5 weeks after stopping the treatment. At 1 week, anti-CD4-treated mice had no detectable CD4 T cells in spleen or Peyer's patches. These CD4-depleted mice demonstrated a 40% reduction of surface Peyer's patch IgA+ B cells and a marked decrease in jejunal IgA secretion. By 5 weeks, CD4 T cells were detectable in spleen and Peyer's patch and the number of surface IgA+ B cells in Peyer's patch was increased, but they remained less than the control levels. Jejunal IgA secretion recovered to the control level by 5 weeks. LPS induced normal levels of in vitro IgM secretion by Peyer's patch B cells in anti-CD4-treated mice; thus, treatment with anti-CD4 does not nonspecifically inhibit the gut B cell compartment. This study demonstrates that CD4 T cell depletion begun in utero significantly inhibits the differentiation of mucosal B cells to IgA-secreting cells and partially inhibits switching to IgA+ B cells in Peyer's patch.

Animals

Interleukin 1 induces T cell mediated differentiation of murine Peyer's patch B cells to IgA secretion.

Peyer's patches (PP) represent an important source of cells potentially capable of secreting IgA, yet, under normal circumstances, little IgA is produced in the PP. This study has evaluated the regulatory role of cytokines in the differentiation of PP B cells. When recombinant human interleukin 1 alpha (rIL 1) was added to cultured PP cells in a concentration as low as 0.75 U/ml (5 pg/ml protein concentration) IgA secretion was increased four- to six-fold. This action of rIL 1 was T cell dependent, in that rIL 1 did not induce IgA differentiation in PP cultures previously depleted of T cells. The addition of rIL 1 to cultures containing splenic T cells and PP B cells or PP T cells and splenic B cells did not result in IgA secretion. Thus, the in vitro stimulatory action of rIL 1 required that both B cells and T cells be of PP origin. Additionally, when irradiated (3000 R) PP T cells were cultured with PP B cells in the presence of rIL 1, no IgA secretion was observed. The indirect stimulatory effect of IL 1 on PP B cells could not be reproduced when PP B cells were cultured with recombinant preparations of interleukins 2 and 4. These experiments strongly suggest that IL 1 is capable of stimulating IgA production by PP cells in vitro by means of activating an intermediate T cell that, in turn, regulates IgA differentiation in PP B cells.

Animals