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Biomedical subjects

S Hamada

Publications and source records attributed to S Hamada.

At least 433 records · Page 24Linked to original sources

Immunoregulation in the rat: requirements for in vitro B cell responses to classical TI-1 and TI-2 antigens.

The presence of suppressor cells and their mediators has made it difficult to induce B cell mitogenic or immune responses in rat spleen cell cultures. In the present study, we have defined culture conditions required for induction of in vitro thymic independent (TI) immune responses in the rat. Rat spleen cell cultures support low responses to various trinitrophenyl (TNP) haptenated antigens including TNP-Brucella abortus (TNP-BA), TNP-lipopolysaccharide [LPS; either phenol (Ph)- or butanol (Bu)-water extracted], TNP-Ficoll, and TNP-dextran. However, all of these antigens induced good splenic anti-TNP PFC responses when given at appropriate doses in vivo. When spleen cells were depleted of adherent cells and cultured with TI antigens in vitro, good anti-TNP PFC responses were seen with TNP-BA, whereas, lower responses were induced by TNP-LPS (Ph or Bu). No responses were observed in cultures incubated with either TNP-Ficoll or TNP-dextran. Purified splenic B cell cultures [prepared by panning on plates coated with anti-rat F (ab')2] supported good responses to TNP-LPS (Ph or Bu) and TNP-BA. The addition of irradiated splenic adherent cells (macrophages, M phi) to either M phi-depleted or purified B cell cultures completely abrogated in vitro responses to TNP-BA or TNP-LPS (Ph or Bu). Purified splenic B cell cultures generally responded poorly to TNP-Ficoll or TNP-dextran. Addition of indomethacin (IM) to spleen cell cultures abrogated suppression and allowed anti-TNP PFC responses to TNP-BA, TNP-LPS (Ph or Bu), TNP-Ficoll, and TNP-dextran. Furthermore, nude spleen cell cultures treated with IM, also allowed significant TNP-Ficoll and TNP-dextran immune responses; however, untreated cultures did not respond to these antigens. Our studies indicate that rat splenic B cell cultures are responsive to TI antigens, and highest responses occur with the murine TI-1 class, e.g., TNP-BA and TNP-LPS. Inhibition of suppression with IM restored splenic B cell responses to the murine TI-2 class, i.e., TNP-Ficoll and TNP-dextran.

Animals↗

Isolation and immunochemical characterization of carbohydrate antigens prepared from group A Streptococcus pyogenes.

Group A carbohydrate antigens were prepared from isolated cell walls or whole cells of Streptococcus pyogenes strain Sv (group A, M type 3). Cell walls were lysate by the enzymatic action of M1 endo-N-acetylmuramidase. The cell wall lysate was concentrated and chromatographed on a Sephadex G-100 column. Two fractions reactive with group A antisera were obtained. These were composed of N-acetylglucosamine, rhamnose, and peptidoglycan components such as glutamic acid, lysine, alanine, N-acetylmuramic acid and N-acetylglucosamine. For comparison, hot TCA extract of the cell walls (TCAgA) or Rantz and Randall extract of the whole cells (RRgA) was purified chromatographically. The latter two also contained rhamnose and glucosamine, and were reactive with group A antisera. The molecular weights of M1gA antigens were larger than those of TCAgA and RRgA. Hapten inhibition study indicated that N-acetylglucosamine was the most potent inhibitor.

Antigens, Bacterial↗

Enhancement of murine immune responses to orally administered haptenated Streptococcus mutans.

The induction of immune responses to orally administered trinitrophenyl (TNP)-haptenated Streptococcus mutans and its enhancement with muramyldipeptide (MDP), peptidoglycan (PG), and concanavalin A (Con A) were investigated in lipopolysaccharide (LPS)-non-responsive C3H/HeJ mice and the syngeneic, LPS-responsive C3H/HeN strain. Both mouse strains manifested similar immune responses, primarily of the IgM isotype, after a single gastric intubation (GI) with TNP-S. mutans. However, when groups of animals were first carrier-primed by GI with S. mutans for 2 consecutive days, followed by a single GI with TNP-S. mutans 1 week later, C3H/HeJ mice gave a significantly higher (P less than or equal to 0.01) splenic IgA anti-TNP plaque-forming cell (PFC) response than identically treated C3H/HeN mice. Furthermore, saliva, urine and serum from these C3H/HeJ mice possessed high levels of IgA anti-TNP antibodies as determined by the enzyme-linked immunosorbent assay, whereas C3H/HeN mice exhibited low antibody levels. Oral administration of Con A (either 250 micrograms or 500 micrograms/mouse) or purified PG (1 mg/mouse) at the time of TNP-S. mutans immunization resulted in significantly (P less than or equal to 0.01) enhanced splenic IgA anti-TNP PFC responses, especially in C3H/HeJ mice. On the other hand, MDP promoted IgA anti-TNP PFC responses in LPS-responsive C3H/HeN mice but did not augment responses in C3H/HeJ animals. A similar immune response pattern was seen when antibody levels were measured in serum, saliva, and urine of both mouse strains. These results demonstrate that haptenated S. mutans is a good antigen for the induction of high IgA responses in orally immunized C3H/HeJ mice and that this high response can be enhanced with the adjuvants Con A and PG. However, MDP is ineffective in C3H/HeJ mice but enhances IgA responses in normal LPS-responsive C3H/HeN animals.

Acetylmuramyl-Alanyl-Isoglutamine↗