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E Terada

Publications and source records attributed to E Terada.

51 records · Page 3Linked to original sources

Treatment of NZB/W F1 mice with NZW splenic T cells or with serum of mice experiencing the graft-versus-host reaction: suppression of ongoing anti-double-stranded (ds) DNA antibody formation and improvement of renal function.

Seven-month-old NZB/W F1 mice were inoculated with 5 X 10(7) NZW spleen cells. The mice so treated showed a clear fall of anti-double-stranded (ds) DNA antibody titers accompanied by a decrease in blood urea nitrogen (BUN) concentration. Mice so treated showed markedly increased survival times (more than 17 months) compared with untreated controls (mean +/- SD 8.38 +/- 0.75 months). A cell fractionation study suggested that T cells among NZW spleen cells play a major role. Recipients of the unfractionated or the T-cell fraction of NZW spleen cells had histologically less glomerulonephritis than untreated control NZB/W F1 mice. NZW B-cell transfer to NZB/W F1 mice had no effect. Serum obtained from NZB/W F1 mice receiving NZW spleen cells 10 days previously (graft-vs-host (GVHR) serum) was injected into 8-month-old NZB/W F1 mice. A clear fall in anti-ds DNA antibody titers and inhibition of age-associated sharp increases in BUN were observed. The mean life span of these mice (10.50 +/- 0.58 months) was significantly longer than that of untreated controls (8.69 +/- 0.38 months). GVHR serum had the ability to suppress anti-ds DNA antibody formation by NZB/W F1 spleen cells in vitro. Allogeneic GVHR serum prepared in C57B1/6 X DBA/2 (BDF1) mice by transferring C57B1/6 spleen cells was also effective in suppressing anti-ds DNA antibody formation in vitro.

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Age-associated changes of the characteristics of autoantibody-forming cells in NZB/W mice.

Age-associated change of characteristics of anti-double-stranded (ds) DNA antibody-forming cells in the NZB/W mouse spleen was studied. These cells in mice aged 9-11 months, which develop high titer anti-ds DNA antibody formation, produced antibody without the help of T cells or pokeweed mitogen (PWM), adhered to Sephadex G-10, and sedimented to the bottom when applied to Ficoll-Paque solution. On the other hand, these cells in relatively young (7- to 8-month-old) mice, which develop low titer anti-ds DNA antibody formation, produced antibody maximally with the help of T cells and PWM, adhered little to Sephadex G-10, and fractionated into intermediate lymphocyte fractions when applied to Ficoll-Paque solution. Collectively, anti-ds DNA antibody-forming cells in NZB/W mice were shown to change their characteristics with age.

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Characterization of anti-double-stranded DNA antibody-forming cells in the NZB/W mouse spleen.

Characterization of anti-double-stranded (ds) DNA antibody-forming cells in the spleen of the NZB/W mouse was attempted. Anti-ds DNA antibody-forming cells formed antibodies in vitro without any antigenic stimulus. Depletion of T cells in the NZB/W spleen cells did not abolish but enriched the anti-ds DNA antibody-forming capacity. Anti-ds DNA antibody formation was not abolished by 1,000 R of irradiation which suggests that there was no mitotic process involved. An in vivo irradiation experiment using NZB/W mice indicated that persistent anti-ds DNA antibody formation is mediated by radio-resistant antibody-forming cells.

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Anti-double strand (ds) DNA antibody formation by NZB/W (F1) spleen cells in a microculture system detected by solid phase radioimmunoassay.

A solid-phase radioimmunoassay method was devised to detect mouse anti-double strand (ds) DNA antibody. This method could easily detect the anti-dsDNA antibody in 1 : 10,000 dilutions (1 unit) of pooled 9-10-month-old female NZB/W F1 sera. The sensitivity was about 10(3)- and 10(2)-fold higher than that of the modified Farr method and of the double antibody technique respectively. NZB/W mice developed high titer anti-dsDNA antibody as they grew older. Spleen cells brought to a microculture system using flat-bottomed polystyrene plates produced anti-dsDNA antibody clearly detectable by solid-phase radioimmunoassay. Anti-dsDNA antibody produced in vitro (y units) was in close correlation with the anti-dsDNA antibody titer of the spleen donor (x units) (y = 4.8 X 10(-2) x -65, gamma = 0.94, P less than 0.001). A combination of the microculture system and solid-phase radioimmunoassay was recommended for the characterization of anti-dsDNA antibody-forming cells.

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[Absence of T lymphocyte functions in athymic nude rats (author's transl)].

Immunological characterization of nude rats (rnu/rnu) of outbred hooded stock was attempted. Antibody responses of IgM and IgG classes against thymus-dependent antigen, sheep red blood cells (SRBC), were detected in heterozygous (+/rnu) rats but were totally lacking in homozygous (rnu/rnu) nude rats. When mouse Sarcoma 180 was transplanted, tumor cells were not taken by heterozygous rats but grew in nuce rats for more than 30 days showing marked tumor growth. Mitotic response to T-cell mitogens, concanavalin A and phytohemagglutinin, was seen in spleen cells of heterozygous but not of nude rats. It was concluded that the T-cell function is lacking in these nude rats.

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