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S Raffel

Publications and source records attributed to S Raffel.

4 recordsLinked to original sources

Heterologous antigenic stimulation in induction of delayed hypersensitivity.

An influence of a delayed hypersensitive reaction to a primary antigen on the induction of delayed hypersensitivity to a second unrelated antigen was observed in guinea pigs immunized with azobenzenearsonate-N-acetyl-L-tyrosine (ABAT), and injected intradermally 3 weeks later with a mixture of ABAT and secondary antigen. Animals so treated developed delayed hypersensitivity to sheep red blood cells (SRBC) or Type II pneumococcal polysaccharide as secondary antigens, as measured by skin test reactivity and inhibition of macrophage migration, whereas ABAT unsensitized control groups did not. However, attempts to induce delayed reactivity to proteins as secondary antigens were unsuccessful. The injection of secondary antigen into a mineral oil-induced inflammatory lesion did not induce delayed hypersensitivity, suggesting that specific reactivity to ABAT is a prerequisite for heterologous induction. Possible mechanisms for the observed phenomenon, including a role for macrophages, are discussed.

Animals

Macrophage processing of antigen for induction of tumor immunity.

Previous studies have indicated, that, after in vitro incubation of antigen with macrophages, the "processed" antigen preferentially induces cell-mediated immunity. To investigate this phenomenon with tumor antigens, mycobacteria-stimulated macrophages were incubated with irradiated syngeneic EMT6 tumor cells for varying lengths of time and injected into normal mice. On subsequent challenge with EMT6, there was a significant increase in protection in mice immunized with macrophage-processed tumor antigen over control animals. Mineral oil-stimulated macrophages were also capable of processing irradiated EMT6, but macrophages induced by thioglycollate or proteose peptone were not. Freeze-thawed mycobacteria-stimulated macrophages were nearly as effective as viable macrophages in processing tumor antigen, but heat-treated macrophages lost this capacity. The immunity generated was specific and could be passively transferred by immune cells but not by immune serum. The results indicate that incubation of tumor antigen with appropriately activated macrophages leads to the enhanced induction of immunity to the tumor. Macrophage enzymes may degrade tumor antigens to fragments with few antigenic determinants that preferentially induce cell-mediated immunity.

Animals

Complement-dependent anaphylactic reactions.

The concept of elicitation of reactions of anaphylactic type by non-tissue-fixing antibody, through activation of complement and release of anaphylatoxins by antigen-antibody complexes in vivo, is not clearly defined by published evidence. Experimental data are presented to demonstrate that guinea pig immunoglobulin G2 (noncytotropic) complexed with antigen in vitro elicits dermal reactions in guinea pigs, and that pretreatment of animals with complement-inactivating cobra venom factor diminishes such reactions. The various pathways through which immediate hypersensitive reactions may occur are discussed.

Anaphylaxis