Inhibition of CD62L + T-cell response in vitro via a novel sulfo-glycolipid, β-SQAG9 liposome that binds to CD62L molecule on the cell surface

We previously reported that synthetic sulfo-glycolipid, 3- O-(6-deoxy-6-sulfono-β- d-glucopyranosyl)-1,2-di- O-acylglycerol (β-SQDG(18:0)) which was deduced from sulfonoquinovosyl-diacylglycerols of sea urchin possessed immunosuppressive effects, such as human mixed lymphocyte reaction (MLR) and ski...

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Veröffentlicht in:Cellular immunology 2004-11, Vol.232 (1), p.105-115
Hauptverfasser: Yamamoto, Yoshiteru, Sahara, Hiroeki, Takenouchi, Mika, Matsumoto, Yoshitaka, Imai, Akihito, Fujita, Tatsuya, Tamura, Yasuaki, Takahashi, Nobuaki, Gasa, Shinsei, Matsumoto, Kenjiro, Ohta, Keisuke, Sugawara, Fumio, Sakaguchi, Kengo, Jimbow, Kowichi, Sato, Noriyuki
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Sprache:eng
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Zusammenfassung:We previously reported that synthetic sulfo-glycolipid, 3- O-(6-deoxy-6-sulfono-β- d-glucopyranosyl)-1,2-di- O-acylglycerol (β-SQDG(18:0)) which was deduced from sulfonoquinovosyl-diacylglycerols of sea urchin possessed immunosuppressive effects, such as human mixed lymphocyte reaction (MLR) and skin allograft in rat, and that these effects were caused by contact inhibition between T-cells and antigen presenting cells (APCs). Here, we investigated the mechanism of these immunosuppressive effects on human MLR by β-SQAG9 which had been newly synthesized from β-SQDG(18:0) to improve structural stability in water solution. CD62L + T-cells in peripheral blood predominantly respond to APCs, and β-SQAG9 inhibited the response of CD62L + T-cell subset in human allogeneic MLR. Surprisingly, it was demonstrated that β-SQAG9 bound to L- and P-selectin (CD62L and P) molecule in vitro. Meanwhile, β-SQAG9 efficiently formed liposome structure and bound to L-selectin on the cell surface of CD62L + T-cell subset but might not be incorporated into the cells. Because the immunosuppressive effects of β-SQAG9 disappeared when β-SQAG9 liposome was changed to soluble form by detergent, the liposome structure of β-SQAG9 was presumed to be essential for these effects. These findings suggested β-SQAG9 to be a novel drug with a unique immunosuppressive action.
ISSN:0008-8749
1090-2163
DOI:10.1016/j.cellimm.2005.02.002