TY - JOUR
T1 - Polar functional group-containing glycolipid CD1d ligands modulate cytokine-biasing responses and prevent experimental colitis
AU - Inuki, Shinsuke
AU - Hirata, Natsumi
AU - Kashiwabara, Emi
AU - Kishi, Junichiro
AU - Aiba, Toshihiko
AU - Teratani, Toshiaki
AU - Nakamura, Wataru
AU - Kojima, Yoshimi
AU - Maruyama, Toru
AU - Kanai, Takanori
AU - Fujimoto, Yukari
N1 - Funding Information:
We thank Prof. Iwabuchi (Kitasato University) and Dr. Kabayama (Osaka University) for providing 2E10 hybridoma. This work was supported by JSPS KAKENHI (Nos. JP17H02207, JP18H04426, JP19H04815, JP17H05800, JP26882036 and JP16K16638), by AMED under Grant Number JP18ak0101072 and JP19ae0101052, by the Mizutani Foundation for Glycoscience, by Mishima Kaiun Memorial Foundation, by Takeda Science Foundation and by ERATO Murata Lipid Active Structure Project.
Publisher Copyright:
© 2020, The Author(s).
PY - 2020/12/1
Y1 - 2020/12/1
N2 - The MHC class I-like molecule CD1d is a nonpolymorphic antigen-presenting glycoprotein, and its ligands include glycolipids, such as α-GalCer. The complexes between CD1d and ligands activate natural killer T cells by T cell receptor recognition, leading to the secretion of various cytokines (IFN-γ, IL-4, IL-17A, etc.). Herein, we report structure–activity relationship studies of α-GalCer derivatives containing various functional groups in their lipid acyl chains. Several derivatives have been identified as potent CD1d ligands displaying higher cytokine induction levels and/or unique cytokine polarization. The studies also indicated that flexibility of the lipid moiety can affect the binding affinity, the total cytokine production level and/or cytokine biasing. Based on our immunological evaluation and investigation of physicochemical properties, we chose bisamide- and Bz amide-containing derivatives 2 and 3, and evaluated their in vivo efficacy in a DSS-induced model of ulcerative colitis. The derivative 3 that exhibits Th2- and Th17-biasing responses, demonstrated significant protective effects against intestinal inflammation in the DSS-induced model, after a single intraperitoneal injection.
AB - The MHC class I-like molecule CD1d is a nonpolymorphic antigen-presenting glycoprotein, and its ligands include glycolipids, such as α-GalCer. The complexes between CD1d and ligands activate natural killer T cells by T cell receptor recognition, leading to the secretion of various cytokines (IFN-γ, IL-4, IL-17A, etc.). Herein, we report structure–activity relationship studies of α-GalCer derivatives containing various functional groups in their lipid acyl chains. Several derivatives have been identified as potent CD1d ligands displaying higher cytokine induction levels and/or unique cytokine polarization. The studies also indicated that flexibility of the lipid moiety can affect the binding affinity, the total cytokine production level and/or cytokine biasing. Based on our immunological evaluation and investigation of physicochemical properties, we chose bisamide- and Bz amide-containing derivatives 2 and 3, and evaluated their in vivo efficacy in a DSS-induced model of ulcerative colitis. The derivative 3 that exhibits Th2- and Th17-biasing responses, demonstrated significant protective effects against intestinal inflammation in the DSS-induced model, after a single intraperitoneal injection.
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U2 - 10.1038/s41598-020-72280-4
DO - 10.1038/s41598-020-72280-4
M3 - Article
C2 - 32978421
AN - SCOPUS:85091633287
SN - 2045-2322
VL - 10
JO - Scientific Reports
JF - Scientific Reports
IS - 1
M1 - 15766
ER -