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B Chain

Publications and source records attributed to B Chain.

22 records · Page 2Linked to original sources

Induction of cytotoxic T lymphocytes with peptides in vitro: identification of candidate T-cell epitopes in human papilloma virus.

A set of overlapping peptides corresponding to the L1, E6, and E7 proteins of human papilloma virus 16 was tested for their ability to bind to major histocompatibility complex class I molecules and to stimulate cytotoxic T-lymphocyte (CTL) responses in vitro. A class I binding assay using intact RMA-S cells showed that 20 of the 99 human papilloma virus peptides bound to H-2Kb and/or Db molecules. Fifteen of the 20 class I-binding peptides stimulated primary CTL responses, whereas peptides that were negative in the binding assay failed to do so. Peptide-induced CTLs recognized the immunizing peptide very efficiently, requiring no more than 1-10 nM peptide for target cell lysis. However, two observations were made that have important implications for the design of peptide-based vaccines for inducing CTLs. (i) Not all major histocompatibility complex-binding peptides that contained known motifs characteristic of naturally processed peptides induced CTLs. (ii) The efficiency of CTL lysis was strongly decreased when the size of the target peptide differed by only one amino acid residue from that of the immunizing peptide. We conclude that peptides chosen for vaccination must correspond in length to naturally processed peptides.

Animals↗

Penicillin and beyond.

The discovery of penicillin remains one of the greatest advances in medical science. From the success of the discovery the biotechnology industry became established.

Biotechnology↗

Antigen-specific inhibition of IL-2 and IL-3 production in contact sensitivity to TNP.

The production of IL-2 and IL-3 by T cells from mice which had been contact sensitized to TNP and/or tolerized by intravenous injections of TNBS was assayed. Contact sensitization rapidly primes T cells, so that they respond to in vitro restimulation with haptenated syngeneic cells by producing IL-2 and IL-3. This production is strongly inhibited, in an antigen-specific manner, in tolerized mice. At least part of this inhibition can be attributed to the action of suppressor T cells that act by preventing the activation of lymphokine production in vitro. Lymphokine production thus closely parallels the in vivo delayed-type hypersensitivity (DTH) reaction in this system.

Animals↗

Improvement of the in vitro T cell proliferation assay by a modified method that separates the antigen recognition and IL-2-dependent steps.

T cell activation is commonly assayed in vitro by measuring the proliferative response of primed cells to an antigenic stimulus. We have modified the conventional form of this assay by dividing up the response into two stages. During the first stage, antigen drives the specific expression of IL-2 receptor expression. This phase is carried out in the presence of homologous mouse serum, in order to reduce non-specific responses to a minimum. During the second phase, proliferation of these activated T cells is driven by the addition of excess exogenous IL-2. This modified form of proliferation assay significantly increased the signal to noise ratio which can be attained, and is of particular value when looking at the T cell response to weak (e.g., cross-reactive) antigens, or low concentrations of antigen.

Animals↗