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Enhanced antitumor effects by chemical modified IGb3 analogues.

机译:化学修饰的IGb3类似物增强的抗肿瘤作用。

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Certain glycolipid antigens for natural killer T (NKT) cells can direct the overall cytokine balance of the immune response. However, the molecular mechanism of Th1- or Th2-biased cytokine secretion by NKT cells is still unknown. Previously, we synthesized isoglobotrihexosylceramide (iGb3) analogues by introducing a hydroxyl group at C4 on the ceramide portion of iGb3 to produce 4-HO-iGb3 or to further deoxylation on the terminal galactose to produce 4'''-dh-iGb3. Both modified iGb3, especially 4'''-dh-iGb3, stimulated more IFN-gamma production by hepatic NKT cells, and thus elicited preferential Th1 responses. Here, we found that 4'''-dh-iGb3-loaded bone marrow-derived dendritic cells (DC) could significantly inhibit growth of subcutaneous melanoma and suppress lung metastasis in C57BL/6 mice compared with unmodified iGb3-loaded DCs. In investigating the mechanisms of this improved activity, we found that 4'''-dh-iGb3 stimulation increased STAT1 signaling by NKT cells, whereas the phosphorylation of Th2 type cytokine-associated transcription factor STAT6 signaling was not affected. Analysis of the structures of iGb3 and 4'''-dh-iGb3 revealed that 4'''-dh-iGb3 provides greater stability and affinity between glycolipid and CD1d or NKT TCR complex than iGb3. Thus, 4'''-dh-iGb3 can improve the antitumor effects of a DC-based vaccine possibly by stabilizing the CD1d/glycolipid/TCR complex and stimulating IFN-gamma signaling of NKT cells. Furthermore, chemical modification of iGb3 can elicit Th1-biased responses by NKT cells, and 4'''-dh-iGb3 combined with a DC vaccine may serve as a potent new NKT-based therapy against tumors and infectious diseases.
机译:天然杀伤性T(NKT)细胞的某些糖脂抗原可以指导免疫反应的总体细胞因子平衡。然而,NKT细胞分泌Th1或Th2偏向细胞因子的分子机制仍是未知的。以前,我们通过在iGb3的神经酰胺部分的C4处引入一个羟基以生成4-HO-iGb3或在末端半乳糖上进一步脱氧以生成4'''-dh-iGb3来合成异球型三己糖基神经酰胺(iGb3)类似物。两种修饰的iGb3,特别是4'''-dh-iGb3,都刺激了肝NKT细胞产生更多的IFN-γ,因此引发了优先的Th1反应。在这里,我们发现,与未修饰的加载iGb3的DC相比,加载4'''-dh-iGb3的骨髓源性树突状细胞(DC)可以显着抑制C57BL / 6小鼠皮下黑色素瘤的生长并抑制肺转移。在研究这种提高活性的机制时,我们发现4'''-dh-iGb3刺激增加了NKT细胞的STAT1信号传导,而Th2型细胞因子相关转录因子STAT6信号的磷酸化却没有受到影响。对iGb3和4′′-dh-iGb3的结构的分析表明,与iGb3相比,4′′-dh-iGb3在糖脂和CD1d或NKT TCR复合体之间提供了更大的稳定性和亲和力。因此,4''-dh-iGb3可能通过稳定CD1d /糖脂/ TCR复合物并刺激NKT细胞的IFN-γ信号传导来改善基于DC的疫苗的抗肿瘤作用。此外,iGb3的化学修饰可以引起NKT细胞偏向Th1的应答,并且4'''-dh-iGb3与DC疫苗联合可以作为一种有效的基于NKT的新型抗肿瘤和传染病疗法。

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