Studies on analgesic oligopeptides. III. Synthesis and analgesic activity after subcutaneous administration of [D-Arg2]dermorphin and its N-terminal tetrapeptide analogs.
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Biomedical subjects
Publications and source records attributed to M Taguchi.
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The authors have established a murine malignant glioma-specific cytotoxic T lymphocyte clone (G-CTLL 1) by T cell growth factor (TCGF) using 203-glioma (a methylcholanthrene-induced ependymoblastoma of C57BL/6 mouse origin). The cloned cells were found to release a large amount of gamma interferon (IFN) in response to glioma-associated antigen-specific stimulation. The authors have investigated whether the IFN produced can contribute to killing the target cells. Adding anti-mouse gamma IFN antibody to the mixed clone-target cell culture inhibited IFN production by the cloned cells but the toxicity of the cells was minimally diminished. Therefore, it is suggested that the endogenous gamma IFN produced by the TCGF-dependent cloned cytotoxic T lymphocyte line does not have direct cytotoxic action on the target cells. Furthermore, IFN production as well as cytotoxicity was blocked by anti-Lyt-2 monoclonal antibody in the absence of complement. This suggests that IFN plays a role in the process of antigen recognition of target cells because the Lyt-2 molecule is involved in an antigen-specific function on the cytotoxic T lymphocyte receptor. The role of TCGF in gamma IFN production was also investigated. The spontaneous production of gamma IFN by the cloned cells paralleled the amounts of exogenous TCGF added to the cultures, but TCGF had no synergistic effect on IFN production in the presence of mitogen or tumor antigen. Accordingly, it is possible that TCGF stimulates the cloned cells to proliferate, causing IFN release.
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To examine pharmacological properties of D-Arg2-dermorphin tetrapeptides, six tetrapeptide analogs based on the following formulas, H-Tyr-D-Arg-Phe-Gly-OX (X = H, ethyl, n-propyl), H-Tyr-D-Arg-Phe-Sar-OX (Sar = sarcosine; X = H, methyl, ethyl), were prepared. All these analogs exhibited highly potent and long-lasting analgesia as compared with that of morphine after subcutaneous administration in mice. Among analogs tested, H-Tyr-D-Arg-Phe-Sar-OH showed the highest activities, which were 21, 30 and 58 times more active than morphine in the tail pressure, tail flick and phenylbenzoquinone writhing tests, respectively, on a molar basis.
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Two lymphocyte mitogenic factors, interleukin 2 (IL 2) and blastogenic factor (BF), are generated concomitantly in human mixed lymphocyte cultures (MLC). The latter mitogenic factor is directly mitogenic for unstimulated lymphocytes, whereas the former mitogenic factor acts only on previously activated lymphocytes. Both factors had a m.w. range, as determined by gel filtration, of 18,000 to 30,000. Thus, these two factors were inseparable on the basis of m.w. size. However, BF and IL 2 were separable during ion exchange chromatography on the DEAE cellulose and phenyl-Sepharose chromatography. In addition, BF activity in the supernatants of MLC reached a maximum after day 5, whereas IL 2 activity peaked at day 3, thus distinguishing BF from IL 2 kinetically. These results clearly indicate that BF activity is mediated by molecules distinct from IL 2. The biochemical relationship between B cell growth factor (BCGF) and BF was also examined. Because BF was readily separable from BCGF by Con A-Sepharose chromatography, BF is distinguishable from BCGF. No augmentation of PHA-stimulated C3H mouse thymocyte proliferation was associated with the preparation of partially purified BF, demonstrating that BF and IL 1 are distinct molecules. Taken together, these results indicate that BF is clearly distinct from IL 2, BCGF, and IL 1. BF-containing MLC supernatants have direct mitogenic activity on both T and B cells. Both T and B cell blastogenic activities copurified during ammonium sulfate precipitation, gel filtration, DEAE cellulose ion exchange chromatography, and hydrophobic chromatography. Thus, these two activities appear to be biochemically inseparable. Monoclonal anti-Tac, that has been suggested to recognize the receptor for human IL 2, was highly inhibitory to the T cell response to the phenyl-Sepharose preparations of BF (IL 2-free). In contrast, this antibody had minimal or no effect on BF-induced B cell proliferation. However, when MLC supernatants were absorbed with a cloned IL 2-dependent T cell line, only IL 2 activity, but not BF activity, was removed, demonstrating that BF and IL 2 have different binding specificities. The precise mechanism(s) by which anti-Tac inhibits BF-induced proliferation of T cells is unknown at present. Additionally, during the course of these experiments, we observed that Con A-Sepharose chromatography could be used as a simple one-step method of separating BCGF from IL 2.
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Suppressor cell induction factor (SIF) was produced by alloantigen-stimulated human peripheral blood lymphocytes, and it activated human T cells to become effective suppressors of the mixed lymphocyte reaction (MLR). The activity of SIF was resistant to 56 degrees C and to pH 2, and was precipitated by 50 to 80% saturated ammonium sulfate. SIF had a m.w. range, as determined by gel filtration, of 18,000 to 29,000; it did not bind to DEAE cellulose columns; and it was recovered in the pH range from 6.9 to 7.3 on isoelectric focusing. SIF was biochemically separable from IL 2, BF, IFN-gamma, and CSF. Furthermore, IL 2 activity was completely removed by absorption of MLC supernatants by murine cytotoxic T lymphocyte line (CTLL) cells, whereas SIF activity was unabsorbable, thus distinguishing SIF from IL 2. In addition, antiviral activity of MLC supernatants was completely abolished by anti-human IFN-gamma serum, whereas SIF activity was unaffected by this antiserum, thus distinguishing SIF from IFN-gamma. Since treatment of these supernatants with antiserum against human lymphoblastoid cell IFN(alpha/beta) had no effect on either antiviral or SIF activities in these supernatants, SIF was also distinguishable from IFN alpha/beta. These results indicate that SIF is a distinct new lymphokine with the ability to induce suppressor function in human T cells.
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Human T cells precultured in MLC supernatant (SIF) could suppress responder cells in MLC. SIF-activated cells expressed suppressor effects equally on both autologous and allogeneic responder cells in MLC. The suppression observed was not due to cell crowding, cell death, depletion of nutrients, absorption of IL 2, alternation in the kinetics of MLC response, production of soluble inhibitory factor, or generation of cytotoxic cells. In this system, suppressor cells were generated after 5 days of culture, and Ia-positive cells were required in the induction of suppressor cells. Suppressor cells themselves, however, were characterized as Ia-negative subsets of T cells; they could be derived from both Fc-IgG receptor-positive and -negative subsets of T cells. Suppressor activity of SIF-treated cells on the MLC response was sensitive to mitomycin C treatment. They apparently exerted their suppressor effect on some early phase of the MLC response. This early event was almost complete within 48 hr after the initiation of MLC. The possibility that SIF may be involved in T-T interactions required in the generation of effective suppression is discussed.
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